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  • Chemical Insight and Forecasting: IHS Chemical
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  • Carbon Footprint Initiative

Chemical Insight and Forecasting: IHS Chemical

  • Process Economics Program
  • Carbon Footprint Initiative
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Carbon Footprint Initiative

Prepare for a carbon-constrained world with IHS Chemical Carbon Footprint Initiative (formerly SRI Consulting Carbon Footprint Initiative). Clients may subscribe to our online emissions database covering nearly 360 chemical processes, as well as choose from our individual reports that offer deeper, product-specific analysis of emissions.

  • Overview
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  • Today more than ever, engineers, technology managers and strategic planners need to know the level of greenhouse gas emissions of commercial and competitive technologies. Established in 2006, IHS Chemical Carbon Footprint Initiative is a service designed to help firms stay abreast of and comply with carbon emissions regulations. Based on the in-depth, independent technical and economic evaluations by the IHS Chemical Process Economics Program (PEP), the program provides a rigorous and systematic methodology for calculating and comparing carbon footprints of critical chemical processes. Coverage includes all of the primary petrochemicals and their process chains plus key bio-processes.

    Clients may subscribe to the IHS Chemical Carbon Footprint Yearbook (formerly SRI Consulting Carbon Footprint Yearbook)– an online database containing carbon footprints for 359 chemical processes. A web-based calculation tool allows for customization by fuel type and geographic location. For products with appreciable by-products, multiple options exist for determining emissions output. The Yearbook includes one year of access to the online calculation tool.

    Clients may also purchase the IHS Chemical Carbon Footprint Reports, which provide additional product-specific analysis of emissions, from polymers to biofuels. The reports also investigate regulatory matters, such as the potential tax disadvantages of Europe’s proposed biofuel certification requirements. For clients needing more customized analysis, IHS Chemical consultants can provide private research tailored to product, process, well-to-product and benchmarking considerations.

    Whether you are comparing competing technologies, seeking to reduce current emissions or selecting a future project site, IHS Chemical Carbon Footprint Initiative is your best source of carbon emissions information.

    Who uses Petroleum Frontiers? How?

    Strategic planners 

    To gain accurate and independent data and analysis to assess carbon emissions of competing process technologies 

    Technology managers

    To compare emissions output of competitive chemical technologies

    Global project managers

    To procure carbon emissions data for different geographic regions to help select project sites

    R&D and process engineers

    To benchmark plant operating parameters against those of competing processes/To find options for reducing carbon emissions 

    Benefits:

    The IHS Carbon Footprint Initiative enables you to:

    • Save company time and resources by obtaining information from a single source that is unrivaled in coverage, comprehensiveness and quality of data
    • Rest assured that you are relying upon independent, unbiased analyses, drawing on industry experts’ experience in process design and evaluation
    • Obtain data and analysis derived from a consistent engineering methodology, which allows for comparative assessments among competing technologies
    • Understand regulatory matters affecting the carbon footprint for your chemical of interest
    • Access the largest online database of carbon emissions for the chemical industry, offering annually updated footprints for more than 300 process technologies
    • Obtain private client services for analysis by product or process, well-to-product and benchmarking 
  • IHS Chemical Carbon Footprint Yearbook details:

    • Carbon emissions for nearly 360 chemical processes
    • The latest release of the Carbon Footprint Yearbook includes more than 60 additional processes. Among these additional processes covered for the first time:
      • ABS Resin
      • Ammonium Nitrate Fertilizer
      • Butene-1
      • Butyrolactam
      • Butyrolactone
      • Carbon Fiber
      • Chlorinated Polyethylene
      • Gasoline Alkylate
      • Isoprene
      • Liquid Crystal Polymers
      • Nonylphenol
      • PET Bottles and Bottle Grade Resins
      • PBT Pellets
      • Polybutene-1
      • Polytetrafluoroethylene
      • Sec-Butanol
    • Web-based calculation tool to allow customization by fuel type and geographic location
    • For processes with appreciable by-products, option for calculating emissions output (all by mass) entirely by main product, by major co-products or by high value products only
    • View sample results page
    • View Yearbook (subscribers only):
      • IHS Chemical Carbon Footprint Yearbook, Formerly Greenhouse Gases Handbook (Subscribers Only):
      • View chemical processes covered in the current edition

