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Renewable Gas
Unique Heat & De-carbonisation Opportunity for Ireland
18th May 2016
Ian Kilgallon – Innovation & Business Development Manager
Ian.Kilgallon@gasnetworks.ie +353-21-4534000
• Gas Networks Ireland owns, operates, develops
and maintains the natural gas network in Ireland.
• World-class Modern Gas Network
• Over 13,500Km:
• 2,422Km Transmission Network
• 11,288Km Distribution Network
• More than 675,000 gas consumers
• 650,000 homes
• 25,000 businesses
• Over 160 population centres
• 19 counties
Gas Networks Ireland
Renewable Gas – Circular Economy
Purification
~80-99%
Methane
CH4
~1-19%
Alkane
Gases
~1-5%
Neutral
Gases
NATURAL GAS
30%-50%
CO2
50%-70%
Methane
CH4
-2% Trace
Gases &
Water
RAW BIOGAS
98%
Methane
CH4
~1% CO2 ~1% Trace
Gases
RENEWABLE GAS
Renewable Gas Compatibility
~60-90%
Methane
CH4~1-19%
Alkane
Gases
~5-20%
Impurities
& HC
RAW FOSSIL GAS
5
• Mature and proven technologies – over 17,000
anaerobic digester have been built in EEA (2014)
• Transitioning from small remote electricity
generation to larger grid injection facilities
• State policies/prioritisation and incentives
transitioning to renewable gas for heat and CHP
consuming industries.
Renewable Gas in Europe
For the Customer: Renewable Gas will enable Industry in Ireland to achieve decarbonisation
targets, without the need to re-invest in alternative infrastructure.
For Security of Supply: Although GNI propose a target of 20% Renewable Gas by 2030, research
shows that Ireland has capacity to de-carbonise our entire gas demand.
For Ireland’s Agriculture
Sectors:
Reduce Agriculture GHG emissions by 20% by 2030, enhancing the premium
value of Irelands food produce, diversification of farm incomes, securing the
future of marginal agricultural sectors, and mitigate against food market price
swings.
For Ireland’s RES Targets: Making renewable gas available to large energy users will play a vital role in
helping Ireland meet its renewable heat (RES-H) targets of 12% by 2020, and
can supply 20% of Irelands Natural Gas demand by 2030.
Why Renewable Gas?
Research Challenge: Sustainability & Carbon Balance
• Biogas and biomethane produced from wet manure benefits greatly
from the emission credits due to avoided GHG emissions
• Additional carbon credits come from improved manure management
resulting in GHG savings (Total GHG savings up to 239% c.f. natural
gas)
• Multiple options to achieve carbon saving targets, e.g.
‒ 100% Carbon Neutrality with 58% natural gas and 42% manure derived
renewable gas
• Research Challenge: Define and Quantify Carbon
Balance implications by feedstock, processing
technology, and delivery method.
‒ Quantify the value of best practices
‒ Quantify the Carbon Savings/Credits
‒ Discourage bad practices
‒ Ability to Certify and Guarantee Origin
‒ Accreditation process & standards
Note: GHG emissions taken from EU JRC Science and Policy report on
“Solid and gaseous bioenergy pathways: input values and GHG
emissions”.
Available at:
http://iet.jrc.ec.europa.eu/bf-ca/sites/bf-
ca/files/files/documents/eur26696_online_final_v3.pdf
-120
-100
-80
-60
-40
-20
0
20
40
60
80
100
gCO2/MJ
GHG Emissions from fuel sources
Manure Biowaste Maize whole plant Stemwood pellets Natural Gas
National GHG Emissions 2014
8
11.35, 20%
11.12, 19%
9.02, 15%
5.70, 10%
1.57, 3%
19.38, 33%
Total National GHG Emissions 2014
(58.21 Mt CO2 eq)
Transport
Energy
Industry & commercial
Residential
Waste
Agriculture
Data Source: EPA (2015)
accessed on 13/05/2016 available at:
http://www.epa.ie/pubs/reports/air/airem
issions/GHG_1990-
2014_Provisional_11122015.pdf
Potential Irish GHG savings from biomethane
9
0
5
10
15
20
25
Agricultural Emissions (EPA 2014) Potential GHG Savings from
Biomethane (11.8 TWh by 2030)
GHGEmissions(MtCO2eq.)
