SlideShare ist ein Scribd-Unternehmen logo
1 von 18
Downloaden Sie, um offline zu lesen
© Ricardo-AEA Ltd
www.ricardo-aea.com
Nikolas Hill
Knowledge Leader – Transport Technology and Fuels
Ricardo-AEA
Life-Cycle Assessment for Hybrid
and Electric Vehicles
“Beyond the Tailpipe” LowCVP Annual Conference 2013
11th July 2013
© Ricardo-AEA LtdUnclassified – Public Domain2 11th July 2013
 Life-Cycle Assessment in the automotive sector and
significance for hybrid and electric vehicles
 Project for CCC on LCE (life cycle emissions) for future
low carbon technologies:
‒ Scope and objectives
‒ Lifecycle stages and range of values in the literature
‒ Baseline assumptions for future LCE calculation tool
‒ Key results from the analysis
‒ Summary and conclusions
 Overall potential implications for policy and businesses
Overview
© Ricardo-AEA LtdUnclassified – Public Domain3 11th July 2013
Current tailpipe CO2 metric insufficient to
compare impacts of hybrid and electric vehicles
due to upstream fuel/vehicle production GHG
 Life Cycle Assessment (LCA) is key for future
vehicle technology and fuel comparisons
Well-to-wheel (WTW) is the specific LCA used
for transport fuel/vehicle systems (but limited to
the fuel itself) – used for biofuels in particular
LCA Methodologies
Part 1: Use of LCA in the automotive sector
Life Cycle Assessment Framework
Goal and
Scope
Definition
Inventory
Analysis
Impact
Assessment
Interpretation
LCA ISO (14040/14044) standards only provide
general guidelines  different models,
methodologies and assumptions are often used
Many OEMs conduct ISO compliant/high quality
LCA studies of their vehicles as part of their
Environmental Management strategies
Several OEMs publish the results from their
LCA, but it is not clear if different OEMs use the
same set of assumptions or input data sets
© Ricardo-AEA LtdUnclassified – Public Domain4 11th July 2013
Currently, there are no automotive targets specifically aimed at
reducing CO2 from production of the whole vehicle
WTT emissions are also not factored into vehicle CO2 regulations
Issues for both hybrid and electric vehicles:
Availability of reliable real-world performance data (i.e. MJ/km)
Wide range of literature reported values for battery GHG intensity
Uncertainty on battery lifetime performance/potential replacement
Issues for plug-in EVs only (PHEVs, REEVs and BEVs):
Very large variation in regional electricity GHG intensity and in
estimates for future decarbonisation  affects all lifecycle stages
Average or marginal electricity? Recharge at night or in daytime?
Most studies also DON’T typically account for:
a) Upstream emissions of fuels used in electricity generation (+16% for UK)
b) Projected changes in electricity GHG intensity over the vehicle lifetime
Accounting for recharging losses (often excluded)
LCA Methodologies
Part 2: Key considerations for hybrid and electric vehicles
© Ricardo-AEA LtdUnclassified – Public Domain5 11th July 2013
Previous CCC advice include ‘low-carbon’ technologies which reduce
emissions at point-of-use relative to counterfactual
Ricardo-AEA undertook an analysis considering lifecycle emissions
(LCEs) for various technologies in several sectors, going beyond the
point-of-use to provide estimates from the current situation out to 2050
NOT a detailed LCA: objective was to provide estimates (from existing
studies) of current LCEs for UK circumstances and project to 2050
Current LCEs are broken down into relevant categories to allow:
a) Investigation of the influence of key geographical parameters on overall emissions
b) Separation of these emissions into UK and non-UK emissions
c) Exploration of sensitivities for key components and scenarios on how these
emissions might be reduced
Work involved a literature review and development of spread sheet
calculation tools for the different technology areas
Future impacts of biofuel use excluded from analysis (set at 2012 mix)
Current and Future Lifecycle Emissions of Key ‘Low Carbon’
Technologies and Alternatives, a project for CCC
© Ricardo-AEA LtdUnclassified – Public Domain6 11th July 2013
Vehicle
Manufacture
Vehicle
Transport
Vehicle
Operation
Refuelling
Infrastructure
End of Life
Disposal
• Five key stages were
identified as accounting
for the most significant
GHG emission components
of the road vehicle lifecycle (that
could also reasonably be quantified)
The road vehicle lifecycle
Materials (Fe, Al, etc)
Components
Manufacturing energy
Road
Rail
Ship
Energy Consumption
Maintenance
Refrigerant leakage
Conventional fuels
Electric recharging
Hydrogen refuelling
Recycling
Refrigerant
Fuel use
© Ricardo-AEA LtdUnclassified – Public Domain7 11th July 2013
 Principal differences between values in the studies were largely due to a combination of
the following factors / assumptions for the analysis:
(i) lifetime km (= vehicle lifetime x annual km), (ii) vehicle size/specification,
(iii) lifecycle stages covered, (iv) grid electricity GHG intensity,
(v) batteries used (size in kg or kWh, assumptions on GHG intensity of manufacture)
Range of overall LCEs in the literature
Road transport technologies
Wide range of studies
identified and preliminarily
screened for suitability
Studies selected to be taken
forward for further analysis
included some or all of the
following elements:
Compared as many
technologies as possible
Provided sufficient detail/
breakdown for the analysis
Provided additional
information/detail on certain
aspects (e.g. battery tech,
refuelling infrastructure, etc)
Other studies also used to
provide/supplement key data
0
50
100
150
200
250
300
350
ICE HEV PHEV REEV BEV
Car
gCO2e/Km
Patterson et al. 2011
Samaras & Meisterling
2008
Hawkins et al. 2012
Ma et al. 2012
Lucas et al. 2012
Helms et al, 2010
Zamel & Li 2006
Burnham et al. 2006
[This study]
© Ricardo-AEA LtdUnclassified – Public Domain8 11th July 2013
 Fuel factors are average over the operational lifetime for a vehicle in a given year
 Future vehicle performance/characteristics from CCC modelling and recent publications
Base case scenario assumptions:
Energy and materials intensity trajectories, vehicle characteristics
0.0
0.2
0.4
0.6
0.8
1.0
1.2
1.4
1.6
2010 2020 2030 2040 2050
kgCO2/kg
Steel (Base)
Steel-Base-UK
Steel-Base-OECD
Europe
Steel-Base-OECD
Other
Steel-Base-Car
Average
Steel-Base-HGV
Average
Steel-Base-non
OECD
0
1
2
3
4
5
6
7
8
9
2010 2020 2030 2040 2050
kgCO2/kg
Aluminium (Base)
Aluminium-Base-UK
Aluminium-Base-
OECD Europe
Aluminium-Base-
OECD Other
Aluminium-Base-Car
Average
Aluminium-Base-
HGV Average
Aluminium-Base-non
OECD
0
50
100
150
200
250
300
2010 2020 2030 2040 2050
kgCO2/kWh
Battery (Base)
Battery-Base-UK
Battery-Base-OECD
Europe
Battery-Base-OECD
Other
Battery-Base-Car
Average
Battery-Base-HGV
Average
Battery-Base-non
OECD
0
50
100
150
200
250
300
350
400
450
500
2010 2020 2030 2040 2050
gCO2/kWh(lifetimeaverage)
Fuels (Base)
Petrol Base UK
Diesel Base UK
Electricity Base UK
Hydrogen Base UK
Natural gas Base UK
© Ricardo-AEA LtdUnclassified – Public Domain9 11th July 2013
0
10
20
30
40
50
60
70
2010 ICE Car 2010 BEV Car
gCO2e/km
Emissions Breakdown (excluding operational fuel)
Dismantalling refrigerant leakage
Dismantalling fuel use
Refuelling infrastructure
Operation Refrigerant Leakage
Operation Maintenance
Transport Total
Manufacture fuel use
Manufacture Refrigerant Leakage
Components Battery
Materials Other
Materials CFRP
Materials Textile
Materials Glass
Materials Rubber
Materials Plastics
Materials Magnesium
Materials Aluminium
Materials Iron & Steel
87%
13%
Petrol ICE Car
Fuel
Other
2010
52%48%
BEV Car
Fuel
Other
2010
Breakdown of LCEs from the developed model:
Detailed split for 2010 Petrol ICE and BEV cars
The uncertainty in and
significance of GHG
emissions from battery
production in the
literature prompted more
detailed investigation of
the component
breakdown in order to
better understand
potential future trajectory
