SlideShare ist ein Scribd-Unternehmen logo
1 von 35
Pulp and paper industry
Case study
Presentation by: Dalia Jankunaite
www.forestproducts.sca.com
Introduction
 The pulp and paper industry converts wood or
recycled fibre into pulp and primary forms of
paper.
 In the 1800s, there was a shift away from using
cotton rags for paper production. Wood became
the most important source of fiber.
 First mechanical and then chemical methods
have been developed to produce pulp from
wood.
Pulp and paper mills
 Pulp mills separate the fibres of wood or from
other materials, such as rags, wastepaper or
straw in order to create pulp.
 Paper mills primarily are engaged in
manufacturing paper from wood pulp and other
fibre pulp, and may also manufacture converted
paper products.
Production process
The production process can be divided into 7
sub-processes:
 raw materials processes;
 wood-yard;
 fibre line;
 chemical recovery;
 bleaching;
 paper production;
 products and recycling.
Simplified flow diagram of
integrated mill
Pulping processes
Pulping aims to separate cellulose fibers from
the wood structure.
Possible types of pulp production are:
Kraft (68%)
mechanical (22%)
semi-chemical (4%)
sulphite (4%)
dissolving (2%).www.handprint.com
Kraft Pulping
Sulfate or Kraft pulping was invented in
Germany in 1884 and remains the dominating
technology today.
Advantages:
– higher pulp strength
– wider variety of wood species may be used
– more effective at removing impurities like resins.
Disadvantage:
– the pulp yield is low, less than 50%.
Environmental problems (1)
Regulated wastes and emissions from the pulp
and paper industry include liquid and solid
wastes, air emissions, and wastewater.
 Air emissions related with this process are:
sulphur dioxide, nitrous oxides, particulate
matter, methanol, polycyclic organic matter,
hydrogen chloride, formaldehyde, chloroform,
phenol and chlorinated phenolics, dioxins,
furans and other chlorinated compounds.
Environmental problems (2)
 Wastewater releases include chlorinated
phenolics, dioxins, furans and other chlorinated
compounds, phosphates and suspended
sediments.
 Paper mills also produce non-hazardous solid
waste such as sludge derived from their
pulping and bleaching operations.
Raw water use
 Pulp mills are big water users. The total
requirement of raw water has through cleaner
production measures been reduced from about
200-300 m3
per ton of pulp in 1970 to well below
50 m3
/ton, in some mills even below
10 m3
/ton.
 Consumption of fresh water can seriously harm
habitats near mills, reduce water levels
necessary for fish, and change water
temperature, a critical environmental factor for
fish.
Pollutants in effluents
 The most common organic pollutants are
suspended solids (SS):
– lost cellulose fibre,
– dissolved organic compounds such as dissolved
lignin compounds, carbohydrates, starch and
hemi-cellulose
 Acidic compounds are predominantly natural
resin acids.
 Chlorinated organics (AOX) are found if
elemental chlorine is used in the process.
Wastewater flow
SCA Forest Products, Östrand pulp mill
Development of emissions of COD
SCA Forest Products, Östrand pulp mill
Development of emissions of AOX
SCA Forest Products, Östrand pulp mill
Solid wastes
 Dirty wood chips or fibers as well as bark.
 The broken, low-quality fibres are separated
out to become waste sludge.
 All the inks, dyes, coatings, pigments, staples
and "stickies" (tape, plastic films, etc.) washed
off the recycled fibres.
Organic wastes amount development
SCA Forest Products, Östrand pulp mill
Energy use (1)
 The pulp and paper industry uses 84% of the
fuel energy consumed by the forest products
industry as a whole.
 It is one of the largest producers of
greenhouse gas (GHG) emissions.
 Over the past few years, the pulp and paper
industry has considerably reduced its GHG
emissions by introducing energy conservation
projects and by increasing its use of biomass
as an energy source.
Energy use (2)
 A modern kraft pulp mill is essentially self-
sufficient in energy. The only oil consumer is
the causticing oven, which however can be
replaced with bio-fuel.
 A paper mill requires between 400 and 1000
kWh electricity/ton paper and 4 – 8 GJ heat/ton
for drying in the paper machine.
 In an integrated pulp and paper mill this energy
is provided from the recovery boiler.
Cleaner production measures
Raw materials
 Maintaining moisture content of the raw
materials constant all year around.
 Keeping chemical inventory to a minimum and
buying small containers of infrequently used
materials.
 Labelling storage area for hazardous
substances.
 Providing spill containment and collection
systems during storage.
 Genetically modifying forest trees.