    Product NameProcess Name
    ABS RESINABS Resin By Emulsion/Mass Polymerization
    ACETALDEHYDEAcetaldehyde From Ethylene By One-Step Oxidation
    ACETIC ACIDAcetic Acid From MeOH By The BP Cativa Process
    ACETIC ACIDAcetic Acid From MeOH By Low Pressure Carbonylation, Supported Rh Catalyst
    ACETIC ACIDAcetic Acid From MeOH By The Celanese Process
    ACETIC ANHYDRIDEAcetic Anhydride From Acetic Acid Via Ketene
    ACETONEAcetone From Isopropanol By Vapor Phase Dehydrogenation
    ACETYLENEAcetylene From Natural Gas By Partial Oxidation
    ACRYLIC ACID (ESTER GRADE)Acrylic Acid (Ester Grade) By Nippon Shokubai Process
    ACRYLONITRILEAcrylonitrile From Propylene By Ammoxidation
    ACRYLONITRILEAcrylonitrile, Propane-Based Process Using Antimony-Based Catalysts (Sohio Catalyst)
    ACRYLONITRILEAcrylonitrile, Propane-Based (Asahi Process)
    ACRYLONITRILEAcrylonitrile, Propane-Based (Mitsubishi Process)
    ACRYLONITRILEAcrylonitrile, Propylene-Based (Sohio Process)
    ADIPIC ACIDAdipic Acid From Cyclohexane
    ADIPIC ACIDAdipic Acid From Phenol Via Cyclohexanol
    ADIPIC ACIDAdipic Acid From Benzene Via Cyclohexanol
    AMMONIAAmmonia From Natural Gas By Steam Reforming (ICI "AMV" Process)
    AMMONIAAmmonia From Natural Gas By Steam Reforming (ICI "LCA" Process)
    AMMONIAAmmonia From Natural Gas By Steam Reforming (M. W. Kellogg's Improved Process: KAAP-KRES)
    AMMONIAUHDE DUAL PRESSURE PROCESS
    AMMONIAKBR PURIFIER PLUS AMMONIA PROCESS
    AMMONIUM NITRATE FERT.AMMONIUM NITRATE FERTILIZER (34-0-0) HIGH DENSITY PRILLS
    ANILINEAniline From Nitrobenzene By Vapor-Phase Reduction
    BENZENEBenzene (Mixed Xylenes By-Prod) From Refor Heart Cut By Sulfolane Extract.&Distill.
    4-CL 4-HD BENZOPHENONE4-CHLORO-4-HYDROXY-BENZOPHENONE FROM 4-CHLOROBENZOIC ACID AND PHENOL
    BIODIESELBiodiesel From Algal Oil Via Alkaline Catalysis
    BIODIESELBiodiesel Via Heterogengous Catalysis Catilin Process
    BIODIESELBiodiesel From Refined Vegetable Oil Via CD Process
    BIODIESELBiodiesel From Refined Vegetable Oil Via Alkaline Catalysis
    BIOSYNFUELProduction Of Hydrophobic [BMIM][PF6] Ionic Liquid
    BISPHENOL A (PC GRADE)Bisphenol A From Acetone And Phenol By An Ion-Exchange Catalyzed Process
    BITUMENBitumen Production Via Surface Mining
    BITUMENBitumen Production Via Steam Assisted Gravity Drainage (SAGD)
    BOTTLES, PET, BIAX ORIENTBOTTLES, PET, BIAX ORIENT, ONE PIECE, BY INJECTION STRETCH BLOW-MOLD PROCESS
    BUTENE-1BUTENE-1 OF HIGH PURITY FROM ETHYLENE BY DIMERIZATION
    BUTENE-1BUTENE-1 OF HIGH PURITY FROM MTBE PLANT RAFFINATE
    BUTENE-1BUTENE-1 OF HIGH PURITY BY SEPARATION USING MOLECULAR SIEVES
    BUTYROLACTAMBUTYROLACTAM (2-PYRROLIDONE) FROM BUTYROLACTONE
    BUTYROLACTAMBUTYROLACTAM (2-PYRROLIDONE) FROM MALEIC ANHYDRIDE
    BUTYROLACTONEBUTYROLACTONE FROM 1,4-BUTANEDIOL
    BUTYROLACTONEBUTYROLACTONE FROM MALEIC ANHYDRIDE
    CAPROLACTAMCaprolactam From Phenol By The Hydroxylamine Phosphate Oxime Process
    CARBON BLACK (HAF)Carbon Black By The Oil-Furnace Process Using Air As The Oxidant Gas
    CARBON BLACK (HAF)Carbon Black By The Oil-Furnace Process Using Oxygen As The Oxidant Gas
    CARBON FIBER, PAN-BASEDCARBON FIBER, PAN-BASED, CONTINUOUS YARN FROM POLYACRYLONITRILE
    CARBON FIBER, PAN-BASEDCARBON FIBER, PAN-BASED FROM OXIDIZED POLYACRYLONITRILE FIBER
    CARBON FIBER, PITCH-BASEDCARBON FIBER, PITCH-BASED, CONTINUOUS YARN FROM MESOPHASE PITCH
    CARBON FIBER, PITCH-BASEDCARBON FIBER, PITCH-BASED FROM OXIDIZED PITCH FIBER
    CARBON MONOXIDECarbon Monoxide From Synthesis Gas By Cryogenic Separation
    CELLULASECELLULASE FROM CELLULOSIC FEEDSTOCK
    CELLULASECELLULASE FROM LACTOSE FEEDSTOCK
    CHLORINEChlorine (Caustic Soda By-Product) By Electrolysis Of NaCl In Diaphragm Cells
    CUMENECumene From Benzene And Propylene
    CYCLOHEXANECyclohexane From Benzene By Hydrogenation
    4,4-DCDPS4,4-DICHLORODIPHENYL SULFONE FROM CHLOROBENZENE, SO3, AND THIONYL CHLORIDE
    DIAMMONIUM PHOSPHATEDiammonium Phosphate Granular Fertilizer (18-46-0)
    DIESEL, FISCHER-TROPSCHGas To Liquids Technology Sasol Fischer Tropsch Process *
    DIESEL, FISCHER-TROPSCHGas To Liquids Technology Shell Fischer Tropsch Process*
    DIESEL, FISCHER-TROPSCHDiesel, Fischer-Tropsch From Biomass