/ key sensitivities
Total g/km
Total g/km
* Battery production GHG intensity based on intermediate value in literature from Ricardo (2012)
*
© Ricardo-AEA LtdUnclassified – Public Domain10 11th July 2013
Breakdown of LCEs from the developed model:
Future trajectory of detailed split for BEV cars (baseline)
0
10
20
30
40
50
60
70
2010 2020 2030 2040 2050
gCO2e/km
Emissions Breakdown (excluding operational fuel) - BEV Car
Dismantalling refrigerant leakage
Dismantalling fuel use
Refuelling infrastructure
Operation Refrigerant Leakage
Operation Maintenance
Transport Total
Manufacture fuel use
Manufacture Refrigerant Leakage
Components Battery
Materials Other
Materials CFRP
Materials Textile
Materials Glass
Materials Rubber
Materials Plastics
Materials Magnesium
Materials Aluminium
Materials Iron & Steel
 Significance of
batteries in
overall LCE
footprint of BEVs
is anticipated to
decrease
significantly in the
long term under
the base case:
 Battery GHG
reduction due to:
i. Reduced
battery weight
(/materials);
ii. Decarbonised
manufacturing
energy
iii.Improved
recycling
iv.Reduced GHG
intensity of
materials used
© Ricardo-AEA LtdUnclassified – Public Domain11 11th July 2013
 2010 petrol car = 159.5 gCO2/km (test cycle)
 ICE > HEV > PHEV > REEV > BEV
 Manufacturing emissions share increases in
future, particularly for BEVs
 Reduced savings from EVs (relative to ICE) -
but total LCEs still much lower than for ICE
 Recharging infrastructure a small but still
significant component (but more uncertainty)
 5 gCO2e/km due to refrigerants in 2010
Base case scenario for cars:
Breakdown by lifecycle stage
0
50
100
150
200
250
300
2010 2020 2030 2040 2050
gCO2e/km
Petrol ICE Car, Scenario 1: Base case
Disposal
Infrastructure
Operation
Transport
Manufacture
0
50
100
150
200
250
300
2010 2020 2030 2040 2050
gCO2e/km
BEV Car, Scenario 1: Base case
Disposal
Infrastructure
Operation
Transport
Manufacture
0
50
100
150
200
250
300
2010 2020 2030 2040 2050
gCO2e/km
Petrol PHEV Car, Scenario 1: Base case
Disposal
Infrastructure
Operation
Transport
Manufacture
© Ricardo-AEA LtdUnclassified – Public Domain12 11th July 2013
 Proportion of emissions outside UK doesn’t
change much over time for ICE (2010: ~8%)
and PHEV (2010: ~16%) technologies
 >40% of BEV emissions are outside of the
UK in 2010, potentially rising to 66% by 2050
(due to vehicle and battery production)
 In the Worst Case scenario (with very high
emissions due mainly to the batteries) over
86% of BEV LCE could occur outside of the
UK by 2050 (also due to reduction in
operational LCE)
Base case scenario for cars:
Emissions in the UK vs overseas
0
50
100
150
200
250
300
2010 2020 2030 2040 2050
gCO2e/km
Petrol ICE Car, Scenario 1: Base case
NonUK
Emissions
UK Emissions
0
50
100
150
200
250
300
2010 2020 2030 2040 2050
gCO2e/km
Petrol PHEV Car, Scenario 1: Base case
NonUK
Emissions
UK Emissions
0
50
100
150
200
250
300
2010 2020 2030 2040 2050
gCO2e/km
BEV Car, Scenario 1: Base case
NonUK
Emissions
UK Emissions
© Ricardo-AEA LtdUnclassified – Public Domain13 11th July 2013
78%
22%
Petrol PHEV Car
Fuel
Other
2010
84%
16%
Petrol PHEV Car
Fuel
Other
2050
52%48%
BEV Car
Fuel
Other
2010
7%
93%
BEV Car
Fuel
Other
2050
87%
13%
Petrol ICE Car
Fuel
Other
2010
91%
9%
Petrol ICE Car
Fuel
Other
2050
Base case scenario for cars:
Split of LCE for different powertrains for 2010 and 2050
Total 265 g/km
Total 127 g/km Total 78 g/km
Total 136 g/kmTotal 185 g/km
Total 16 g/km
© Ricardo-AEA LtdUnclassified – Public Domain14 11th July 2013
 Battery developments are critical to achieve
the maximum savings potential (2050:-90%)
 Worst case BEVs show only 26% reduction
on base ICE in 2050 (at current biofuel
levels). BUT battery replacement unlikely
under current lifetime km assumptions
versus current manufacturer warranties
 BEVs show 55% improvement over Petrol
ICE in 2050 for more realistic alternate
worst case + high lifetime km scenario
(16,000 mi/yr = 57 g/km LCEs for BEVs)
Sensitivity analysis for cars:
Best Case and Worst Case
0
50
100
150
200
250
300
2010 2020 2030 2040 2050
gCO2e/km
Year
Sensitivity Range
Petrol ICE Car (best)
Petrol PHEV Car (best)
BEV Car (best)
Petrol ICE Car (worst)
Petrol PHEV Car (worst)
BEV Car (worst)
0
50
100
150
200
250
300
2010 2050 2010 2050 2010 2050 2010 2050 2010 2050
Petrol ICE
Car
Petrol HEV
Car
Petrol PHEV
Car
Petrol REEV
Car
BEV Car
gCO2e/km
Scenario 9: Best Case
Disposal
Infrastructure
Operation
Transport
Battery
replacement
Manufacture
0
50
100
150
200
250
300
2010 2050 2010 2050 2010 2050 2010 2050 2010 2050
Petrol ICE
Car
Petrol HEV
Car
Petrol PHEV
Car
Petrol REEV
Car
BEV Car
gCO2e/km
Scenario 10: Worst Case
Disposal
Infrastructure
Operation
Transport
Battery
replacement
Manufacture
© Ricardo-AEA LtdUnclassified – Public Domain15 11th July 2013
 Base scenario for 2010 shows that operational GHG emissions over lifetime of vehicle
decrease in the following order ICE > equivalent HEV > PHEV > REEV > BEV
 Sensitivity analysis highlighted battery developments are critical to achieve the max.
GHG savings for BEVs (and REEVs, PHEVs to a lesser extent):
‒ Improvements in battery cycle/lifetime to minimise the likelihood of replacements
‒ Improvements in battery energy density to reduce material use
‒ Improvements in recycling practices to generate savings through recovered materials
‒ Regional (UK/European) battery production to minimise GHG
‒ Improvements in battery manufacture GHG intensity (i.e. production energy and
materials)
 BUT in worst case scenario with high lifetime km (+one battery replacement), BEVs still
have ~55% reduction on equivalent ICE by 2050 (at current UK average biofuel levels)
 Future NonUK emissions share unlikely to increase much for ICE (~9%) and PHEV
(~18%), but could increase significantly for BEV (currently 41%, potentially rising to
66% by 2050). (Primarily from significant reduction in operational, other UK elements)
 Recharging infrastructure more uncertain; a small but likely still significant component
(>3% for BEVs in 2010), but could be potentially more significant in the longer term.
Summary and Conclusions:
Part 1 – From Ricardo-AEA study for CCC
© Ricardo-AEA LtdUnclassified – Public Domain16 11th July 2013
 Publication of industry LCA studies would help facilitate understanding
 Ideally need to track vehicle LCA in a more consistent basis before could
even think about whether/how a regulatory approach might be adopted (or not)
 Future vehicle CO2 regulations should likely at least factor in WTW emissions
 Recommendations from Ricardo (2011) report for LowCVP are still relevant:
− Consider a new CO2 metric based on the GHG emissions emitted during vehicle
production [tCO2e] (and more tightly define scope/specification for this)
− Consider targets aimed at reducing the life cycle CO2 [tCO2e]
− Consider the fiscal and regulatory framework in which vehicles are sold, used and
disposed
 Need to develop a better understanding of battery production emissions and
impacts of technology development and ensure future developments do
significantly reduce battery production/disposal emissions
 Further research is also needed to quantify the relative impacts of different
infrastructure types/mixes, and the likely 2050 requirements
Summary and Conclusions:
Part 2 – Potential implications for policy and businesses
© Ricardo-AEA LtdUnclassified – Public Domain17 11th July 2013
For further information see full study report available from CCC’s website at:
http://www.theccc.org.uk/wp-content/uploads/2013/04/Ricardo-
AEA-lifecycle-emissions-low-carbon-technologies-April-2013.pdf
Further information
© Ricardo-AEA Ltd
www.ricardo-aea.com
T:
E:
W:
Ricardo-AEA Ltd
Gemini Building,
Fermi Avenue,
Harwell, Didcot,
Oxfordshire,
OX11 0QR,
Nikolas Hill
Knowledge Leader – Transport Technology and Fuels
+44 (0)1235 753522
nikolas.hill@ricardo-aea.com
www.ricardo-aea.com