Genetically modified trees
 Lignin is the main wood
component that must be
effectively removed from the
pulp.
 It has been possible to use
genetic engineering to modify
lignin content and/or
composition in poplars.
courses.washington.edu
Advantages of genetic modifications
 Genetic modifications improved characteristics,
allowing easier delignification, using smaller
amount of chemicals, while yielding more high-
quality pulp.
 Owing to the genetic modification savings in
energy and pollutant chemicals are achieved,
thus leading to an environmentally more
sustainable process.
Debarking
Wet Dry
Waste water m3
/t 3-20 0-5
SS kg/t 15-50 0-10
BOD5/t 5-10 0-3
Energy consumption
kWh/t
20 20
Cleaner production measures
Wood-yard (1)
 Pulp mills integrated with lumbering
facilities: acceptable lumber wood is removed
during debarking; residual or waste wood from
lumber processing is returned to the chipping
process; in-house lumbering rejects can be a
significant source of wood furnish.
 Avoiding hydraulic debarking – saving
energy and water consumption, reducing
wastewater amount.
Cleaner production measures
Wood-yard (2)
 Reusing leachate water.
 Co-production from bark: mulch, ground
cover, charcoal.
 Burning bark from debarking and small chips
from chipping for energy production (depends
on the moisture content).
Cleaner production measures
Pulp production (1)
 Increasing brown stock washing efficiency.
Any remaining cooking liquor will increase the
chemical consumption in subsequent stages.
 Water reuse from evaporators. The
evaporation plant is always one of the largest
steam consumers in the mill. Condensate might
be used instead of fresh water in the mill.
 Repulping the rejects from screening rather
than putting them into the landfill.
Cleaner production measures
Pulp production (2)
 Using pulp centrifuging to remove any
remaining impurities.
 Sludge utilization by means of land-
spreading. This method of sludge disposal is
an area of concern, as sludge constituents are
not well identified.
 Air emissions control devices.
 Providing spill containment and collection
system.
Cleaner production measures
Chemicals recovery (1)
 Using of new technologies (CHP, BLG, heat
transfer, heat exchanger).
 Improvements technical parameters of
recovery boiler or furnace (geometrical shape
etc.).
 Using light gas strippers and gas collection
systems which will remove hazardous and foul
smelling pollution from the air and increase
workplace safety.
Cleaner production measures
Chemicals recovery (2)
 Deaerator tanks ahead of the boilers to
help reduce the intake of freshwater.
 Air emissions control devices.
 Providing spill containment and collection
system.
Cleaner production measures
Bleaching
 Avoiding chlorine bleaching.
 Continuing research on biotechnological
bleaching and electrochemical bleaching.
 Air emissions control devices.
 Providing spill containment and collection
systems.
Cleaner production measures
Paper production (1)
 Cleaning the roll in the paper machines to
avoid broken paper line.
 Adjustment of edge cutter to reduce side
trimming loss.
 Use of soft water as a boiler feed water.
 Recycling water evaporated from drying
process by condensing.
Cleaner production measures
Paper production (2)
 Optimizing the thermal effects on water
used in the paper machine and stock
preparation area.
 Providing disk save-all for paper machine.
 Repulping rejected paper in a closed loop
manner.
Cleaner production measures
Products processes and recycling
 Increasing recycling rates. Recycling
reduces energy consumption, decreases
combustion and landfill emissions, and
decreases the amount of carbon dioxide in
the atmosphere. This process also saves
money.
 Possibility for easy packaging recycling.
 Using “green” fuel for transportation.
Recycling
In Europe an average of 56% of used paper is
recovered. The recycling process includes
following stages:
– Sorting
– Dissolving
– De – inking
– Mixing
– Papermaking process
Ideal paper mill (1)
 From cleaner production point of view is a
chlorine-free and zero-discharge one, with
minimized quantity and toxicity of air pollution
and solid wastes.
 It is seen that closed loops represent the most
effective approach to save both energy and
resource consumption and at the same way to
decrease all kind of wastes production.
Ideal paper mill (2)
 Such an approach is developed in the form of
paper recycling, different types of substances
re-use during production processes, co-
production and chemicals recovery.
 Future research can develop more sustainable
reuse options for kraft pulping solid wastes, as
well as pulping methods that result in purified
by-products that can serve as feedstock for
other manufacturing processes.