    DIMER GASOLINEPropylene Dimerization
    DIMETHYL ETHERDimethyl Ether By A Single-Step Process
    DIMETHYL ETHERDIMETHYL ETHER BY JFE SINGLE-STEP SYNTHESIS PROCESS
    DIMETHYL ETHERDIMETHYL ETHER BY INTEGRATED METHANOL-DME PROCESS OF HALDOR TOPSOE
    2,6-DIMETHYLPHENOL2,6-DIMETHYLPHENOL (2,6-XYLENOL) FROM PHENOL AND METHANOL BY FIXED BED PROCESS
    DIMETHYL TEREPHTHALATEDimethyl Terephthalate From P-Xylene By Successive Oxidations And Esterifications
    DINITROTOLUENEDinitrotoluene From Toluene By Nitration
    DL-METHIONINEDL-METHIONINE FROM ACROLEIN BY CHEMICAL SYNTHESIS (DEGUSSA)
    DODECYL ALC. ETHOXYLATEDODECYL ALCOHOL ETHOXYLATE NONIONIC SURFACTANT
    DODECYL DMA OXIDEDODECYL DIMETHYLAMINE OXIDE NONIONIC SURFACTANT
    EPDM RUBBEREpdm Rubber Containing Ethylidene Norbornene By A Gas Phase Process
    ETHANOLEthanol From Ethylene By Catalytic Hydration
    ETHANOLEthanol From Bagasse
    ETHANOLEthanol From Wheat Straw*
    ETHANOLEthanol From Corn Stover*
    ETHANOLEthanol From Corn Dry Mill Process
    ETHANOLEthanol Via Hydration Of Ethylene
    ETHANOLSTTP From Industrial Grade Phosphoric Acid
    ETHANOLEthanol From Sugarcane
    ETHANOLAMINESEthanolamines From Ammonia And Ethylene Oxide, 20:1 Molar Reactor Feed Ratio
    ETHYLBENZENEEthylbenzene From Benzene By Liquid-Phase Alkylation, AlCl3 Cat.
    ETHYLBENZENEEthylbenzene From Benzene By Vapor-Phase Alkylation
    ETHYLBENZENEEthylbenzene From Benzene By Liquid-Phase Alkylation, Zeolite Cat.
    2-ETHYLHEXANOL2-Ethylhexanol From Propylene, Cobalt Hydrocarbonyl Catalyst
    2-ETHYLHEXANOL2-ETHYLHEXANOL FROM N-BUTYRALDEHYDE BY ALDOL CONDENSATION AND HYDROGENATION
    ETHYLENEEthylene From Atmospheric Gas Oil By Millisecond(Tm) Cracking/Demethanization
    ETHYLENEEthylene From N-Butane By Conventional Cracking With Front-End Deethanization
    ETHYLENEEthylene From Ethane By Conventional Cracking With Front-End Deethanization
    ETHYLENEEthylene From Ethane-Propane By Conventional Cracking/Front-End Deethanization
    ETHYLENEEthylene From Light Naphtha By Conventional Cracking/Front-End Deethanization
    ETHYLENEEthylene From Propane By Conventional Cracking With Front-End Deethanization
    ETHYLENEEthylene From Refinery Gas, Including Steam Cracking Of Ethane And Propane
    ETHYLENEEthylene From Vacuum Gas Oil By Millisecond(Tm) Cracking/Demethanization
    ETHYLENEEthylene From Wide-Range Naphtha By Millisecond(Tm) Cracking/High Severity
    ETHYLENEEthylene From Wide-Range Naphtha By Millisecond(Tm) Cracking/Mild Severity
    ETHYLENEETHYLENE BY THE UOP/HYDRO METHANOL TO OLEFINS PROCESS
    ETHYLENE DICHLORIDEEthylene Dichloride By Direct Chlorination: Liquid-Phase Htc Process (Oxy Vinyls)
    ETHYLENE DICHLORIDEEthylene Dichloride By Oxychlorination: Fluidized-Bed Reactor, Oxygen-Based (Oxy Vinyls)
    ETHYLENE GLYCOLEthylene Glycol From Ethylene And Oxygen Via Eo (All EO For EG)
    ETHYLENE GLYCOLSHELL HIGH EFFICIENCY ETHYLENE GLYCOL PROCESS
    ETHYLENE GLYCOLDOW HIGH EFFICIENCY ETHYLENE GLYCOL PROCESS
    ETHYLENE OXIDEEthylene Oxide From Ethylene By Air Oxidation (All Marketable Ethylene Oxide)
    ETHYLENE OXIDEEthylene Oxide From Ethylene By Oxygen Oxidation (All Marketable Ethylene Oxide)
    ETHYLENE/MA ACID IONOMERETHYLENE/METHACRYLIC ACID IONOMER USING A HIGH PRESSURE AUTOCLAVE PROCESS
    ETHYLENE/MACRYLATE COPOLETHYLENE/METHYL ACRYLATE COPOLYMER FROM A HIGH PRESSURE AUTOCLAVE PROCESS
    ETHYLENE/VA COPOLYMEREthylene/Vinyl Acetate Copolymer Using A Tubular Reactor
    ETHYLENE/VA COPOLYMERETHYLENE/VINYL ACETATE COPOLYMER BY AN AUTOCLAVE REACTOR PROCESS
    ETHYLENE/VA COPOLYMEREthylene/Vinyl Acetate Copolymer Using A Tubular Reactor
    FEP RESINFLUORINATED ETHYLENE-PROPYLENE COPOLYMER BY CONVENTIONAL AQUEOUS EMULSION POLYMERIZATION
    FEP RESINFLUORINATED ETHYLENE-PROPYLENE COPOLYMER BY CONTINUOUS PRECIPITATION POLYMERIZATION
    FORMALDEHYDE (50%)Formaldehyde From Methanol, Ferric-Molybdate Catalyst
    FORMALDEHYDE (50%)Formaldehyde From Methanol, Silver Catalyst
    FORMALDEHYDE (50%)FORMALDEHYDE FROM METHANOL BY THE TOPSOE SR PROCESS
    FORMIC ACIDFormic Acid (85%) By BASF Process
    GASOLINEVacuum Gas Oil Conventional Fluid Catalytic Cracking