Weitere ähnliche Inhalte

Was ist angesagt?

An Introduction To Electric vehicles
An Introduction To Electric vehiclesAn Introduction To Electric vehicles
An Introduction To Electric vehiclesGLH Ltd
 
Making Transport Sustainable
Making Transport Sustainable   Making Transport Sustainable
Making Transport Sustainable JIT KUMAR GUPTA
 
Nhdp get the fact - itp India - Highways
Nhdp   get the fact - itp India - HighwaysNhdp   get the fact - itp India - Highways
Nhdp get the fact - itp India - HighwaysArnaud Renard
 
Seminar report on modifications for ethanol engines
Seminar report on modifications for ethanol enginesSeminar report on modifications for ethanol engines
Seminar report on modifications for ethanol enginesSughosh Deshmukh
 
Traffic Queueing analysis using VISSIM Software by RK
Traffic Queueing analysis using VISSIM Software by RKTraffic Queueing analysis using VISSIM Software by RK
Traffic Queueing analysis using VISSIM Software by RKRaam Krishna Prakash Jagali
 
automobile workshop ppt Traning report by c rang rajan and sudhir kumar
automobile workshop ppt Traning report by c rang rajan and sudhir kumarautomobile workshop ppt Traning report by c rang rajan and sudhir kumar
automobile workshop ppt Traning report by c rang rajan and sudhir kumarchakrawarti rang rajan
 
Presentation on BEV ( Battery Operated Electric Vehicles)
Presentation on BEV ( Battery Operated Electric Vehicles) Presentation on BEV ( Battery Operated Electric Vehicles)
Presentation on BEV ( Battery Operated Electric Vehicles) Pranav Mistry
 
FUTURE OF ELECTRIC CAR
FUTURE OF ELECTRIC CARFUTURE OF ELECTRIC CAR
FUTURE OF ELECTRIC CARJaideepChoken
 
Halderman ch096 lecture
Halderman ch096 lectureHalderman ch096 lecture
Halderman ch096 lecturemcfalltj
 
Electric vehicles
Electric vehiclesElectric vehicles
Electric vehiclesAjay Arora
 
Vehicle Testing and Homologation
Vehicle Testing and Homologation  Vehicle Testing and Homologation
Vehicle Testing and Homologation YashSanghadia
 
Energy and Transport
Energy and TransportEnergy and Transport
Energy and TransportHasan Tufan
 
Lightweighting Automobiles
Lightweighting AutomobilesLightweighting Automobiles
Lightweighting AutomobilesDebbie Rothwell
 

Was ist angesagt? (20)

An Introduction To Electric vehicles
An Introduction To Electric vehiclesAn Introduction To Electric vehicles
An Introduction To Electric vehicles
 
Roller barriers
Roller barriersRoller barriers
Roller barriers
 
Making Transport Sustainable
Making Transport Sustainable   Making Transport Sustainable
Making Transport Sustainable
 
Nhdp get the fact - itp India - Highways
Nhdp   get the fact - itp India - HighwaysNhdp   get the fact - itp India - Highways
Nhdp get the fact - itp India - Highways
 
Seminar report on modifications for ethanol engines
Seminar report on modifications for ethanol enginesSeminar report on modifications for ethanol engines
Seminar report on modifications for ethanol engines
 
Traffic Queueing analysis using VISSIM Software by RK
Traffic Queueing analysis using VISSIM Software by RKTraffic Queueing analysis using VISSIM Software by RK
Traffic Queueing analysis using VISSIM Software by RK
 
Vehicle safety system
Vehicle safety systemVehicle safety system
Vehicle safety system
 
Crash Investigation and Black Spot Assessment
Crash Investigation and Black Spot AssessmentCrash Investigation and Black Spot Assessment
Crash Investigation and Black Spot Assessment
 
Mobility and City Streets: Deployment of Electric Buses in India
Mobility and City Streets: Deployment of Electric Buses in IndiaMobility and City Streets: Deployment of Electric Buses in India
Mobility and City Streets: Deployment of Electric Buses in India
 
Green electronics: a technology for a sustainable future.
Green electronics: a technology for a sustainable future.Green electronics: a technology for a sustainable future.
Green electronics: a technology for a sustainable future.
 
automobile workshop ppt Traning report by c rang rajan and sudhir kumar
automobile workshop ppt Traning report by c rang rajan and sudhir kumarautomobile workshop ppt Traning report by c rang rajan and sudhir kumar
automobile workshop ppt Traning report by c rang rajan and sudhir kumar
 
Presentation on BEV ( Battery Operated Electric Vehicles)
Presentation on BEV ( Battery Operated Electric Vehicles) Presentation on BEV ( Battery Operated Electric Vehicles)
Presentation on BEV ( Battery Operated Electric Vehicles)
 
Life Cycle Assessment (LCA)
Life Cycle Assessment (LCA)Life Cycle Assessment (LCA)
Life Cycle Assessment (LCA)
 
FUTURE OF ELECTRIC CAR
FUTURE OF ELECTRIC CARFUTURE OF ELECTRIC CAR
FUTURE OF ELECTRIC CAR
 
Halderman ch096 lecture
Halderman ch096 lectureHalderman ch096 lecture
Halderman ch096 lecture
 
Electric vehicles
Electric vehiclesElectric vehicles
Electric vehicles
 
Vehicle Testing and Homologation
Vehicle Testing and Homologation  Vehicle Testing and Homologation
Vehicle Testing and Homologation
 
Energy and Transport
Energy and TransportEnergy and Transport
Energy and Transport
 
Lightweighting Automobiles
Lightweighting AutomobilesLightweighting Automobiles
Lightweighting Automobiles
 
E highway
E highwayE highway
E highway
 

Andere mochten auch

ISO 14001 life cycle assessment
ISO 14001 life cycle assessmentISO 14001 life cycle assessment
ISO 14001 life cycle assessmentCaroline Geoghegan
 
El001 environmental aspects and impacts register website
El001 environmental aspects and impacts register   websiteEl001 environmental aspects and impacts register   website
El001 environmental aspects and impacts register websiteAbid Iqbal
 
Iso 14001-ems-internal-audit-checklist-example ok
Iso 14001-ems-internal-audit-checklist-example okIso 14001-ems-internal-audit-checklist-example ok
Iso 14001-ems-internal-audit-checklist-example okAIC CONSULTORES SAC
 
ISO 14001 2015
ISO 14001 2015ISO 14001 2015
ISO 14001 2015Firat Ozel
 
Integrated Management System Manual Template (Preview)
Integrated Management System Manual Template (Preview)Integrated Management System Manual Template (Preview)
Integrated Management System Manual Template (Preview)Centauri Business Group Inc.
 
ISO 14001 EMS Awarness Training
ISO 14001 EMS Awarness TrainingISO 14001 EMS Awarness Training
ISO 14001 EMS Awarness TrainingMahendra K SHUKLA
 
ISO 14001:2015 Significant Aspects sheet
ISO 14001:2015 Significant Aspects sheet ISO 14001:2015 Significant Aspects sheet
ISO 14001:2015 Significant Aspects sheet Tim Matthews
 
Risk opportunity analysis ISO 9001:2015
Risk opportunity analysis ISO 9001:2015Risk opportunity analysis ISO 9001:2015
Risk opportunity analysis ISO 9001:2015Ghiru Kanesvaran
 

Andere mochten auch (10)

ISO 14001 life cycle assessment
ISO 14001 life cycle assessmentISO 14001 life cycle assessment
ISO 14001 life cycle assessment
 
El001 environmental aspects and impacts register website
El001 environmental aspects and impacts register   websiteEl001 environmental aspects and impacts register   website
El001 environmental aspects and impacts register website
 
Iso 14001-ems-internal-audit-checklist-example ok
Iso 14001-ems-internal-audit-checklist-example okIso 14001-ems-internal-audit-checklist-example ok
Iso 14001-ems-internal-audit-checklist-example ok
 
ISO 14001 2015
ISO 14001 2015ISO 14001 2015
ISO 14001 2015
 
Integrated Management System Manual Template (Preview)
Integrated Management System Manual Template (Preview)Integrated Management System Manual Template (Preview)
Integrated Management System Manual Template (Preview)
 
ISO 14001 EMS Awarness Training
ISO 14001 EMS Awarness TrainingISO 14001 EMS Awarness Training
ISO 14001 EMS Awarness Training
 
ISO 14001:2015 Significant Aspects sheet
ISO 14001:2015 Significant Aspects sheet ISO 14001:2015 Significant Aspects sheet
ISO 14001:2015 Significant Aspects sheet
 
Risk based thinking
Risk based thinkingRisk based thinking
Risk based thinking
 
Risk opportunity analysis ISO 9001:2015
Risk opportunity analysis ISO 9001:2015Risk opportunity analysis ISO 9001:2015
Risk opportunity analysis ISO 9001:2015
 
100+ Beautiful Slides From Cannes Lions 2012
100+ Beautiful Slides From Cannes Lions 2012100+ Beautiful Slides From Cannes Lions 2012
100+ Beautiful Slides From Cannes Lions 2012
 