Agricultural emissions are
composed of
• Enteric fermentation (49%)
• Nitrogen fertilisers (36%)
• Manure Storage (12%)
• Energy (3%)
Estimated biomethane
resources by 2030
• Additional grass (above
livestock demand)
• Agricultural manures
• Organic wastes and residues
• Additional sources (e.g. P2G)
Consumer
GNI currently facilitate a Secure & Competitive gas market
Gas
Transporter
Gas
Shipper/Supplier
Network Entry
Agreements
Gas Purchase
Agreement
Gas Code of Operations
Entry/Exit Arrangements
Gas Producer
Framework to enable renewable gas in the market
Consumer
Gas
Transporter
Gas
Shipper/Supplier
Network Entry
Agreements
Gas Code of Operations
Entry/Exit Arrangements
Gas Producer
Gas Purchase
Agreement
Renewable Gas
Producer
Green Certification
• In addition to our plans around renewable gas, GNI has observed some
interesting customer usage patterns that we feel merit further research
Residential / domestic sector trends:
• We have seen substantial decreases in annual consumption of gas (after
temperature correction) over the last 8 years:
• 590,000 to 640,000 customers (+8%), whose annual consumption has reduced
from 14,500kWh per average house to 11,000kWh (-25% or 3% per annum)
• As result the total aggregate gas demand has decreased by circa 1,500GWh (-
18%) resulting in savings of approximately 300,000 Tonnes of CO2
Delivering efficiencies and carbon savings
Pre-Payment Metering (early generation smart meters)
• We have seen over 80,000 customers switch from credit meter to
prepayment meters (or 'pay as you go' meters) (PPM)
• These meters now have an average annual consumption of 8,700kWh
• Annual consumption of PPM customers who had previously been on credit
meters, has shown that these particular customers have reduced by 16% (versus
a normal reduction of circa 3%)
• We have yet to determine if this increased reduction is due to fuel poverty or the
increased awareness of energy consumption that comes with using a PPM
• Not all customers who switch from a credit meter to a PPM do so for financial
hardship reasons, many switch due to lifestyle/household budgeting reasons.
• This is an area that we believe merits further research
Delivering efficiencies and carbon savings
• We believe that gas has a key part to play in helping
Ireland meet it's climate change targets through;
• More efficient use of the existing gas networks
• The deployment of more innovate technologies
• Facilitating and supporting an indigenous renewable gas
industry
• Secure, Reliable, Efficient, & Existing Infrastructure
• Over 50 optimum injection points for renewable gas
• Can deliver the same strong clean product, but now it can
be Green also
Capacity for more De-carbonisation of Heat & CHP

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Renewable Gas: Unique Heat & De-carbonisation Opportunity for Ireland

  • 1. Renewable Gas Unique Heat & De-carbonisation Opportunity for Ireland 18th May 2016 Ian Kilgallon – Innovation & Business Development Manager Ian.Kilgallon@gasnetworks.ie +353-21-4534000
  • 2. • Gas Networks Ireland owns, operates, develops and maintains the natural gas network in Ireland. • World-class Modern Gas Network • Over 13,500Km: • 2,422Km Transmission Network • 11,288Km Distribution Network • More than 675,000 gas consumers • 650,000 homes • 25,000 businesses • Over 160 population centres • 19 counties Gas Networks Ireland
  • 3. Renewable Gas – Circular Economy
  • 4. Purification ~80-99% Methane CH4 ~1-19% Alkane Gases ~1-5% Neutral Gases NATURAL GAS 30%-50% CO2 50%-70% Methane CH4 -2% Trace Gases & Water RAW BIOGAS 98% Methane CH4 ~1% CO2 ~1% Trace Gases RENEWABLE GAS Renewable Gas Compatibility ~60-90% Methane CH4~1-19% Alkane Gases ~5-20% Impurities & HC RAW FOSSIL GAS
  • 5. 5 • Mature and proven technologies – over 17,000 anaerobic digester have been built in EEA (2014) • Transitioning from small remote electricity generation to larger grid injection facilities • State policies/prioritisation and incentives transitioning to renewable gas for heat and CHP consuming industries. Renewable Gas in Europe
  • 6. For the Customer: Renewable Gas will enable Industry in Ireland to achieve decarbonisation targets, without the need to re-invest in alternative infrastructure. For Security of Supply: Although GNI propose a target of 20% Renewable Gas by 2030, research shows that Ireland has capacity to de-carbonise our entire gas demand. For Ireland’s Agriculture Sectors: Reduce Agriculture GHG emissions by 20% by 2030, enhancing the premium value of Irelands food produce, diversification of farm incomes, securing the future of marginal agricultural sectors, and mitigate against food market price swings. For Ireland’s RES Targets: Making renewable gas available to large energy users will play a vital role in helping Ireland meet its renewable heat (RES-H) targets of 12% by 2020, and can supply 20% of Irelands Natural Gas demand by 2030. Why Renewable Gas?