    GASOLINE (102 RONC)Gasoline (102 RONC) Catalytic Reforming Of Dehexanized Paraffinic Naphtha
    GASOLINE ALKYLATEGASOLINE ALKYLATE FROM PROPYLENE-BUTENES FEED, HF CATALYZED
    GASOLINE ALKYLATEGASOLINE ALKYLATE FROM BUTENES FEED, SULFURIC ACID CATALYZED
    HCFC-142BCHLORODIFLUOROETHANE (HCFC-142B) FROM METHYL CHLOROFORM
    HEXAMETHYLENEDIAMINEHMDA From Acrylonitrile Via Adiponitrile By Electrohydrodimerization
    HEXAMETHYLENEDIAMINEHMDA From Acrylonitrile By Electrohydrodimerization In Undivided Cells (Emulsion)
    HEXAMETHYLENEDIAMINEHMDA From Acrylonitrile Via Adiponitrile By Ammoniation And Hydrogenation
    HEXAMETHYLENEDIAMINEHMDA From Butadiene Via Dichlorobutene, Dicyanobutene, And ADN
    HEXAMETHYLENEDIAMINEHMDA From Butadiene Via Adiponitrile By Hydrocyanation
    HYDROGENHydrogen From Natural Gas By Steam Reforming
    HYDROGEN FLUORIDEHydrogen Fluoride From Fluorspar
    HYDROGEN PEROXIDEHydrogen Peroxide By The Anthraquinone Process
    HYDROISOMERATEBENZENE REMOVAL VIA HYDROISOMERIZATION OF C6-C7 REFORMATE
    2-HYDROXY-4-METHYLTHIOBUTANOIC ACID2-HYDROXY-4-METHYLTHIOBUTANOIC ACID PRODUCTION PROCESS
    ION-EXCHANGE(ANION), STR-BASE1ION-EXCHANGE RESIN(ANION), GEL-TYPE (4% DVB), STRONG-BASE (TYPE I) PROCESS
    ION-EXCHANGE(ANION), STR-BASE2ION-EXCHANGE RESIN(ANION), GEL-TYPE (4% DVB), STRONG-BASE (TYPE II) PROCESS
    ION-EXCHANGE(ANION), WEAK-BASEION-EXCHANGE RESIN(ANION), MACROPOROUS (8% DVB), WEAK-BASE PROCESS
    ION-EXCHANGE(CATION), STR-ACIDION EXCHANGE RESIN(CATION), GEL-TYPE (8% DVB) STRONG ACID PROCESS
    ISODECYL ALCOHOLIsodecyl Alcohol From Nonenes, Cobalt Catalyst
    ISONONYL ALCOHOLIsononyl Alcohol From Octenes, Rhodium Catalyst
    ISONONYL ALCOHOLISONONYL ALCOHOL BY THE EXXON PROCESS
    ISOPHTHALIC ACIDIsophthalic Acid From M-Xylene By Bromine-Promoted Catalytic Air Oxidation
    ISOPHTHALOYL CHLORIDEIsophthaloyl Chloride From m-Xylene
    ISOPRENEISOPRENE FROM A C5 FRACTION BY DMF EXTRACTIVE DISTILLATION
    ISOPROPANOLIsopropanol From Chemical Propylene, Silicotungstate Catalyst
    ISOPROPANOLAMINESIsopropanolamines From Propylene Oxide And Ammonia (NH3:PO=5:1)
    LCP, NEAT1LIQUID CRYSTAL POLYMER FROM P-HBA, TEREPHTHALIC ACID, AND 4,4-DHDP, NEAT
    LCP, NEAT2LIQUID CRYSTAL POLYMER FROM P-HBA AND 6-HYDROXY-2-NAPHTHOIC ACID, NEAT
    LINEAR ALPHA OLEFINSOlefins, Linear Alpha, By Shell Higher Olefins Process
    LIQ XTAL POLYMER1,FILLEDLIQUID CRYSTAL POLYMER FROM P-HBA, TEREPHTHALIC ACID, AND 4,4-DHDP, FILLED
    LIQ XTAL POLYMER2,GL-FLDLIQUID CRYSTAL POLYMER FROM P-HBA AND 6-HYDROXY-2-NAPHTHOIC ACID, GLASS-FILLED
    LIQUIFIED NATURAL GASLNG By Cascade Refrigeration*
    LIQUIFIED NATURAL GASLNG Regasification*
    LLDPE POLYETHYLENEPOLYETHYLENE, LLD PRODUCTION BY A SOLUTION PROCESS SIMILAR TO NOVA CHEMICALS SCLAIRTECHA PROCESS
    LLDPE POLYETHYLENEPOLYETHYLENE, LLD PRODUCTION BY A GAS-PHASE PROCESS SIMILAR TO THE UNIPOL PROCESS
    LLDPE POLYETHYLENEPOLYETHYLENE, LLD PRODUCTION BY A SLURRY PROCESS SIMILAR TO THE CHEVRONPHILLIPS SLURRY LOOP PROCESS
    LOW BENZENE REFORMATESATURATION OF BENZENE IN REFORMATE BY CATALYTIC DISTILLATION
    LOW BENZENE REFORMATEEXTRACTIVE DISTILLATION REMOVAL OF BENZENE AND TOLUENE FROM C5-C7 REFORMATE
    LOW BENZENE REFORMATEEXTRACTIVE DISTILLATION REMOVAL OF ONLY BENZENE FROM C5-C7 REFORMATE
    L-THREONINEL-THREONINE PRODUCTION BY FERMENTATION AND RECOVERY BY ION EXCHANGE
    MALEIC ANHYDRIDEMaleic Anhydride From Benzene, Fixed Bed Reactor, Direct Dehydration
    MALEIC ANHYDRIDEMaleic Anhydride From n-Butane, Fluid Bed Reactor, Direct Dehydration
    MALEIC ANHYDRIDEMaleic Anhydride From n-Butane, Fluid Bed Reactor, Organic Solvent Absorber
    MALEIC ANHYDRIDEMaleic Anhydride From n-Butane, Moving Bed Reactor
    MALEIC ANHYDRIDEMaleic Anhydride From n-Butenes, Fluid Bed Reactor, Direct Dehydration
    MDI/PMPPIMethylene Diphenylene Isocyanate (MDI) & Polymeric Form (PMPPI) By Phosgenation
    MELAMINEMelamine From Urea By The Melamine Chemicals M-II Process
    METHANOLMethanol From Coal By The SCGP And ICI/Synetix LPM Process
    METHANOLMethanol From Natural Gas By The ICI Copper-Based Catalyst Process
    METHANOLMethanol From Natural Gas By The Lurgi Combined Reforming Process
    METHANOLMethanol From Natural Gas By The ICI LCM Process