Weitere ähnliche Inhalte

Was ist angesagt?

Wastewater management in pulp and paper industry
Wastewater management in  pulp and paper industryWastewater management in  pulp and paper industry
Wastewater management in pulp and paper industryDaulat Ram Meena
 
Paper and Pulp Industry- Pollution Control Techniques
Paper and Pulp Industry- Pollution Control TechniquesPaper and Pulp Industry- Pollution Control Techniques
Paper and Pulp Industry- Pollution Control TechniquesAsh Hassan
 
Dissolve air flotation technology to treat highly polluted wastewater
Dissolve air flotation technology to treat highly polluted wastewaterDissolve air flotation technology to treat highly polluted wastewater
Dissolve air flotation technology to treat highly polluted wastewaterIndia Water Portal
 
Pulp industries
Pulp industriesPulp industries
Pulp industriesArpit Modh
 
RECYCLINGOF PAPER
RECYCLINGOF PAPERRECYCLINGOF PAPER
RECYCLINGOF PAPERtranslateds
 
Pulp and Paper industry
Pulp and Paper industryPulp and Paper industry
Pulp and Paper industryArun Sarasan
 
Paper&;pulp industry assingment final
Paper&;pulp industry assingment finalPaper&;pulp industry assingment final
Paper&;pulp industry assingment finalVishal Bhadauria
 
Cotton textile processing waste generation and effluent treatment
Cotton textile processing  waste generation and effluent treatmentCotton textile processing  waste generation and effluent treatment
Cotton textile processing waste generation and effluent treatmentreaderpravin
 
Pulp and paper industry
Pulp and paper industryPulp and paper industry
Pulp and paper industryKunika Singhal
 
Presentation on Textile ETP
Presentation on Textile ETPPresentation on Textile ETP
Presentation on Textile ETPAmanuzzaman Aman
 
Textile effluents dbt meeting 16.1.2006
Textile effluents dbt meeting 16.1.2006Textile effluents dbt meeting 16.1.2006
Textile effluents dbt meeting 16.1.2006Adane Nega
 
WASTE WATER AND ITS TREATMENT IN TEXTILE INDUSTRY
WASTE WATER AND ITS TREATMENT IN TEXTILE INDUSTRYWASTE WATER AND ITS TREATMENT IN TEXTILE INDUSTRY
WASTE WATER AND ITS TREATMENT IN TEXTILE INDUSTRYVANDANA TRIPATHI NAUTIYAL
 
Pulp & paper industries.....
Pulp & paper industries.....Pulp & paper industries.....
Pulp & paper industries.....jitendra kumar
 

Was ist angesagt? (20)

Paper Recycling
Paper RecyclingPaper Recycling
Paper Recycling
 
Pulp and Paper
Pulp and Paper Pulp and Paper
Pulp and Paper
 
Wastewater management in pulp and paper industry
Wastewater management in  pulp and paper industryWastewater management in  pulp and paper industry
Wastewater management in pulp and paper industry
 
Paper and Pulp Industry- Pollution Control Techniques
Paper and Pulp Industry- Pollution Control TechniquesPaper and Pulp Industry- Pollution Control Techniques
Paper and Pulp Industry- Pollution Control Techniques
 
Dissolve air flotation technology to treat highly polluted wastewater
Dissolve air flotation technology to treat highly polluted wastewaterDissolve air flotation technology to treat highly polluted wastewater
Dissolve air flotation technology to treat highly polluted wastewater
 
Pulp industries
Pulp industriesPulp industries
Pulp industries
 
Waste water from textile industry
Waste water from textile industryWaste water from textile industry
Waste water from textile industry
 
RECYCLINGOF PAPER
RECYCLINGOF PAPERRECYCLINGOF PAPER
RECYCLINGOF PAPER
 
Pulp and Paper industry
Pulp and Paper industryPulp and Paper industry
Pulp and Paper industry
 
Paper&;pulp industry assingment final
Paper&;pulp industry assingment finalPaper&;pulp industry assingment final
Paper&;pulp industry assingment final
 
Effluent treatment plant
Effluent treatment plantEffluent treatment plant
Effluent treatment plant
 
Cotton textile processing waste generation and effluent treatment
Cotton textile processing  waste generation and effluent treatmentCotton textile processing  waste generation and effluent treatment
Cotton textile processing waste generation and effluent treatment
 
Paper unit i
Paper unit iPaper unit i
Paper unit i
 
Pulp and paper industry
Pulp and paper industryPulp and paper industry
Pulp and paper industry
 
Presentation on Textile ETP
Presentation on Textile ETPPresentation on Textile ETP
Presentation on Textile ETP
 
Textile effluents dbt meeting 16.1.2006
Textile effluents dbt meeting 16.1.2006Textile effluents dbt meeting 16.1.2006
Textile effluents dbt meeting 16.1.2006
 
WASTE WATER AND ITS TREATMENT IN TEXTILE INDUSTRY
WASTE WATER AND ITS TREATMENT IN TEXTILE INDUSTRYWASTE WATER AND ITS TREATMENT IN TEXTILE INDUSTRY
WASTE WATER AND ITS TREATMENT IN TEXTILE INDUSTRY
 
paper making
paper makingpaper making
paper making
 
Paper n pulp industries
Paper n pulp industries Paper n pulp industries
Paper n pulp industries
 
Pulp & paper industries.....
Pulp & paper industries.....Pulp & paper industries.....
Pulp & paper industries.....
 