Ähnlich wie Life cycle analysis for hybrid and electric vehicles

Fuel car cell fuel car
Fuel car cell fuel carFuel car cell fuel car
Fuel car cell fuel carSANJAY DURAI
 
A Fuel Efficiency Horizon for U.S. Automobiles
A Fuel Efficiency Horizon for U.S. AutomobilesA Fuel Efficiency Horizon for U.S. Automobiles
A Fuel Efficiency Horizon for U.S. Automobilesjmdecicco
 
Cost and efficiency assumptions for modelling low carbon vehicles out to 2050
Cost and efficiency assumptions for modelling low carbon vehicles out to 2050Cost and efficiency assumptions for modelling low carbon vehicles out to 2050
Cost and efficiency assumptions for modelling low carbon vehicles out to 2050Ricardo Energy & Environment
 
A paper on barriers and challenges of electric vehicles to grid optimization
A paper on barriers and challenges of electric vehicles to grid optimizationA paper on barriers and challenges of electric vehicles to grid optimization
A paper on barriers and challenges of electric vehicles to grid optimizationIRJET Journal
 
Comparison in Commercial Vehicles - Truck EV vs Truck diesel
Comparison in Commercial Vehicles - Truck EV vs Truck dieselComparison in Commercial Vehicles - Truck EV vs Truck diesel
Comparison in Commercial Vehicles - Truck EV vs Truck dieselssuserf45585
 
European Green Cars Initiative Projects HELIOS Proposal Paper (July 2012)
European Green Cars Initiative Projects HELIOS Proposal Paper (July 2012)European Green Cars Initiative Projects HELIOS Proposal Paper (July 2012)
European Green Cars Initiative Projects HELIOS Proposal Paper (July 2012)Andrew Gelston
 
High energy lithium ion storage solutions
High energy lithium ion storage solutionsHigh energy lithium ion storage solutions
High energy lithium ion storage solutionsAndrew Gelston
 
ACV des véhicules électriques en Europe - Transport&Environment / Université ...
ACV des véhicules électriques en Europe - Transport&Environment / Université ...ACV des véhicules électriques en Europe - Transport&Environment / Université ...
ACV des véhicules électriques en Europe - Transport&Environment / Université ...Ghislain Delabie
 
Hydrogen policy regulations and standards
Hydrogen policy regulations and standardsHydrogen policy regulations and standards
Hydrogen policy regulations and standardsDr. Pradip Chanda
 
Exploring future CO2 emission targets for cars and vans
Exploring future CO2 emission targets for cars and vansExploring future CO2 emission targets for cars and vans
Exploring future CO2 emission targets for cars and vansRicardo Energy & Environment
 
Passenger Vehicle Fuel Economy Standards
Passenger Vehicle Fuel Economy StandardsPassenger Vehicle Fuel Economy Standards
Passenger Vehicle Fuel Economy StandardsUNEP OzonAction
 
IRJET- Are Electric Vehicles Real Alternative for Petroleum based Vehicles? a...
IRJET- Are Electric Vehicles Real Alternative for Petroleum based Vehicles? a...IRJET- Are Electric Vehicles Real Alternative for Petroleum based Vehicles? a...
IRJET- Are Electric Vehicles Real Alternative for Petroleum based Vehicles? a...IRJET Journal
 
roland_berger_global_automotive_stamping_study_e_20170210 (1).pdf
roland_berger_global_automotive_stamping_study_e_20170210 (1).pdfroland_berger_global_automotive_stamping_study_e_20170210 (1).pdf
roland_berger_global_automotive_stamping_study_e_20170210 (1).pdfSnunkhaemEcharoj
 
Position paper for standardization and legislation of battery value chain of ...
Position paper for standardization and legislation of battery value chain of ...Position paper for standardization and legislation of battery value chain of ...
Position paper for standardization and legislation of battery value chain of ...OlgaRodrguezLargo
 
Professor Dave Greenwood Polymer Innovation Network Talk 30.04.15
Professor Dave Greenwood Polymer Innovation Network Talk 30.04.15Professor Dave Greenwood Polymer Innovation Network Talk 30.04.15
Professor Dave Greenwood Polymer Innovation Network Talk 30.04.15WMG, University of Warwick
 
Forecasting Hybrid Aircraft: How Changing Policy is Driving Innovation
Forecasting Hybrid Aircraft: How Changing Policy is Driving InnovationForecasting Hybrid Aircraft: How Changing Policy is Driving Innovation
Forecasting Hybrid Aircraft: How Changing Policy is Driving InnovationAndrew Wilhelm
 
IRJET- Study of Performance and Emission Analysis of Hydrogen-Diesel Duel Fue...
IRJET- Study of Performance and Emission Analysis of Hydrogen-Diesel Duel Fue...IRJET- Study of Performance and Emission Analysis of Hydrogen-Diesel Duel Fue...
IRJET- Study of Performance and Emission Analysis of Hydrogen-Diesel Duel Fue...IRJET Journal
 
SA 2015 Transportation Fuel Cell Cost Analysis (Auto and Bus)
SA 2015 Transportation Fuel Cell Cost Analysis (Auto and Bus)SA 2015 Transportation Fuel Cell Cost Analysis (Auto and Bus)
SA 2015 Transportation Fuel Cell Cost Analysis (Auto and Bus)Brian James
 

Ähnlich wie Life cycle analysis for hybrid and electric vehicles (20)

Fuel car cell fuel car
Fuel car cell fuel carFuel car cell fuel car
Fuel car cell fuel car
 
A Fuel Efficiency Horizon for U.S. Automobiles
A Fuel Efficiency Horizon for U.S. AutomobilesA Fuel Efficiency Horizon for U.S. Automobiles
A Fuel Efficiency Horizon for U.S. Automobiles
 
Cost and efficiency assumptions for modelling low carbon vehicles out to 2050
Cost and efficiency assumptions for modelling low carbon vehicles out to 2050Cost and efficiency assumptions for modelling low carbon vehicles out to 2050
Cost and efficiency assumptions for modelling low carbon vehicles out to 2050
 
A paper on barriers and challenges of electric vehicles to grid optimization
A paper on barriers and challenges of electric vehicles to grid optimizationA paper on barriers and challenges of electric vehicles to grid optimization
A paper on barriers and challenges of electric vehicles to grid optimization
 
Comparison in Commercial Vehicles - Truck EV vs Truck diesel
Comparison in Commercial Vehicles - Truck EV vs Truck dieselComparison in Commercial Vehicles - Truck EV vs Truck diesel
Comparison in Commercial Vehicles - Truck EV vs Truck diesel
 
European Green Cars Initiative Projects HELIOS Proposal Paper (July 2012)
European Green Cars Initiative Projects HELIOS Proposal Paper (July 2012)European Green Cars Initiative Projects HELIOS Proposal Paper (July 2012)
European Green Cars Initiative Projects HELIOS Proposal Paper (July 2012)
 
High energy lithium ion storage solutions
High energy lithium ion storage solutionsHigh energy lithium ion storage solutions
High energy lithium ion storage solutions
 
ACV des véhicules électriques en Europe - Transport&Environment / Université ...
ACV des véhicules électriques en Europe - Transport&Environment / Université ...ACV des véhicules électriques en Europe - Transport&Environment / Université ...
ACV des véhicules électriques en Europe - Transport&Environment / Université ...
 
Global Lightweight Vehicle Developments and Policy Design Implications - Nic ...
Global Lightweight Vehicle Developments and Policy Design Implications - Nic ...Global Lightweight Vehicle Developments and Policy Design Implications - Nic ...
Global Lightweight Vehicle Developments and Policy Design Implications - Nic ...
 
Hydrogen policy regulations and standards
Hydrogen policy regulations and standardsHydrogen policy regulations and standards
Hydrogen policy regulations and standards
 
Exploring future CO2 emission targets for cars and vans
Exploring future CO2 emission targets for cars and vansExploring future CO2 emission targets for cars and vans
Exploring future CO2 emission targets for cars and vans
 
Passenger Vehicle Fuel Economy Standards
Passenger Vehicle Fuel Economy StandardsPassenger Vehicle Fuel Economy Standards
Passenger Vehicle Fuel Economy Standards
 
The impact of carbon tax on the Irish freight sector
The impact of carbon tax on the Irish freight sectorThe impact of carbon tax on the Irish freight sector
The impact of carbon tax on the Irish freight sector
 
IRJET- Are Electric Vehicles Real Alternative for Petroleum based Vehicles? a...
IRJET- Are Electric Vehicles Real Alternative for Petroleum based Vehicles? a...IRJET- Are Electric Vehicles Real Alternative for Petroleum based Vehicles? a...
IRJET- Are Electric Vehicles Real Alternative for Petroleum based Vehicles? a...
 
roland_berger_global_automotive_stamping_study_e_20170210 (1).pdf
roland_berger_global_automotive_stamping_study_e_20170210 (1).pdfroland_berger_global_automotive_stamping_study_e_20170210 (1).pdf
roland_berger_global_automotive_stamping_study_e_20170210 (1).pdf
 
Position paper for standardization and legislation of battery value chain of ...
Position paper for standardization and legislation of battery value chain of ...Position paper for standardization and legislation of battery value chain of ...
Position paper for standardization and legislation of battery value chain of ...
 