    METHANOLMethanol Production Via Toyo Technology
    METHANOLMethanol On "Mega" Scale
    METHYL CHLORIDEMethyl Chloride From Methanol And Excess HCl In Liquid Phase
    METHYL METHACRYLATEMethyl Methacrylate From Acetone, HCN, And Sulfuric Acid
    METHYL METHACRYLATEMethyl Methacrylate From t-Butanol Via Methacrolein And Methacrylic Acid
    METHYL METHACRYLATEMMA Via Mitsubishi Technology (C2 Based)*
    METHYL METHACRYLATEMMA Via Lucite Technology (C3 Based)*
    METHYL METHACRYLATEMMA Via Asahi Technology (C3 Based)*
    METHYLAMINESMethylamines From Methanol And Ammonia
    METHYLAMINESMETHYLAMINES VIA THE NITTO CHEMICAL PROCESS
    4-METHYLPENTENE-14-METHYLPENTENE-1 FROM PROPYLENE BY DIMERIZATION
    4-MP-1/1-DECENE COPOLYMER4-METHYLPENTENE-1/1-DECENE BLOCK COPOLYMER PROCESS
    MONOSODIUM GLUTAMATE-H2OMONOSODIUM GLUTAMATE MONOHYDRATE FROM L-GLUTAMIC ACID
    MTBEMethyl t-Butyl Ether From A Cat-Cracked C4 Stream
    NAPHTHANaphtha From Crude Oil Including Extraction And Transportation
    NATURAL GASNatural Gas Recovery And Processing
    N-BUTANOLN-BUTANOL FROM N-BUTYRALDEHYDE BY TWO-STAGE HYDROGENATION
    N-BUTANOL+2-ETHYLHEXANOLn-Butanol And 2-Ethylhexanol From Propylene Via N-Butyraldehyde, Rh Catalyst
    N-BUTYL ACRYLATEn-Butyl Acrylate
    N-BUTYRALDEHYDEn-Butyraldehyde From Propylene (Water-Sol Rh Catalyst)
    N-BUTYRALDEHYDEN-BUTYRALDEHYDE FROM PROPYLENE BY THE PHOSPHITE PROCESS WITH C3 ABSORPTION
    NEAR ZERO SULFUR DIESELNear Zero Sulfur Diesel Hydrotreating
    NITRIC ACID (60%)Nitric Acid, 60%, From Ammonia By Catalytic Oxidation
    NITROBENZENENitrobenzene From Benzene By Conventional Nitration
    NITROBENZENENitrobenzene From Benzene By Adiabatic Nitration
    NITROGEN (95%)Nitrogen Of 95% Purity From Air By Pressure Swing Adsorption (PSA)
    NYLON 6 MELTNylon 6 Melt From Caprolactam For Direct Spinning
    NYLON 66 CHIPSNylon 66 Chips From Adipic Acid And Hexamethylenediamine
    NYLON CARPET YARNNylon Carpet Yarn From A Nylon Salt Aqueous Solution
    OLEFINS, LINEAR ALPHAOlefins, Linear Alpha, By Two-Stage Oligomerization-Displacement Process
    OLEFINS, LINEAR ALPHAOLEFINS, LINEAR ALPHA BY SABIC-LINDE PROCESS
    OLEFINS, LINEAR ALPHAOLEFINS, LINEAR ALPHA BY DUPONT PROCESS
    OXYGENOxygen Vapor Via Cryogenic Air Separation
    PBT PELLETS (30% GF)POLYBUTYLENE TEREPHTHALATE PELLETS, 30% GLASS-FILLED FROM PBT AND GLASS FIBERS
    PBT PELLETS (IV=0.85)POLYBUTYLENE TEREPHTHALATE PELLETS (IV=0.85) FROM DMT AND 1,4-BUTANEDIOL
    PBT PELLETS (IV>1.1)POLYBUTYLENE TEREPHTHALATE PELLETS (IV>1.1) FROM DMT AND 1,4-BUTANEDIOL
    PERACETIC ACIDPeracetic Acid From Acetaldehyde By Acid-Catalyzed Liquid-Phase Oxidation
    PERFLUORO(PROPYLVINYL ETHER)PERFLUORO(PROPYLVINYL ETHER) (PPVE) FROM TFE AND PENTAFLUOROPROPANOL BY DUPONT PROCESS
    PETPOLYETHYLENE TEREPHTHALATE SIMILAR TO EASTMAN CHEMICAL PROCESS
    PETPolyethylene Terephthalate By Conventional Melt-Phase Plus Solid-State Polymerization
    PET PELLETS (30% GF)POLYETHYLENE TEREPHTHALATE PELLETS, 30% GLASS-FILLED FROM PET AND GLASS FIBERS
    PET PELLETS (IV=0.6)Polyethylene Terephthalate Pellets (IV=0.6) From Terephthalic Acid And EG
    PET PELLETS (IV=0.6)POLYETHYLENE TEREPHTHALATE PELLETS (IV=0.6) FROM DMT AND EG
    PET PELLETS (IV=0.7)POLYETHYLENE TEREPHTHALATE PELLETS, BOTTLE GRADE (IV=0.72) FROM PET (IV=0.6)
    PET PELLETS (IV=0.8)POLYETHYLENE TEREPHTHALATE PELLETS, BOTTLE GRADE (IV=0.82) FROM PET (IV=0.6)
    PET PELLETS, (SPEC GRADE)POLYETHYLENE TEREPHTHALATE PELLETS, SPECIAL GRADE (IV=1.04) FROM PET(IV=0.6)
    PFA RESINPERFLUOROALKOXY COPOLYMER BY CONVENTIONAL AQUEOUS EMULSION POLYMERIZATION PROCESS
    PFA RESINPERFLUOROALKOXY COPOLYMER BY CONTINUOUS PRECIPITATION POLYMERIZATION PROCESS
    PHENOLPhenol (Acetone By-Product) From Cumene
    PHENOLPhenol By Liquid Phase Oxidation Of Toluene
    PHENOL-FORMALDEHYDEPhenol-Formaldehyde Resol Syrup, 50% Solids, Batch Process
    PHOSGENEPhosgene From Chlorine And Carbon Monoxide By Active Carbon Catalysis
    PHOSPHORIC ACID (WET)Phosphoric Acid By The Hemihydrate Wet Process
    PHOSPHORIC ACID (WET)PHOSPHORIC ACID BY THE DIHYDRATE WET PROCESS
    PHOSPHORIC ACID (WET)PHOSPHORIC ACID BY THE HEMIHYDRATE-DIHYDRATE WET PROCESS