Andere mochten auch

06 01-01-e t200-t201
06 01-01-e t200-t20106 01-01-e t200-t201
06 01-01-e t200-t201wesme1234
 
ACQUEAU Workshop Helsinki 2015_Pulp&paper session_Petri Pajuniemi_Flootech
ACQUEAU Workshop Helsinki 2015_Pulp&paper session_Petri Pajuniemi_FlootechACQUEAU Workshop Helsinki 2015_Pulp&paper session_Petri Pajuniemi_Flootech
ACQUEAU Workshop Helsinki 2015_Pulp&paper session_Petri Pajuniemi_FlootechACQUEAU, EUREKA Cluster for Water
 
Pulp and paper mill waste
Pulp and paper mill wastePulp and paper mill waste
Pulp and paper mill wasteRimpi Rimpy
 
Treatment of waste from pulp industry
Treatment of waste from pulp industryTreatment of waste from pulp industry
Treatment of waste from pulp industryprarthana mary
 
Anaerobic treatment of Pulp and Paper mill Bleaching Effluent
Anaerobic treatment of Pulp and Paper mill Bleaching Effluent Anaerobic treatment of Pulp and Paper mill Bleaching Effluent
Anaerobic treatment of Pulp and Paper mill Bleaching Effluent Amit Christian
 
paper industry ETP (waste water treatment)
paper industry ETP (waste water treatment)paper industry ETP (waste water treatment)
paper industry ETP (waste water treatment)Gaurav Pandey
 
Levapor Bio Film Technologies and Bio Consulting GmbH
Levapor Bio Film Technologies and Bio Consulting GmbHLevapor Bio Film Technologies and Bio Consulting GmbH
Levapor Bio Film Technologies and Bio Consulting GmbHAmit Christian
 
Zero Liquid Discharge For Pulp and paper industries
Zero Liquid Discharge For Pulp and paper industriesZero Liquid Discharge For Pulp and paper industries
Zero Liquid Discharge For Pulp and paper industriesSooraj Garg
 
Efficiency Assessment of Effluent Treatment Plant In a Paper ant Industry, Un...
Efficiency Assessment of Effluent Treatment Plant In a Paper ant Industry, Un...Efficiency Assessment of Effluent Treatment Plant In a Paper ant Industry, Un...
Efficiency Assessment of Effluent Treatment Plant In a Paper ant Industry, Un...Priyabrata Roy
 
Anaerobic treatment of industrail wastewater
Anaerobic treatment of industrail wastewaterAnaerobic treatment of industrail wastewater
Anaerobic treatment of industrail wastewaterNitin Yadav
 
Effluent Treatment Plant Design, Operation And Analysis Of Waste Water
Effluent Treatment Plant Design, Operation And Analysis Of Waste Water Effluent Treatment Plant Design, Operation And Analysis Of Waste Water
Effluent Treatment Plant Design, Operation And Analysis Of Waste Water Jaidev Singh
 
All about paper making process
All about paper making processAll about paper making process
All about paper making processSakshi Vashist
 
Seminar cooling tower
Seminar cooling towerSeminar cooling tower
Seminar cooling towerRyan Kumpula
 

Andere mochten auch (16)

Paper mill waste treatment
Paper mill waste treatmentPaper mill waste treatment
Paper mill waste treatment
 
06 01-01-e t200-t201
06 01-01-e t200-t20106 01-01-e t200-t201
06 01-01-e t200-t201
 
5000 layout
5000 layout5000 layout
5000 layout
 
ACQUEAU Workshop Helsinki 2015_Pulp&paper session_Petri Pajuniemi_Flootech
ACQUEAU Workshop Helsinki 2015_Pulp&paper session_Petri Pajuniemi_FlootechACQUEAU Workshop Helsinki 2015_Pulp&paper session_Petri Pajuniemi_Flootech
ACQUEAU Workshop Helsinki 2015_Pulp&paper session_Petri Pajuniemi_Flootech
 
Pulp and paper mill waste
Pulp and paper mill wastePulp and paper mill waste
Pulp and paper mill waste
 
Treatment of waste from pulp industry
Treatment of waste from pulp industryTreatment of waste from pulp industry
Treatment of waste from pulp industry
 
M.Sc_Thesis_1
M.Sc_Thesis_1M.Sc_Thesis_1
M.Sc_Thesis_1
 
Anaerobic treatment of Pulp and Paper mill Bleaching Effluent
Anaerobic treatment of Pulp and Paper mill Bleaching Effluent Anaerobic treatment of Pulp and Paper mill Bleaching Effluent
Anaerobic treatment of Pulp and Paper mill Bleaching Effluent
 
paper industry ETP (waste water treatment)
paper industry ETP (waste water treatment)paper industry ETP (waste water treatment)
paper industry ETP (waste water treatment)
 
Levapor Bio Film Technologies and Bio Consulting GmbH
Levapor Bio Film Technologies and Bio Consulting GmbHLevapor Bio Film Technologies and Bio Consulting GmbH
Levapor Bio Film Technologies and Bio Consulting GmbH
 
Zero Liquid Discharge For Pulp and paper industries
Zero Liquid Discharge For Pulp and paper industriesZero Liquid Discharge For Pulp and paper industries
Zero Liquid Discharge For Pulp and paper industries
 
Efficiency Assessment of Effluent Treatment Plant In a Paper ant Industry, Un...
Efficiency Assessment of Effluent Treatment Plant In a Paper ant Industry, Un...Efficiency Assessment of Effluent Treatment Plant In a Paper ant Industry, Un...
Efficiency Assessment of Effluent Treatment Plant In a Paper ant Industry, Un...
 