Professor Dave Greenwood Polymer Innovation Network Talk 30.04.15
Professor Dave Greenwood Polymer Innovation Network Talk 30.04.15Professor Dave Greenwood Polymer Innovation Network Talk 30.04.15
Professor Dave Greenwood Polymer Innovation Network Talk 30.04.15
 
Forecasting Hybrid Aircraft: How Changing Policy is Driving Innovation
Forecasting Hybrid Aircraft: How Changing Policy is Driving InnovationForecasting Hybrid Aircraft: How Changing Policy is Driving Innovation
Forecasting Hybrid Aircraft: How Changing Policy is Driving Innovation
 
IRJET- Study of Performance and Emission Analysis of Hydrogen-Diesel Duel Fue...
IRJET- Study of Performance and Emission Analysis of Hydrogen-Diesel Duel Fue...IRJET- Study of Performance and Emission Analysis of Hydrogen-Diesel Duel Fue...
IRJET- Study of Performance and Emission Analysis of Hydrogen-Diesel Duel Fue...
 
SA 2015 Transportation Fuel Cell Cost Analysis (Auto and Bus)
SA 2015 Transportation Fuel Cell Cost Analysis (Auto and Bus)SA 2015 Transportation Fuel Cell Cost Analysis (Auto and Bus)
SA 2015 Transportation Fuel Cell Cost Analysis (Auto and Bus)
 

Mehr von Ricardo Energy & Environment

D0 1 ricardo_infrastructure & service delivery
D0 1 ricardo_infrastructure & service deliveryD0 1 ricardo_infrastructure & service delivery
D0 1 ricardo_infrastructure & service deliveryRicardo Energy & Environment
 
Turning plans into achievement: the art of INDC implementation
Turning plans into achievement: the art of INDC implementationTurning plans into achievement: the art of INDC implementation
Turning plans into achievement: the art of INDC implementationRicardo Energy & Environment
 
Waste Management Needs and Opportunities in Riyadh: Lessons from the Kingdom ...
Waste Management Needs and Opportunities in Riyadh: Lessons from the Kingdom ...Waste Management Needs and Opportunities in Riyadh: Lessons from the Kingdom ...
Waste Management Needs and Opportunities in Riyadh: Lessons from the Kingdom ...Ricardo Energy & Environment
 
Transition Economy Waste Strategies and the Energy vs Recycling Debate
Transition Economy Waste Strategies and the Energy vs Recycling DebateTransition Economy Waste Strategies and the Energy vs Recycling Debate
Transition Economy Waste Strategies and the Energy vs Recycling DebateRicardo Energy & Environment
 
Recycling Rates Plateau – Lessons from the United Kingdom
Recycling Rates Plateau – Lessons from the United Kingdom Recycling Rates Plateau – Lessons from the United Kingdom
Recycling Rates Plateau – Lessons from the United Kingdom Ricardo Energy & Environment
 
TEEP and lessons learned from UK approach to EU compliance
TEEP and lessons learned from UK approach to EU complianceTEEP and lessons learned from UK approach to EU compliance
TEEP and lessons learned from UK approach to EU complianceRicardo Energy & Environment
 

Mehr von Ricardo Energy & Environment (20)

D0 4 ricardo_institutional structure
D0 4 ricardo_institutional structureD0 4 ricardo_institutional structure
D0 4 ricardo_institutional structure
 
D0 3 ricardo_policy
D0 3 ricardo_policyD0 3 ricardo_policy
D0 3 ricardo_policy
 
D0 2 ricardo_indc
D0 2 ricardo_indcD0 2 ricardo_indc
D0 2 ricardo_indc
 
D0 1 ricardo_infrastructure & service delivery
D0 1 ricardo_infrastructure & service deliveryD0 1 ricardo_infrastructure & service delivery
D0 1 ricardo_infrastructure & service delivery
 
C0 4 ricardo_revenues costs
C0 4 ricardo_revenues costsC0 4 ricardo_revenues costs
C0 4 ricardo_revenues costs
 
C0 3 ricardo_health social
C0 3 ricardo_health socialC0 3 ricardo_health social
C0 3 ricardo_health social
 
C0 2 ricardo_environmental
C0 2 ricardo_environmentalC0 2 ricardo_environmental
C0 2 ricardo_environmental
 
C0 1 ricardo_regulation
C0 1 ricardo_regulationC0 1 ricardo_regulation
C0 1 ricardo_regulation
 
B4 0 ricardo_thermal
B4 0 ricardo_thermalB4 0 ricardo_thermal
B4 0 ricardo_thermal
 
B3 0 ricardo_fuel prep
B3 0 ricardo_fuel prepB3 0 ricardo_fuel prep
B3 0 ricardo_fuel prep
 
B2 0 ricardo_biological
B2 0 ricardo_biologicalB2 0 ricardo_biological
B2 0 ricardo_biological
 
B1 0 ricardo_landfill gas
B1 0 ricardo_landfill gasB1 0 ricardo_landfill gas
B1 0 ricardo_landfill gas
 
0 ricardo welcome
0 ricardo welcome0 ricardo welcome
0 ricardo welcome
 
A0 ricardo context
A0 ricardo contextA0 ricardo context
A0 ricardo context
 
Turning plans into achievement: the art of INDC implementation
Turning plans into achievement: the art of INDC implementationTurning plans into achievement: the art of INDC implementation
Turning plans into achievement: the art of INDC implementation
 
Waste Management Needs and Opportunities in Riyadh: Lessons from the Kingdom ...
Waste Management Needs and Opportunities in Riyadh: Lessons from the Kingdom ...Waste Management Needs and Opportunities in Riyadh: Lessons from the Kingdom ...
Waste Management Needs and Opportunities in Riyadh: Lessons from the Kingdom ...
 
Transition Economy Waste Strategies and the Energy vs Recycling Debate
Transition Economy Waste Strategies and the Energy vs Recycling DebateTransition Economy Waste Strategies and the Energy vs Recycling Debate
Transition Economy Waste Strategies and the Energy vs Recycling Debate
 
Recycling Rates Plateau – Lessons from the United Kingdom
Recycling Rates Plateau – Lessons from the United Kingdom Recycling Rates Plateau – Lessons from the United Kingdom
Recycling Rates Plateau – Lessons from the United Kingdom
 
TEEP and lessons learned from UK approach to EU compliance
TEEP and lessons learned from UK approach to EU complianceTEEP and lessons learned from UK approach to EU compliance
TEEP and lessons learned from UK approach to EU compliance
 
Policy Impacts on Global EfW Development
Policy Impacts on Global EfW DevelopmentPolicy Impacts on Global EfW Development
Policy Impacts on Global EfW Development
 

Kürzlich hochgeladen

Call Us 📲8800102216📞 Call Girls In DLF City Gurgaon
Call Us 📲8800102216📞 Call Girls In DLF City GurgaonCall Us 📲8800102216📞 Call Girls In DLF City Gurgaon
Call Us 📲8800102216📞 Call Girls In DLF City Gurgaoncallgirls2057
 
8447779800, Low rate Call girls in New Ashok Nagar Delhi NCR
8447779800, Low rate Call girls in New Ashok Nagar Delhi NCR8447779800, Low rate Call girls in New Ashok Nagar Delhi NCR
8447779800, Low rate Call girls in New Ashok Nagar Delhi NCRashishs7044
 
Cybersecurity Awareness Training Presentation v2024.03
Cybersecurity Awareness Training Presentation v2024.03Cybersecurity Awareness Training Presentation v2024.03
Cybersecurity Awareness Training Presentation v2024.03DallasHaselhorst
 
8447779800, Low rate Call girls in Tughlakabad Delhi NCR
8447779800, Low rate Call girls in Tughlakabad Delhi NCR8447779800, Low rate Call girls in Tughlakabad Delhi NCR
8447779800, Low rate Call girls in Tughlakabad Delhi NCRashishs7044
 
Annual General Meeting Presentation Slides
Annual General Meeting Presentation SlidesAnnual General Meeting Presentation Slides
Annual General Meeting Presentation SlidesKeppelCorporation
 
Islamabad Escorts | Call 03070433345 | Escort Service in Islamabad
Islamabad Escorts | Call 03070433345 | Escort Service in IslamabadIslamabad Escorts | Call 03070433345 | Escort Service in Islamabad
Islamabad Escorts | Call 03070433345 | Escort Service in IslamabadAyesha Khan
 