    PHTHALIC ANHYDRIDEPhthalic Anhydride From O-Xylene In A Fixed-Bed Reactor (BASF)
    PL FILM, EVA AGRICULTURALPLASTIC FILM, EVA AGRICULTURAL, BY THE BUBBLE BLOWING PROCESS
    PL FILM, HDPE, BLOWNPLASTIC FILM, HDPE, BY THE BUBBLE BLOWING PROCESS
    PL FILM, LDPE, BLOWNPLASTIC FILM, LDPE, BY THE BUBBLE BLOWING PROCESS
    PL FILM, LLDPE, BLOWNPLASTIC FILM, LLDPE, BY THE BUBBLE BLOWING PROCESS
    PL FILM, PET, BIAX ORIENTEDPLASTIC FILM, PET, BIAXIALLY ORIENTED, BY CHILL-ROLL CASTING AND TENTERING PROCESS
    PL FILM, PET, MICROPOROUSPLASTIC FILM, PET, MICROPOROUS, BY THE ICI PROCESS
    PL FILM, POLYCARBONATEPLASTIC FILM, POLYCARBONATE, BY THE MELT EXTRUSION-CASTING PROCESS
    PL FILM, PP, BIAX ORIENTEDPLASTIC FILM, PP, BIAXIALLY ORIENTED, BY CHILL-ROLL CASTING AND TENTERING PROCESS
    PL FILM, PP, MICROPOROUSPLASTIC FILM, PP, MICROPOROUS, BY THE MOBIL OIL PROCESS
    PL FILM, PP, UNORIENTEDPLASTIC FILM, PP, UNORIENTED, BY THE CHILL-ROLL CASTING PROCESS
    PL FILM, PVC AGRICULTURALPLASTIC FILM, PVC AGRICULTURAL, BY THE BUBBLE BLOWING PROCESS
    P-METHYLSTYRENEp-Methylstyrene From Toluene And Ethylene Via p-Ethyltoluene
    P-NONYLPHENOLP-NONYLPHENOL FROM NONENE AND PHENOL BY A BORON TRIFLUORIDE CATALYZED PROCESS
    POLY(STYR-DVB) (4% DVB)POLYSTYRENE BEADS, GEL-TYPE(4% DVB) PROCESS
    POLY(STYR-DVB) (8% DVB)POLYSTYRENE BEADS, GEL-TYPE (8% DVB) PROCESS
    POLY(STYR-DVB) (8% DVB)MPPOLYSTYRENE BEADS, MACRPOROUS (8% DVB) PROCESS
    POLYACRYLATE LATEXPOLYACRYLATE (EA-MMA-MAC) RESIN LATEX BY EMULSION POLYMERIZATION
    POLYACRYLATE LATEXPOLYACRYLATE (MMA-BA-HEMA-AA) LATEX BY EMULSION POLYMERIZATION
    POLYACRYLATE PELLETSPOLYACRYLATE (MMA-EA) PELLETS BY SUSPENSION POLYMERIZATION
    POLYACRYLATE PELLETSPOLYACRYLATE (MMA-MA-ST) PELLETS BY SUSPENSION POLYMERIZATION
    POLYACRYLATE RESINPOLYACRYLATE (MMA-EMA-MAC) RESIN BY SOLUTION POLYMERIZATION
    POLYACRYLATE RESINPOLYACRYLATE (MMA-EA-HEMA) RESIN BY SOLUTION POLYMERIZATION
    POLYARYLATEPOLYARYLATE FROM BISPHENOL A, ISO- AND TEREPHTHALIC ACIDS VIA BPA DIACETATE
    POLYARYLATEPOLYARYLATE FROM DIPHENYL TERE- AND ISO- PHTHALATE AND BPA BY MELT POLYMERIZATION
    POLYARYLATEPOLYARYLATE FROM TEREPHTHALOYL CHLORIDE, ISOPHTHALOYL CHLORIDE, AND BISPHENOL A
    POLYBUTADIENEPolybutadiene By Lithium-Catalyzed Polymerization
    POLYBUTENE-1POLYBUTENE-1 BY BULK POLYMERIZATION
    POLYCARBONATEPolycarbonate, Batch Interfacial Process With C7 Antisolvent Polymer Recovery
    POLYCARBONATEPolycarbonate, Batch Interfacial Process With Polymer Recovery From Aqueous Phase
    POLYCARBONATEPolycarbonate, Batch Interfacial Process With Polymer Recovery From Toluene Phase
    POLYCARBONATEPolycarbonate, Batch Interfacial Process With Recycle Of Saturated Salt Solution
    POLYETHERETHERKETONEPOLYETHERETHERKETONE FROM HYDROQUINONE AND 4,4-METHYLENE DIANILINE (MDA)
    POLYETHERIMIDEPOLYETHERIMIDE FROM PHTHALIC ANHYDRIDE, BISPHENOL A, AND M-PHENYLENE DIAMINE
    POLYETHERSULFONEPOLYETHERSULFONE FROM 4,4-DICHLORODIPHENYL SULFONE
    POLYETHYLENE, HDPolyethylene, High Density, By Gas Phase Fluidized-Bed Process (UCC)
    POLYETHYLENE, HDPolyethylene, High Density, By A Loop Reactor Process (Phillips)
    POLYETHYLENE, HDPolyethylene, High Density, By A Medium Pressure Solution Process (Du Pont)
    POLYETHYLENE, HDPolyethylene, High Density, By A Stirred-Tank Heavy Diluent Prodess
    POLYETHYLENE, HDPolyethylene, HDPE, By Chevron-Phillips Slurry Double-Tube Loop Reactor
    POLYETHYLENE, LDLDPE Production By A High-Pressure Tubular Process Similar To ExxonMobil Process
    POLYETHYLENE, LDLDPE Production By A High-Pressure Tubular Process Similar To Sabtec CTR Process
    POLYETHYLENE, LDLDPE By A High Pressure Autoclave Process
    POLYETHYLENE, LDPOLYETHYLENE, LD BY THE LOOP REACTOR PROCESS ISOBUTANE DILUENT
    POLYETHYLENE, LDPOLYETHYLENE, LD BY THE LOOP REACTOR PROCESS PROPANE DILUENT
    POLYETHYLENE, LLDLLDPE Production By A Solution Process Similar To Nova Chemicals Advanced Sclairtech Process
    POLYETHYLENE, LLDPolyethylene, Linear LDPE, By A Himont Type Process
    POLYETHYLENE, LLDPolyethylene, Linear LDPE, By A Low Pressure Solution Process (Mitsui)
    POLYETHYLENE, LLDPolyethylene, LLDPE, By Slurry Process- Stirred-Tank Reactors With A Single-Site Catalyst