Anaerobic treatment of industrail wastewater
Anaerobic treatment of industrail wastewaterAnaerobic treatment of industrail wastewater
Anaerobic treatment of industrail wastewater
 
Effluent Treatment Plant Design, Operation And Analysis Of Waste Water
Effluent Treatment Plant Design, Operation And Analysis Of Waste Water Effluent Treatment Plant Design, Operation And Analysis Of Waste Water
Effluent Treatment Plant Design, Operation And Analysis Of Waste Water
 
All about paper making process
All about paper making processAll about paper making process
All about paper making process
 
Seminar cooling tower
Seminar cooling towerSeminar cooling tower
Seminar cooling tower
 

Ähnlich wie Pulp and paper_industry

CP oppurtunities in Pulp & Paper sector.ppt
CP oppurtunities in Pulp & Paper sector.pptCP oppurtunities in Pulp & Paper sector.ppt
CP oppurtunities in Pulp & Paper sector.pptssuser646693
 
CP oppurtunities in Pulp & Paper sector.ppt
CP oppurtunities in Pulp & Paper sector.pptCP oppurtunities in Pulp & Paper sector.ppt
CP oppurtunities in Pulp & Paper sector.pptSanjeevGautam47
 
2nd Meeting Pulp and Paper Industry (1).pdf
2nd Meeting Pulp and Paper Industry (1).pdf2nd Meeting Pulp and Paper Industry (1).pdf
2nd Meeting Pulp and Paper Industry (1).pdfOPRIYANTOHUTABARAT
 
Analysis on municipal solid waste pellets making
Analysis on municipal solid waste pellets makingAnalysis on municipal solid waste pellets making
Analysis on municipal solid waste pellets makingJossie Xiong
 
cleaner technology in pulp and paper industry
cleaner technology in pulp and paper industry cleaner technology in pulp and paper industry
cleaner technology in pulp and paper industry Chētâñ Şhărmă
 
Paper and pulp industry waste and its management
Paper and pulp industry waste and its managementPaper and pulp industry waste and its management
Paper and pulp industry waste and its managementmuhammadsaeed297
 
Make paper factory residue into fuel pellets
Make paper factory residue into fuel pelletsMake paper factory residue into fuel pellets
Make paper factory residue into fuel pelletsJossie Xiong
 
Paper recycling adding value to waste
Paper recycling adding value to wastePaper recycling adding value to waste
Paper recycling adding value to wasteRamesh mehara
 
recycling of nylon and paper - waste management
recycling of nylon and paper - waste managementrecycling of nylon and paper - waste management
recycling of nylon and paper - waste managementSanthiya C
 
Environmental studies
Environmental studiesEnvironmental studies
Environmental studiessakthidevi86
 
Integrated green technologies for msw (mam ver.)
Integrated green technologies for msw (mam ver.)Integrated green technologies for msw (mam ver.)
Integrated green technologies for msw (mam ver.)mamdouh sabour
 
Recycling of waste water & Solid Waste
Recycling of waste water & Solid WasteRecycling of waste water & Solid Waste
Recycling of waste water & Solid WasteParth Desani
 
Paper Manufacturing process
Paper Manufacturing processPaper Manufacturing process
Paper Manufacturing processGeet KH
 
A reaserch on cocoa pod husk activated carbon for textile industrial wastewat...
A reaserch on cocoa pod husk activated carbon for textile industrial wastewat...A reaserch on cocoa pod husk activated carbon for textile industrial wastewat...
A reaserch on cocoa pod husk activated carbon for textile industrial wastewat...eSAT Publishing House
 
2.1 Introduction Brief Description Of The Pulp And Paper Making Process
2.1 Introduction Brief Description Of The Pulp And Paper Making Process2.1 Introduction Brief Description Of The Pulp And Paper Making Process
2.1 Introduction Brief Description Of The Pulp And Paper Making ProcessZaara Jensen
 

Ähnlich wie Pulp and paper_industry (20)

CP oppurtunities in Pulp & Paper sector.ppt
CP oppurtunities in Pulp & Paper sector.pptCP oppurtunities in Pulp & Paper sector.ppt
CP oppurtunities in Pulp & Paper sector.ppt
 
CP oppurtunities in Pulp & Paper sector.ppt
CP oppurtunities in Pulp & Paper sector.pptCP oppurtunities in Pulp & Paper sector.ppt
CP oppurtunities in Pulp & Paper sector.ppt
 
2nd Meeting Pulp and Paper Industry (1).pdf
2nd Meeting Pulp and Paper Industry (1).pdf2nd Meeting Pulp and Paper Industry (1).pdf
2nd Meeting Pulp and Paper Industry (1).pdf
 