BEST Call Girls In Greater Noida ✨ 9773824855 ✨ Escorts Service In Delhi Ncr,
BEST Call Girls In Greater Noida ✨ 9773824855 ✨ Escorts Service In Delhi Ncr,BEST Call Girls In Greater Noida ✨ 9773824855 ✨ Escorts Service In Delhi Ncr,
BEST Call Girls In Greater Noida ✨ 9773824855 ✨ Escorts Service In Delhi Ncr,noida100girls
 
Youth Involvement in an Innovative Coconut Value Chain by Mwalimu Menza
Youth Involvement in an Innovative Coconut Value Chain by Mwalimu MenzaYouth Involvement in an Innovative Coconut Value Chain by Mwalimu Menza
Youth Involvement in an Innovative Coconut Value Chain by Mwalimu Menzaictsugar
 
Ten Organizational Design Models to align structure and operations to busines...
Ten Organizational Design Models to align structure and operations to busines...Ten Organizational Design Models to align structure and operations to busines...
Ten Organizational Design Models to align structure and operations to busines...Seta Wicaksana
 
Call Girls In Connaught Place Delhi ❤️88604**77959_Russian 100% Genuine Escor...
Call Girls In Connaught Place Delhi ❤️88604**77959_Russian 100% Genuine Escor...Call Girls In Connaught Place Delhi ❤️88604**77959_Russian 100% Genuine Escor...
Call Girls In Connaught Place Delhi ❤️88604**77959_Russian 100% Genuine Escor...lizamodels9
 
Investment in The Coconut Industry by Nancy Cheruiyot
Investment in The Coconut Industry by Nancy CheruiyotInvestment in The Coconut Industry by Nancy Cheruiyot
Investment in The Coconut Industry by Nancy Cheruiyotictsugar
 
Case study on tata clothing brand zudio in detail
Case study on tata clothing brand zudio in detailCase study on tata clothing brand zudio in detail
Case study on tata clothing brand zudio in detailAriel592675
 
(Best) ENJOY Call Girls in Faridabad Ex | 8377087607
(Best) ENJOY Call Girls in Faridabad Ex | 8377087607(Best) ENJOY Call Girls in Faridabad Ex | 8377087607
(Best) ENJOY Call Girls in Faridabad Ex | 8377087607dollysharma2066
 
Organizational Structure Running A Successful Business
Organizational Structure Running A Successful BusinessOrganizational Structure Running A Successful Business
Organizational Structure Running A Successful BusinessSeta Wicaksana
 
Kenya Coconut Production Presentation by Dr. Lalith Perera
Kenya Coconut Production Presentation by Dr. Lalith PereraKenya Coconut Production Presentation by Dr. Lalith Perera
Kenya Coconut Production Presentation by Dr. Lalith Pereraictsugar
 
Lowrate Call Girls In Sector 18 Noida ❤️8860477959 Escorts 100% Genuine Servi...
Lowrate Call Girls In Sector 18 Noida ❤️8860477959 Escorts 100% Genuine Servi...Lowrate Call Girls In Sector 18 Noida ❤️8860477959 Escorts 100% Genuine Servi...
Lowrate Call Girls In Sector 18 Noida ❤️8860477959 Escorts 100% Genuine Servi...lizamodels9
 
FULL ENJOY Call girls in Paharganj Delhi | 8377087607
FULL ENJOY Call girls in Paharganj Delhi | 8377087607FULL ENJOY Call girls in Paharganj Delhi | 8377087607
FULL ENJOY Call girls in Paharganj Delhi | 8377087607dollysharma2066
 
8447779800, Low rate Call girls in Uttam Nagar Delhi NCR
8447779800, Low rate Call girls in Uttam Nagar Delhi NCR8447779800, Low rate Call girls in Uttam Nagar Delhi NCR
8447779800, Low rate Call girls in Uttam Nagar Delhi NCRashishs7044
 
8447779800, Low rate Call girls in Saket Delhi NCR
8447779800, Low rate Call girls in Saket Delhi NCR8447779800, Low rate Call girls in Saket Delhi NCR
8447779800, Low rate Call girls in Saket Delhi NCRashishs7044
 

Kürzlich hochgeladen (20)

Call Us 📲8800102216📞 Call Girls In DLF City Gurgaon
Call Us 📲8800102216📞 Call Girls In DLF City GurgaonCall Us 📲8800102216📞 Call Girls In DLF City Gurgaon
Call Us 📲8800102216📞 Call Girls In DLF City Gurgaon
 
8447779800, Low rate Call girls in New Ashok Nagar Delhi NCR
8447779800, Low rate Call girls in New Ashok Nagar Delhi NCR8447779800, Low rate Call girls in New Ashok Nagar Delhi NCR
8447779800, Low rate Call girls in New Ashok Nagar Delhi NCR
 
Cybersecurity Awareness Training Presentation v2024.03
Cybersecurity Awareness Training Presentation v2024.03Cybersecurity Awareness Training Presentation v2024.03
Cybersecurity Awareness Training Presentation v2024.03
 
8447779800, Low rate Call girls in Tughlakabad Delhi NCR
8447779800, Low rate Call girls in Tughlakabad Delhi NCR8447779800, Low rate Call girls in Tughlakabad Delhi NCR
8447779800, Low rate Call girls in Tughlakabad Delhi NCR
 
Annual General Meeting Presentation Slides
Annual General Meeting Presentation SlidesAnnual General Meeting Presentation Slides
Annual General Meeting Presentation Slides
 
Islamabad Escorts | Call 03070433345 | Escort Service in Islamabad
Islamabad Escorts | Call 03070433345 | Escort Service in IslamabadIslamabad Escorts | Call 03070433345 | Escort Service in Islamabad
Islamabad Escorts | Call 03070433345 | Escort Service in Islamabad
 
BEST Call Girls In Greater Noida ✨ 9773824855 ✨ Escorts Service In Delhi Ncr,
BEST Call Girls In Greater Noida ✨ 9773824855 ✨ Escorts Service In Delhi Ncr,BEST Call Girls In Greater Noida ✨ 9773824855 ✨ Escorts Service In Delhi Ncr,
BEST Call Girls In Greater Noida ✨ 9773824855 ✨ Escorts Service In Delhi Ncr,
 
Youth Involvement in an Innovative Coconut Value Chain by Mwalimu Menza
Youth Involvement in an Innovative Coconut Value Chain by Mwalimu MenzaYouth Involvement in an Innovative Coconut Value Chain by Mwalimu Menza
Youth Involvement in an Innovative Coconut Value Chain by Mwalimu Menza
 
Ten Organizational Design Models to align structure and operations to busines...
Ten Organizational Design Models to align structure and operations to busines...Ten Organizational Design Models to align structure and operations to busines...
Ten Organizational Design Models to align structure and operations to busines...
 
Call Girls In Connaught Place Delhi ❤️88604**77959_Russian 100% Genuine Escor...
Call Girls In Connaught Place Delhi ❤️88604**77959_Russian 100% Genuine Escor...Call Girls In Connaught Place Delhi ❤️88604**77959_Russian 100% Genuine Escor...
Call Girls In Connaught Place Delhi ❤️88604**77959_Russian 100% Genuine Escor...
 
Investment in The Coconut Industry by Nancy Cheruiyot
Investment in The Coconut Industry by Nancy CheruiyotInvestment in The Coconut Industry by Nancy Cheruiyot
Investment in The Coconut Industry by Nancy Cheruiyot
 
Case study on tata clothing brand zudio in detail
Case study on tata clothing brand zudio in detailCase study on tata clothing brand zudio in detail
Case study on tata clothing brand zudio in detail
 
(Best) ENJOY Call Girls in Faridabad Ex | 8377087607
(Best) ENJOY Call Girls in Faridabad Ex | 8377087607(Best) ENJOY Call Girls in Faridabad Ex | 8377087607
(Best) ENJOY Call Girls in Faridabad Ex | 8377087607
 
Organizational Structure Running A Successful Business
Organizational Structure Running A Successful BusinessOrganizational Structure Running A Successful Business
Organizational Structure Running A Successful Business
 
Kenya Coconut Production Presentation by Dr. Lalith Perera
Kenya Coconut Production Presentation by Dr. Lalith PereraKenya Coconut Production Presentation by Dr. Lalith Perera
Kenya Coconut Production Presentation by Dr. Lalith Perera
 
Lowrate Call Girls In Sector 18 Noida ❤️8860477959 Escorts 100% Genuine Servi...
Lowrate Call Girls In Sector 18 Noida ❤️8860477959 Escorts 100% Genuine Servi...Lowrate Call Girls In Sector 18 Noida ❤️8860477959 Escorts 100% Genuine Servi...
Lowrate Call Girls In Sector 18 Noida ❤️8860477959 Escorts 100% Genuine Servi...
 