    POLYETHYLENE, LLDPolyethylene, LLDPE, Slurry Process- Double-Tube Loop Single Site Cat. Organo-Aluminoxy Comp.
    POLYETHYLENE, VERY LDPolyethylene, Very LDPE, By High Pressure Tubular Reactor Process Using Exxpol
    POLYETHYLENE, VERY LDPolyethylene, Very LDPE, By High Pressure Autoclave Reactor Process Using Exxpol
    POLYETHYLENE, VERY LDPolyethylene, Very LDPE, By High Pressure Autoclave Reactor Process (CDF)
    POLYETHYLENE, VERY LDPolyethylene, Very LDPE, By Low Pressure Adiabatic Solution Process
    POLYETHYLENE,CHLORINATEDPOLYETHYLENE, CHLORINATED, BY A BATCH SLURRY PROCESS
    POLYGASOLINEC3-C4 Oligomerization
    POLYMETHYLMETHACRYLATE(Meth)Acrylic Resin Pellets By A Continuous Bulk Polymerization Process
    POLYOL, POLYESTERPOLYOL FOR POLYURETHANES, POLYESTER FROM PET SCRAP AND PHTHALIC ANHYDRIDE
    POLYOL, POLYETHERPOLYOL FOR POLYURETHANES, POLYETHER FROM MANNICH CONDENSATE AND PROPYLENE OXIDE
    POLYOL, POLYMERICPOLYOL FOR POLYURETHANES, POLYMERIC, WITH DISPERSED POLYSTYRENE IN POLYOXYALKYLENE TRIOL
    POLYOL, POLYMERICPOLYOL FOR POLYURETHANES, POLYMERIC, WITH DISPERSED SAN COPOLYMER IN POLYOXYALKYLENE TRIOL
    POLYPHENYLENE OXIDE(MOD)POLYPHENYLENE OXIDE, MODIFIED FROM PPO AND HIGH IMPACT POLYSTYRENE
    POLYPROPYLENEPolypropylene By A Bulk Slurry Phase Loop Reactor Process
    POLYPROPYLENEPolypropylene Homopolymer By A Vertical Stirred Bed Gas Phase Process (BASF)
    POLYPROPYLENEPOLYPROPYLENE BY THE LOOP REACTOR PROCESS LOW TEMPERATURE (75°C [167°F])
    POLYPROPYLENEPOLYPROPYLENE BY THE LOOP REACTOR PROCESS SUPERCRITICAL (110°C [230°F])
    POLYPROPYLENE COPOLYMERPolypropylene Block Copolymer By A Gas Phase Process (Sumitomo)
    POLYPROPYLENE COPOLYMERPolypropylene Copolymer By A Horizontal Stirred Bed Gas Phase Process (Amoco/Chisso)
    POLYPROPYLENE COPOLYMERPolypropylene Copolymer By A Vertical Stirred Bed Gas Phase Process (BASF)
    POLYPROPYLENE COPOLYMERPolypropylene Copolymer By A Himont Type Process
    POLYSILICONPOLYSILICON BY SIEMENS PROCESS
    POLYSILICONPOLYSILICON BY FLUIDIZED BED PROCESS
    POLYSTYRENE, EXPPolystyrene, Expandable, By Batch Suspension Polymerization
    POLYSTYRENE, GPPolystyrene, General Purpose, By Continuous Bulk Polymerization
    POLYSTYRENE, GPPolystyrene, General Purpose, By The SDS Process
    POLYSTYRENE, HIPolystyrene, High Impact, By Continuous Bulk Polymerization
    POLYSTYRENE, HIPolystyrene, High Impact, By The SDS Process
    POLYSULFONEPOLYSULFONE FROM 4,4-DICHLORODIPHENYLSULFONE AND BISPHENOL A
    POLYTETRAFLUOROETHYLENEPOLYTETRAFLUOROETHYLENE DISPERSION FROM TFE BY EMULSTION POLYMERIZATION
    POLYTETRAFLUOROETHYLENEPOLYTETRAFLUOROETHYLENE FINE POWDER FROM TFE BY EMULSION POLYMERIZATION
    POLYTETRAFLUOROETHYLENEPOLYTETRAFLUOROETHYLENE FROM TFE BY SUSPENSION POLYMERIZATION-4 PRODUCTS
    POLYTETRAMETHYLENE ETHER GLYCOLPOLYTETRAMETHYLENE ETHER GLYCOL BY POLYMERIZATION AND HYDROLYSIS, FLUOROSULFONIC ACID CAT.
    POLYURETHANE FOAM BOARDPolyurethane Foam Boardstock (Rigid) From Reduced CFC Formulation
    POLYVINYL ACETATEPolyvinyl Acetate Beads By Suspension Polymerization
    POLYVINYL ACETATEPolyvinyl Acetate Pellets By Solution Polymerization
    POLYVINYL ACETATE LATEXPolyvinyl Acetate Latex By Emulsion Polymerization
    POLYVINYL CHLORIDEPolyvinyl Chloride By Bulk Polymerization
    POLYVINYL CHLORIDEPolyvinyl Chloride By Suspension Polymerization Update
    POLYVINYL CHLORIDEPolyvinyl Chloride By Bulk Polymerization Update
    POLYVINYL CHLORIDEPolyvinyl Chloride By Emulsion Polymerization
    POLYVINYLIDENE FLUORIDEPOLYVINYLIDENE FLUORIDE FROM VINYLIDENE FLUORIDE BY EMULSION POLYMERIZATION
    PRIMARY ALCOHOLS, C6-C20Alcohols, Primary Linear, C6-C20, By Ethylene Oligomerization
    1,3-PROPANEDIOL1,3-PROPANEDIOL FROM ACROLEIN
    1,3-PROPANEDIOL1,3-PROPANEDIOL FROM ETHYLENE OXIDE
    1,3-PROPANEDIOL1,3-PROPANEDIOL FROM GLUCOSE BY ANAEROBIC FERMENTATION
    1,3-PROPANEDIOL1,3-Propanediol From Whole Corn Biorefiner
    PROPYLENEPropylene, Polymer Grade, From Propane By Catalytic Dehydrogenation
    PROPYLENEPropylene, Polymer Grade, From Refinery Grade Propylene (66 Wt % C3H6)
    PROPYLENEPropylene, Polymer Grade, From Ethylene And Butylenes By Metathesis