Analysis on municipal solid waste pellets making
Analysis on municipal solid waste pellets makingAnalysis on municipal solid waste pellets making
Analysis on municipal solid waste pellets making
 
cleaner technology in pulp and paper industry
cleaner technology in pulp and paper industry cleaner technology in pulp and paper industry
cleaner technology in pulp and paper industry
 
Paper and pulp industry waste and its management
Paper and pulp industry waste and its managementPaper and pulp industry waste and its management
Paper and pulp industry waste and its management
 
Make paper factory residue into fuel pellets
Make paper factory residue into fuel pelletsMake paper factory residue into fuel pellets
Make paper factory residue into fuel pellets
 
Eh36811818
Eh36811818Eh36811818
Eh36811818
 
final draft
final draftfinal draft
final draft
 
Paper recycling adding value to waste
Paper recycling adding value to wastePaper recycling adding value to waste
Paper recycling adding value to waste
 
recycling of nylon and paper - waste management
recycling of nylon and paper - waste managementrecycling of nylon and paper - waste management
recycling of nylon and paper - waste management
 
Waste management
Waste managementWaste management
Waste management
 
Environmental studies
Environmental studiesEnvironmental studies
Environmental studies
 
Integrated green technologies for msw (mam ver.)
Integrated green technologies for msw (mam ver.)Integrated green technologies for msw (mam ver.)
Integrated green technologies for msw (mam ver.)
 
Paper industry .pptx
Paper industry .pptxPaper industry .pptx
Paper industry .pptx
 
Recycling of waste water & Solid Waste
Recycling of waste water & Solid WasteRecycling of waste water & Solid Waste
Recycling of waste water & Solid Waste
 
Paper Manufacturing process
Paper Manufacturing processPaper Manufacturing process
Paper Manufacturing process
 
Paper and Pulp Industry
Paper and Pulp IndustryPaper and Pulp Industry
Paper and Pulp Industry
 
A reaserch on cocoa pod husk activated carbon for textile industrial wastewat...
A reaserch on cocoa pod husk activated carbon for textile industrial wastewat...A reaserch on cocoa pod husk activated carbon for textile industrial wastewat...
A reaserch on cocoa pod husk activated carbon for textile industrial wastewat...
 
2.1 Introduction Brief Description Of The Pulp And Paper Making Process
2.1 Introduction Brief Description Of The Pulp And Paper Making Process2.1 Introduction Brief Description Of The Pulp And Paper Making Process
2.1 Introduction Brief Description Of The Pulp And Paper Making Process
 

Kürzlich hochgeladen

Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort servicejennyeacort
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionDr.Costas Sachpazis
 
Biology for Computer Engineers Course Handout.pptx
Biology for Computer Engineers Course Handout.pptxBiology for Computer Engineers Course Handout.pptx
Biology for Computer Engineers Course Handout.pptxDeepakSakkari2
 
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...srsj9000
 
Application of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptxApplication of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptx959SahilShah
 
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)dollysharma2066
 
Heart Disease Prediction using machine learning.pptx
Heart Disease Prediction using machine learning.pptxHeart Disease Prediction using machine learning.pptx
Heart Disease Prediction using machine learning.pptxPoojaBan
 
Electronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdfElectronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdfme23b1001
 
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdfCCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdfAsst.prof M.Gokilavani
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile servicerehmti665
 
Arduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.pptArduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.pptSAURABHKUMAR892774
 
Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...121011101441
 
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor CatchersTechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catcherssdickerson1
 
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdfCCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdfAsst.prof M.Gokilavani
 
8251 universal synchronous asynchronous receiver transmitter
8251 universal synchronous asynchronous receiver transmitter8251 universal synchronous asynchronous receiver transmitter
8251 universal synchronous asynchronous receiver transmitterShivangiSharma879191
 
IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024Mark Billinghurst
 
Artificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptxArtificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptxbritheesh05
 

Kürzlich hochgeladen (20)

Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
 
Biology for Computer Engineers Course Handout.pptx
Biology for Computer Engineers Course Handout.pptxBiology for Computer Engineers Course Handout.pptx
Biology for Computer Engineers Course Handout.pptx
 
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...
Gfe Mayur Vihar Call Girls Service WhatsApp -> 9999965857 Available 24x7 ^ De...
 
Call Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCR
Call Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCRCall Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCR
Call Us -/9953056974- Call Girls In Vikaspuri-/- Delhi NCR
 
Application of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptxApplication of Residue Theorem to evaluate real integrations.pptx
Application of Residue Theorem to evaluate real integrations.pptx
 
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)
 
Heart Disease Prediction using machine learning.pptx
Heart Disease Prediction using machine learning.pptxHeart Disease Prediction using machine learning.pptx
Heart Disease Prediction using machine learning.pptx
 
Electronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdfElectronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdf
 
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdfCCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
 
Call Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile serviceCall Girls Delhi {Jodhpur} 9711199012 high profile service
Call Girls Delhi {Jodhpur} 9711199012 high profile service
 
Arduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.pptArduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.ppt
 
Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...
 