FULL ENJOY Call girls in Paharganj Delhi | 8377087607
FULL ENJOY Call girls in Paharganj Delhi | 8377087607FULL ENJOY Call girls in Paharganj Delhi | 8377087607
FULL ENJOY Call girls in Paharganj Delhi | 8377087607
 
8447779800, Low rate Call girls in Uttam Nagar Delhi NCR
8447779800, Low rate Call girls in Uttam Nagar Delhi NCR8447779800, Low rate Call girls in Uttam Nagar Delhi NCR
8447779800, Low rate Call girls in Uttam Nagar Delhi NCR
 
Japan IT Week 2024 Brochure by 47Billion (English)
Japan IT Week 2024 Brochure by 47Billion (English)Japan IT Week 2024 Brochure by 47Billion (English)
Japan IT Week 2024 Brochure by 47Billion (English)
 
8447779800, Low rate Call girls in Saket Delhi NCR
8447779800, Low rate Call girls in Saket Delhi NCR8447779800, Low rate Call girls in Saket Delhi NCR
8447779800, Low rate Call girls in Saket Delhi NCR
 

Life cycle analysis for hybrid and electric vehicles

  • 1. © Ricardo-AEA Ltd www.ricardo-aea.com Nikolas Hill Knowledge Leader – Transport Technology and Fuels Ricardo-AEA Life-Cycle Assessment for Hybrid and Electric Vehicles “Beyond the Tailpipe” LowCVP Annual Conference 2013 11th July 2013
  • 2. © Ricardo-AEA LtdUnclassified – Public Domain2 11th July 2013  Life-Cycle Assessment in the automotive sector and significance for hybrid and electric vehicles  Project for CCC on LCE (life cycle emissions) for future low carbon technologies: ‒ Scope and objectives ‒ Lifecycle stages and range of values in the literature ‒ Baseline assumptions for future LCE calculation tool ‒ Key results from the analysis ‒ Summary and conclusions  Overall potential implications for policy and businesses Overview
  • 3. © Ricardo-AEA LtdUnclassified – Public Domain3 11th July 2013 Current tailpipe CO2 metric insufficient to compare impacts of hybrid and electric vehicles due to upstream fuel/vehicle production GHG  Life Cycle Assessment (LCA) is key for future vehicle technology and fuel comparisons Well-to-wheel (WTW) is the specific LCA used for transport fuel/vehicle systems (but limited to the fuel itself) – used for biofuels in particular LCA Methodologies Part 1: Use of LCA in the automotive sector Life Cycle Assessment Framework Goal and Scope Definition Inventory Analysis Impact Assessment Interpretation LCA ISO (14040/14044) standards only provide general guidelines  different models, methodologies and assumptions are often used Many OEMs conduct ISO compliant/high quality LCA studies of their vehicles as part of their Environmental Management strategies Several OEMs publish the results from their LCA, but it is not clear if different OEMs use the same set of assumptions or input data sets
  • 4. © Ricardo-AEA LtdUnclassified – Public Domain4 11th July 2013 Currently, there are no automotive targets specifically aimed at reducing CO2 from production of the whole vehicle WTT emissions are also not factored into vehicle CO2 regulations Issues for both hybrid and electric vehicles: Availability of reliable real-world performance data (i.e. MJ/km) Wide range of literature reported values for battery GHG intensity Uncertainty on battery lifetime performance/potential replacement Issues for plug-in EVs only (PHEVs, REEVs and BEVs): Very large variation in regional electricity GHG intensity and in estimates for future decarbonisation  affects all lifecycle stages Average or marginal electricity? Recharge at night or in daytime? Most studies also DON’T typically account for: a) Upstream emissions of fuels used in electricity generation (+16% for UK) b) Projected changes in electricity GHG intensity over the vehicle lifetime Accounting for recharging losses (often excluded) LCA Methodologies Part 2: Key considerations for hybrid and electric vehicles
  • 5. © Ricardo-AEA LtdUnclassified – Public Domain5 11th July 2013 Previous CCC advice include ‘low-carbon’ technologies which reduce emissions at point-of-use relative to counterfactual Ricardo-AEA undertook an analysis considering lifecycle emissions (LCEs) for various technologies in several sectors, going beyond the point-of-use to provide estimates from the current situation out to 2050 NOT a detailed LCA: objective was to provide estimates (from existing studies) of current LCEs for UK circumstances and project to 2050 Current LCEs are broken down into relevant categories to allow: a) Investigation of the influence of key geographical parameters on overall emissions b) Separation of these emissions into UK and non-UK emissions c) Exploration of sensitivities for key components and scenarios on how these emissions might be reduced Work involved a literature review and development of spread sheet calculation tools for the different technology areas Future impacts of biofuel use excluded from analysis (set at 2012 mix) Current and Future Lifecycle Emissions of Key ‘Low Carbon’ Technologies and Alternatives, a project for CCC
  • 6. © Ricardo-AEA LtdUnclassified – Public Domain6 11th July 2013 Vehicle Manufacture Vehicle Transport Vehicle Operation Refuelling Infrastructure End of Life Disposal • Five key stages were identified as accounting for the most significant GHG emission components of the road vehicle lifecycle (that could also reasonably be quantified) The road vehicle lifecycle Materials (Fe, Al, etc) Components Manufacturing energy Road Rail Ship Energy Consumption Maintenance Refrigerant leakage Conventional fuels Electric recharging Hydrogen refuelling Recycling Refrigerant Fuel use
  • 7. © Ricardo-AEA LtdUnclassified – Public Domain7 11th July 2013  Principal differences between values in the studies were largely due to a combination of the following factors / assumptions for the analysis: (i) lifetime km (= vehicle lifetime x annual km), (ii) vehicle size/specification, (iii) lifecycle stages covered, (iv) grid electricity GHG intensity, (v) batteries used (size in kg or kWh, assumptions on GHG intensity of manufacture) Range of overall LCEs in the literature Road transport technologies Wide range of studies identified and preliminarily screened for suitability Studies selected to be taken forward for further analysis included some or all of the following elements: Compared as many technologies as possible Provided sufficient detail/ breakdown for the analysis Provided additional information/detail on certain aspects (e.g. battery tech, refuelling infrastructure, etc) Other studies also used to provide/supplement key data 0 50 100 150 200 250 300 350 ICE HEV PHEV REEV BEV Car gCO2e/Km Patterson et al. 2011 Samaras & Meisterling 2008 Hawkins et al. 2012 Ma et al. 2012 Lucas et al. 2012 Helms et al, 2010 Zamel & Li 2006 Burnham et al. 2006 [This study]
  • 8. © Ricardo-AEA LtdUnclassified – Public Domain8 11th July 2013  Fuel factors are average over the operational lifetime for a vehicle in a given year  Future vehicle performance/characteristics from CCC modelling and recent publications Base case scenario assumptions: Energy and materials intensity trajectories, vehicle characteristics 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 2010 2020 2030 2040 2050 kgCO2/kg Steel (Base) Steel-Base-UK Steel-Base-OECD Europe Steel-Base-OECD Other Steel-Base-Car Average Steel-Base-HGV Average Steel-Base-non OECD 0 1 2 3 4 5 6 7 8 9 2010 2020 2030 2040 2050 kgCO2/kg Aluminium (Base) Aluminium-Base-UK Aluminium-Base- OECD Europe Aluminium-Base- OECD Other Aluminium-Base-Car Average Aluminium-Base- HGV Average Aluminium-Base-non OECD 0 50 100 150 200 250 300 2010 2020 2030 2040 2050 kgCO2/kWh Battery (Base) Battery-Base-UK Battery-Base-OECD Europe Battery-Base-OECD Other Battery-Base-Car Average Battery-Base-HGV Average Battery-Base-non OECD 0 50 100 150 200 250 300 350 400 450 500 2010 2020 2030 2040 2050 gCO2/kWh(lifetimeaverage) Fuels (Base) Petrol Base UK Diesel Base UK Electricity Base UK Hydrogen Base UK Natural gas Base UK