    PROPYLENE IMPACT COPOLYMERPROPYLENE IMPACT COPOLYMER PRODUCTION BY BULK POLYMERIZATION PROCESS SIMILAR TO SPHERIPOL PP PROCESS
    PROPYLENE IMPACT COPOLYMERPROPYLENE IMPACT COPOLYMER PRODUCTION BY A GAS- PHASE PROCESS SIMILAR TO THE UNIPOL PP PROCESS
    PROPYLENE IMPACT COPOLYMERPROPYLENE IMPACT COPOLYMER PRODUCTION BY A GAS- PHASE PROCESS SIMILAR TO THE NOVOLEN PP PROCESS
    PROPYLENE IMPACT COPOLYMERPROPYLENE IMPACT COPOLYMER PRODUCTION BY A GAS- PHASE PROCESS SIMILAR TO THE SPHERIZONE PP PROCESS
    PROPYLENE OXIDEPropylene Oxide By The Conventional Chlorohydrin Process
    PROPYLENE, POLYMER GRADEPROPYLENE BY THE LURGI METHANOL TO PROPYLENE PROCESS
    PS BEADS, GT (4% DVB) CMPOLYSTYRENE BEADS, CHLOROMETHYLATED, GEL-TYPE (4% DVB) PROCESS
    PS BEADS, MP, GT (8% DVB) CMPOLYSTYRENE BEADS, CHLOROMETHYLATED, MACROPOROUS (8% DVB) PROCESS
    PTMEGPolytetramethylene Ether Glycol By Polymerization And Alcoholysis, Polyfluorosulfonic Acid Catalyst
    P-XYLENEp-Xylene From Heavy Reformate/Mstdp Xylene By Parex(R) Adsorption Process
    REFINERY PROPYLENERefinery Propylene From FCC
    REFORMATEBTX Reformate From Naphtha
    SAN RESINStyrene-Acrylonitrile Resin By Continuous Mass Polymerization
    SEC-BUTANOLSEC-BUTANOL FROM MTBE RAFFINATE BY DIRECT HYDRATION OF N-BUTENES
    SEC-BUTANOLSEC-BUTANOL FROM MTBE RAFFINATE BY SULFATION AND HYDROLYSIS OF N-BUTENES
    SODIUM TRIPOLYPHOSPHATESodium Tripolyphosphate From Wet Process Phosphoric Acid
    STYRENEStyrene From Benzene And Ethylene Via Vapor-Phase Alkyl & Adiabatic Dehydro
    STYRENE-BUTADIENE RUBBERStyrene-Butadiene Rubber By Emulsion Polymerization
    SUBTILISIN PROTEASESUBTILISIN PROTEASE FROM CORN STARCH, SOY FLOUR, AND SODIUM CASEINATE
    SULFURIC ACIDSulfuric Acid From Sulfur
    SYNTHESIS GAS (2:1)Synthesis Gas (2:1) From Bituminous Coal By Gasification
    SYNTHESIS GAS (2:1)Synthesis Gas (2:1) From Natural Gas By Partial Oxidation
    SYNTHESIS GAS (2:1)Synthesis Gas (2:1) From Natural Gas By Steam Reforming With CO2 Import
    SYNTHESIS GAS (2:1)Synthesis Gas (2:1) From Vacuum Residue By Partial Oxidation
    SYNTHESIS GAS (3:1)Synthesis Gas (3:1) From Natural Gas By Steam Reforming With CO2 Recycle
    T-BUTANOL (GASOLINE GRADE)t-Butanol (Gasoline Grade) From Mixed Butenes
    T-BUTANOL (GASOLINE GRADE)t-Butanol (Gasoline Grade) From Mixed Butenes
    TEREPHTHALIC ACIDTerephthalic Acid (High Purity) From P-Xylene By Bromine-Promoted Air Oxidation
    TEREPHTHALIC ACIDTerephthalic Acid, Purified, By The Conventional Catalytic Air Oxidation Process
    TEREPHTHALIC ACIDTEREPHTHALIC ACID, PURIFIED, SIMILAR TO EASTMAN CHEMICAL PROCESS
    TETRAHYDROFURANTetrahydrofuran From Maleic Acid
    TOLUENE DIISOCYANATEToluene Diisocyanate By Phosgenation
    UPGRADED METALLURGICAL SILICONPOLYSILICON BY UPGRADED METALLURGICAL GRADE SILICON
    UREA (AGRICULTURAL GRADE)Urea, Agricultural Grade, By The Stamicarbon Process
    UREA-FORMALDEHYDEUrea-Formaldehyde Molding Compound
    UREA-FORMALDEHYDE SYRUPUrea-Formaldehyde Resin Syrup, 65% Solids
    VINYL ACETATEVinyl Acetate From Acetylene And Acetic Acid
    VINYL ACETATEVinyl Acetate From Ethylene And Acetic Acid By Vapor Phase Process
    VINYL CHLORIDEVinyl Chloride By A Balanced Process With Heat And HCl Recovery (Oxy Vinyls)
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    Recycling programs using curbside collection typically displace less than 50% of new polyethylene terephthalate (PET). Community programs with plastic bottle take-back, mandated separate collection, or deposits on bottles tend to report much higher displacement rates. For regions that already have a recycling infrastructure, the aim should be to boost recycled PET (rPET) displacement of virgin PET (vPET) significantly above 50%. For countries with adequate space and little recycling infrastructure, disposing of bottles in landfill generates a lower carbon footprint than recycling or incineration. This report is an independent evaluation of the carbon footprint of PET bottles with an analysis of secondary packaging from cradle to grave and from production of raw materials through to disposal.

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    Carbon Footprint of Biofuels & Petrofuels

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