  • 7. Research Challenge: Sustainability & Carbon Balance • Biogas and biomethane produced from wet manure benefits greatly from the emission credits due to avoided GHG emissions • Additional carbon credits come from improved manure management resulting in GHG savings (Total GHG savings up to 239% c.f. natural gas) • Multiple options to achieve carbon saving targets, e.g. ‒ 100% Carbon Neutrality with 58% natural gas and 42% manure derived renewable gas • Research Challenge: Define and Quantify Carbon Balance implications by feedstock, processing technology, and delivery method. ‒ Quantify the value of best practices ‒ Quantify the Carbon Savings/Credits ‒ Discourage bad practices ‒ Ability to Certify and Guarantee Origin ‒ Accreditation process & standards Note: GHG emissions taken from EU JRC Science and Policy report on “Solid and gaseous bioenergy pathways: input values and GHG emissions”. Available at: http://iet.jrc.ec.europa.eu/bf-ca/sites/bf- ca/files/files/documents/eur26696_online_final_v3.pdf -120 -100 -80 -60 -40 -20 0 20 40 60 80 100 gCO2/MJ GHG Emissions from fuel sources Manure Biowaste Maize whole plant Stemwood pellets Natural Gas
  • 8. National GHG Emissions 2014 8 11.35, 20% 11.12, 19% 9.02, 15% 5.70, 10% 1.57, 3% 19.38, 33% Total National GHG Emissions 2014 (58.21 Mt CO2 eq) Transport Energy Industry & commercial Residential Waste Agriculture Data Source: EPA (2015) accessed on 13/05/2016 available at: http://www.epa.ie/pubs/reports/air/airem issions/GHG_1990- 2014_Provisional_11122015.pdf
  • 9. Potential Irish GHG savings from biomethane 9 0 5 10 15 20 25 Agricultural Emissions (EPA 2014) Potential GHG Savings from Biomethane (11.8 TWh by 2030) GHGEmissions(MtCO2eq.) Agricultural emissions are composed of • Enteric fermentation (49%) • Nitrogen fertilisers (36%) • Manure Storage (12%) • Energy (3%) Estimated biomethane resources by 2030 • Additional grass (above livestock demand) • Agricultural manures • Organic wastes and residues • Additional sources (e.g. P2G)
  • 10. Consumer GNI currently facilitate a Secure & Competitive gas market Gas Transporter Gas Shipper/Supplier Network Entry Agreements Gas Purchase Agreement Gas Code of Operations Entry/Exit Arrangements Gas Producer
  • 11. Framework to enable renewable gas in the market Consumer Gas Transporter Gas Shipper/Supplier Network Entry Agreements Gas Code of Operations Entry/Exit Arrangements Gas Producer Gas Purchase Agreement Renewable Gas Producer Green Certification
  • 12. • In addition to our plans around renewable gas, GNI has observed some interesting customer usage patterns that we feel merit further research Residential / domestic sector trends: • We have seen substantial decreases in annual consumption of gas (after temperature correction) over the last 8 years: • 590,000 to 640,000 customers (+8%), whose annual consumption has reduced from 14,500kWh per average house to 11,000kWh (-25% or 3% per annum) • As result the total aggregate gas demand has decreased by circa 1,500GWh (- 18%) resulting in savings of approximately 300,000 Tonnes of CO2 Delivering efficiencies and carbon savings
  • 13. Pre-Payment Metering (early generation smart meters) • We have seen over 80,000 customers switch from credit meter to prepayment meters (or 'pay as you go' meters) (PPM) • These meters now have an average annual consumption of 8,700kWh • Annual consumption of PPM customers who had previously been on credit meters, has shown that these particular customers have reduced by 16% (versus a normal reduction of circa 3%) • We have yet to determine if this increased reduction is due to fuel poverty or the increased awareness of energy consumption that comes with using a PPM • Not all customers who switch from a credit meter to a PPM do so for financial hardship reasons, many switch due to lifestyle/household budgeting reasons. • This is an area that we believe merits further research Delivering efficiencies and carbon savings
  • 14. • We believe that gas has a key part to play in helping Ireland meet it's climate change targets through; • More efficient use of the existing gas networks • The deployment of more innovate technologies • Facilitating and supporting an indigenous renewable gas industry • Secure, Reliable, Efficient, & Existing Infrastructure • Over 50 optimum injection points for renewable gas • Can deliver the same strong clean product, but now it can be Green also Capacity for more De-carbonisation of Heat & CHP