  • 9. © Ricardo-AEA LtdUnclassified – Public Domain9 11th July 2013 0 10 20 30 40 50 60 70 2010 ICE Car 2010 BEV Car gCO2e/km Emissions Breakdown (excluding operational fuel) Dismantalling refrigerant leakage Dismantalling fuel use Refuelling infrastructure Operation Refrigerant Leakage Operation Maintenance Transport Total Manufacture fuel use Manufacture Refrigerant Leakage Components Battery Materials Other Materials CFRP Materials Textile Materials Glass Materials Rubber Materials Plastics Materials Magnesium Materials Aluminium Materials Iron & Steel 87% 13% Petrol ICE Car Fuel Other 2010 52%48% BEV Car Fuel Other 2010 Breakdown of LCEs from the developed model: Detailed split for 2010 Petrol ICE and BEV cars The uncertainty in and significance of GHG emissions from battery production in the literature prompted more detailed investigation of the component breakdown in order to better understand potential future trajectory / key sensitivities Total g/km Total g/km * Battery production GHG intensity based on intermediate value in literature from Ricardo (2012) *
  • 10. © Ricardo-AEA LtdUnclassified – Public Domain10 11th July 2013 Breakdown of LCEs from the developed model: Future trajectory of detailed split for BEV cars (baseline) 0 10 20 30 40 50 60 70 2010 2020 2030 2040 2050 gCO2e/km Emissions Breakdown (excluding operational fuel) - BEV Car Dismantalling refrigerant leakage Dismantalling fuel use Refuelling infrastructure Operation Refrigerant Leakage Operation Maintenance Transport Total Manufacture fuel use Manufacture Refrigerant Leakage Components Battery Materials Other Materials CFRP Materials Textile Materials Glass Materials Rubber Materials Plastics Materials Magnesium Materials Aluminium Materials Iron & Steel  Significance of batteries in overall LCE footprint of BEVs is anticipated to decrease significantly in the long term under the base case:  Battery GHG reduction due to: i. Reduced battery weight (/materials); ii. Decarbonised manufacturing energy iii.Improved recycling iv.Reduced GHG intensity of materials used
  • 11. © Ricardo-AEA LtdUnclassified – Public Domain11 11th July 2013  2010 petrol car = 159.5 gCO2/km (test cycle)  ICE > HEV > PHEV > REEV > BEV  Manufacturing emissions share increases in future, particularly for BEVs  Reduced savings from EVs (relative to ICE) - but total LCEs still much lower than for ICE  Recharging infrastructure a small but still significant component (but more uncertainty)  5 gCO2e/km due to refrigerants in 2010 Base case scenario for cars: Breakdown by lifecycle stage 0 50 100 150 200 250 300 2010 2020 2030 2040 2050 gCO2e/km Petrol ICE Car, Scenario 1: Base case Disposal Infrastructure Operation Transport Manufacture 0 50 100 150 200 250 300 2010 2020 2030 2040 2050 gCO2e/km BEV Car, Scenario 1: Base case Disposal Infrastructure Operation Transport Manufacture 0 50 100 150 200 250 300 2010 2020 2030 2040 2050 gCO2e/km Petrol PHEV Car, Scenario 1: Base case Disposal Infrastructure Operation Transport Manufacture
  • 12. © Ricardo-AEA LtdUnclassified – Public Domain12 11th July 2013  Proportion of emissions outside UK doesn’t change much over time for ICE (2010: ~8%) and PHEV (2010: ~16%) technologies  >40% of BEV emissions are outside of the UK in 2010, potentially rising to 66% by 2050 (due to vehicle and battery production)  In the Worst Case scenario (with very high emissions due mainly to the batteries) over 86% of BEV LCE could occur outside of the UK by 2050 (also due to reduction in operational LCE) Base case scenario for cars: Emissions in the UK vs overseas 0 50 100 150 200 250 300 2010 2020 2030 2040 2050 gCO2e/km Petrol ICE Car, Scenario 1: Base case NonUK Emissions UK Emissions 0 50 100 150 200 250 300 2010 2020 2030 2040 2050 gCO2e/km Petrol PHEV Car, Scenario 1: Base case NonUK Emissions UK Emissions 0 50 100 150 200 250 300 2010 2020 2030 2040 2050 gCO2e/km BEV Car, Scenario 1: Base case NonUK Emissions UK Emissions
  • 13. © Ricardo-AEA LtdUnclassified – Public Domain13 11th July 2013 78% 22% Petrol PHEV Car Fuel Other 2010 84% 16% Petrol PHEV Car Fuel Other 2050 52%48% BEV Car Fuel Other 2010 7% 93% BEV Car Fuel Other 2050 87% 13% Petrol ICE Car Fuel Other 2010 91% 9% Petrol ICE Car Fuel Other 2050 Base case scenario for cars: Split of LCE for different powertrains for 2010 and 2050 Total 265 g/km Total 127 g/km Total 78 g/km Total 136 g/kmTotal 185 g/km Total 16 g/km
  • 14. © Ricardo-AEA LtdUnclassified – Public Domain14 11th July 2013  Battery developments are critical to achieve the maximum savings potential (2050:-90%)  Worst case BEVs show only 26% reduction on base ICE in 2050 (at current biofuel levels). BUT battery replacement unlikely under current lifetime km assumptions versus current manufacturer warranties  BEVs show 55% improvement over Petrol ICE in 2050 for more realistic alternate worst case + high lifetime km scenario (16,000 mi/yr = 57 g/km LCEs for BEVs) Sensitivity analysis for cars: Best Case and Worst Case 0 50 100 150 200 250 300 2010 2020 2030 2040 2050 gCO2e/km Year Sensitivity Range Petrol ICE Car (best) Petrol PHEV Car (best) BEV Car (best) Petrol ICE Car (worst) Petrol PHEV Car (worst) BEV Car (worst) 0 50 100 150 200 250 300 2010 2050 2010 2050 2010 2050 2010 2050 2010 2050 Petrol ICE Car Petrol HEV Car Petrol PHEV Car Petrol REEV Car BEV Car gCO2e/km Scenario 9: Best Case Disposal Infrastructure Operation Transport Battery replacement Manufacture 0 50 100 150 200 250 300 2010 2050 2010 2050 2010 2050 2010 2050 2010 2050 Petrol ICE Car Petrol HEV Car Petrol PHEV Car Petrol REEV Car BEV Car gCO2e/km Scenario 10: Worst Case Disposal Infrastructure Operation Transport Battery replacement Manufacture
  • 15. © Ricardo-AEA LtdUnclassified – Public Domain15 11th July 2013  Base scenario for 2010 shows that operational GHG emissions over lifetime of vehicle decrease in the following order ICE > equivalent HEV > PHEV > REEV > BEV  Sensitivity analysis highlighted battery developments are critical to achieve the max. GHG savings for BEVs (and REEVs, PHEVs to a lesser extent): ‒ Improvements in battery cycle/lifetime to minimise the likelihood of replacements ‒ Improvements in battery energy density to reduce material use ‒ Improvements in recycling practices to generate savings through recovered materials ‒ Regional (UK/European) battery production to minimise GHG ‒ Improvements in battery manufacture GHG intensity (i.e. production energy and materials)  BUT in worst case scenario with high lifetime km (+one battery replacement), BEVs still have ~55% reduction on equivalent ICE by 2050 (at current UK average biofuel levels)  Future NonUK emissions share unlikely to increase much for ICE (~9%) and PHEV (~18%), but could increase significantly for BEV (currently 41%, potentially rising to 66% by 2050). (Primarily from significant reduction in operational, other UK elements)  Recharging infrastructure more uncertain; a small but likely still significant component (>3% for BEVs in 2010), but could be potentially more significant in the longer term. Summary and Conclusions: Part 1 – From Ricardo-AEA study for CCC
  • 16. © Ricardo-AEA LtdUnclassified – Public Domain16 11th July 2013  Publication of industry LCA studies would help facilitate understanding  Ideally need to track vehicle LCA in a more consistent basis before could even think about whether/how a regulatory approach might be adopted (or not)  Future vehicle CO2 regulations should likely at least factor in WTW emissions  Recommendations from Ricardo (2011) report for LowCVP are still relevant: − Consider a new CO2 metric based on the GHG emissions emitted during vehicle production [tCO2e] (and more tightly define scope/specification for this) − Consider targets aimed at reducing the life cycle CO2 [tCO2e] − Consider the fiscal and regulatory framework in which vehicles are sold, used and disposed  Need to develop a better understanding of battery production emissions and impacts of technology development and ensure future developments do significantly reduce battery production/disposal emissions  Further research is also needed to quantify the relative impacts of different infrastructure types/mixes, and the likely 2050 requirements Summary and Conclusions: Part 2 – Potential implications for policy and businesses
  • 17. © Ricardo-AEA LtdUnclassified – Public Domain17 11th July 2013 For further information see full study report available from CCC’s website at: http://www.theccc.org.uk/wp-content/uploads/2013/04/Ricardo- AEA-lifecycle-emissions-low-carbon-technologies-April-2013.pdf Further information
  • 18. © Ricardo-AEA Ltd www.ricardo-aea.com T: E: W: Ricardo-AEA Ltd Gemini Building, Fermi Avenue, Harwell, Didcot, Oxfordshire, OX11 0QR, Nikolas Hill Knowledge Leader – Transport Technology and Fuels +44 (0)1235 753522 nikolas.hill@ricardo-aea.com www.ricardo-aea.com