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor CatchersTechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
TechTAC® CFD Report Summary: A Comparison of Two Types of Tubing Anchor Catchers
 
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdfCCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
CCS355 Neural Network & Deep Learning Unit II Notes with Question bank .pdf
 
young call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Service
young call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Serviceyoung call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Service
young call girls in Rajiv Chowk🔝 9953056974 🔝 Delhi escort Service
 
8251 universal synchronous asynchronous receiver transmitter
8251 universal synchronous asynchronous receiver transmitter8251 universal synchronous asynchronous receiver transmitter
8251 universal synchronous asynchronous receiver transmitter
 
IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024IVE Industry Focused Event - Defence Sector 2024
IVE Industry Focused Event - Defence Sector 2024
 
Artificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptxArtificial-Intelligence-in-Electronics (K).pptx
Artificial-Intelligence-in-Electronics (K).pptx
 
Design and analysis of solar grass cutter.pdf
Design and analysis of solar grass cutter.pdfDesign and analysis of solar grass cutter.pdf
Design and analysis of solar grass cutter.pdf
 

Pulp and paper_industry

  • 1. Pulp and paper industry Case study Presentation by: Dalia Jankunaite www.forestproducts.sca.com
  • 2. Introduction  The pulp and paper industry converts wood or recycled fibre into pulp and primary forms of paper.  In the 1800s, there was a shift away from using cotton rags for paper production. Wood became the most important source of fiber.  First mechanical and then chemical methods have been developed to produce pulp from wood.
  • 3. Pulp and paper mills  Pulp mills separate the fibres of wood or from other materials, such as rags, wastepaper or straw in order to create pulp.  Paper mills primarily are engaged in manufacturing paper from wood pulp and other fibre pulp, and may also manufacture converted paper products.
  • 4. Production process The production process can be divided into 7 sub-processes:  raw materials processes;  wood-yard;  fibre line;  chemical recovery;  bleaching;  paper production;  products and recycling.
  • 5. Simplified flow diagram of integrated mill
  • 6. Pulping processes Pulping aims to separate cellulose fibers from the wood structure. Possible types of pulp production are: Kraft (68%) mechanical (22%) semi-chemical (4%) sulphite (4%) dissolving (2%).www.handprint.com
  • 7. Kraft Pulping Sulfate or Kraft pulping was invented in Germany in 1884 and remains the dominating technology today. Advantages: – higher pulp strength – wider variety of wood species may be used – more effective at removing impurities like resins. Disadvantage: – the pulp yield is low, less than 50%.
  • 8. Environmental problems (1) Regulated wastes and emissions from the pulp and paper industry include liquid and solid wastes, air emissions, and wastewater.  Air emissions related with this process are: sulphur dioxide, nitrous oxides, particulate matter, methanol, polycyclic organic matter, hydrogen chloride, formaldehyde, chloroform, phenol and chlorinated phenolics, dioxins, furans and other chlorinated compounds.
  • 9. Environmental problems (2)  Wastewater releases include chlorinated phenolics, dioxins, furans and other chlorinated compounds, phosphates and suspended sediments.  Paper mills also produce non-hazardous solid waste such as sludge derived from their pulping and bleaching operations.
  • 10. Raw water use  Pulp mills are big water users. The total requirement of raw water has through cleaner production measures been reduced from about 200-300 m3 per ton of pulp in 1970 to well below 50 m3 /ton, in some mills even below 10 m3 /ton.  Consumption of fresh water can seriously harm habitats near mills, reduce water levels necessary for fish, and change water temperature, a critical environmental factor for fish.
  • 11. Pollutants in effluents  The most common organic pollutants are suspended solids (SS): – lost cellulose fibre, – dissolved organic compounds such as dissolved lignin compounds, carbohydrates, starch and hemi-cellulose  Acidic compounds are predominantly natural resin acids.  Chlorinated organics (AOX) are found if elemental chlorine is used in the process.
  • 12. Wastewater flow SCA Forest Products, Östrand pulp mill
  • 13. Development of emissions of COD SCA Forest Products, Östrand pulp mill
  • 14. Development of emissions of AOX SCA Forest Products, Östrand pulp mill
  • 15. Solid wastes  Dirty wood chips or fibers as well as bark.  The broken, low-quality fibres are separated out to become waste sludge.  All the inks, dyes, coatings, pigments, staples and "stickies" (tape, plastic films, etc.) washed off the recycled fibres.
  • 16. Organic wastes amount development SCA Forest Products, Östrand pulp mill
  • 17. Energy use (1)  The pulp and paper industry uses 84% of the fuel energy consumed by the forest products industry as a whole.  It is one of the largest producers of greenhouse gas (GHG) emissions.  Over the past few years, the pulp and paper industry has considerably reduced its GHG emissions by introducing energy conservation projects and by increasing its use of biomass as an energy source.
  • 18. Energy use (2)  A modern kraft pulp mill is essentially self- sufficient in energy. The only oil consumer is the causticing oven, which however can be replaced with bio-fuel.  A paper mill requires between 400 and 1000 kWh electricity/ton paper and 4 – 8 GJ heat/ton for drying in the paper machine.  In an integrated pulp and paper mill this energy is provided from the recovery boiler.
  • 19. Cleaner production measures Raw materials  Maintaining moisture content of the raw materials constant all year around.  Keeping chemical inventory to a minimum and buying small containers of infrequently used materials.  Labelling storage area for hazardous substances.  Providing spill containment and collection systems during storage.  Genetically modifying forest trees.
  • 20. Genetically modified trees  Lignin is the main wood component that must be effectively removed from the pulp.  It has been possible to use genetic engineering to modify lignin content and/or composition in poplars. courses.washington.edu
  • 21. Advantages of genetic modifications  Genetic modifications improved characteristics, allowing easier delignification, using smaller amount of chemicals, while yielding more high- quality pulp.  Owing to the genetic modification savings in energy and pollutant chemicals are achieved, thus leading to an environmentally more sustainable process.
  • 22. Debarking Wet Dry Waste water m3 /t 3-20 0-5 SS kg/t 15-50 0-10 BOD5/t 5-10 0-3 Energy consumption kWh/t 20 20
  • 23. Cleaner production measures Wood-yard (1)  Pulp mills integrated with lumbering facilities: acceptable lumber wood is removed during debarking; residual or waste wood from lumber processing is returned to the chipping process; in-house lumbering rejects can be a significant source of wood furnish.  Avoiding hydraulic debarking – saving energy and water consumption, reducing wastewater amount.
  • 24. Cleaner production measures Wood-yard (2)  Reusing leachate water.  Co-production from bark: mulch, ground cover, charcoal.  Burning bark from debarking and small chips from chipping for energy production (depends on the moisture content).
  • 25. Cleaner production measures Pulp production (1)  Increasing brown stock washing efficiency. Any remaining cooking liquor will increase the chemical consumption in subsequent stages.  Water reuse from evaporators. The evaporation plant is always one of the largest steam consumers in the mill. Condensate might be used instead of fresh water in the mill.  Repulping the rejects from screening rather than putting them into the landfill.
  • 26. Cleaner production measures Pulp production (2)  Using pulp centrifuging to remove any remaining impurities.  Sludge utilization by means of land- spreading. This method of sludge disposal is an area of concern, as sludge constituents are not well identified.  Air emissions control devices.  Providing spill containment and collection system.
  • 27. Cleaner production measures Chemicals recovery (1)  Using of new technologies (CHP, BLG, heat transfer, heat exchanger).  Improvements technical parameters of recovery boiler or furnace (geometrical shape etc.).  Using light gas strippers and gas collection systems which will remove hazardous and foul smelling pollution from the air and increase workplace safety.
  • 28. Cleaner production measures Chemicals recovery (2)  Deaerator tanks ahead of the boilers to help reduce the intake of freshwater.  Air emissions control devices.  Providing spill containment and collection system.
  • 29. Cleaner production measures Bleaching  Avoiding chlorine bleaching.  Continuing research on biotechnological bleaching and electrochemical bleaching.  Air emissions control devices.  Providing spill containment and collection systems.
  • 30. Cleaner production measures Paper production (1)  Cleaning the roll in the paper machines to avoid broken paper line.  Adjustment of edge cutter to reduce side trimming loss.  Use of soft water as a boiler feed water.  Recycling water evaporated from drying process by condensing.
  • 31. Cleaner production measures Paper production (2)  Optimizing the thermal effects on water used in the paper machine and stock preparation area.  Providing disk save-all for paper machine.  Repulping rejected paper in a closed loop manner.
  • 32. Cleaner production measures Products processes and recycling  Increasing recycling rates. Recycling reduces energy consumption, decreases combustion and landfill emissions, and decreases the amount of carbon dioxide in the atmosphere. This process also saves money.  Possibility for easy packaging recycling.  Using “green” fuel for transportation.
  • 33. Recycling In Europe an average of 56% of used paper is recovered. The recycling process includes following stages: – Sorting – Dissolving – De – inking – Mixing – Papermaking process
  • 34. Ideal paper mill (1)  From cleaner production point of view is a chlorine-free and zero-discharge one, with minimized quantity and toxicity of air pollution and solid wastes.  It is seen that closed loops represent the most effective approach to save both energy and resource consumption and at the same way to decrease all kind of wastes production.
  • 35. Ideal paper mill (2)  Such an approach is developed in the form of paper recycling, different types of substances re-use during production processes, co- production and chemicals recovery.  Future research can develop more sustainable reuse options for kraft pulping solid wastes, as well as pulping methods that result in purified by-products that can serve as feedstock for other manufacturing processes.