IMPACT World+: a globally regionalized life cycle impact assessment method

The International Journal of Life Cycle Assessment - Tập 24 Số 9 - Trang 1653-1674 - 2019
Cécile Bulle1, Manuele Margni2, Laure Patouillard2, Anne‐Marie Boulay3, Guillaume Bourgault3, Vincent De Bruille3, Viêt Cao3, Michael Zwicky Hauschild4, Andrew D. Henderson5, Sébastien Humbert6, Sormeh Kashef-Haghighi2, Anna Kounina6, Alexis Laurent4, Annie Levasseur3, Gladys Liard3, Ralph K. Rosenbaum7, Pierre‐Olivier Roy3, Shanna Shaked5, Peter Fantke4, Olivier Jolliet5
1CIRAIG, Department of Strategy and Corporate Social Responsibility, ESG UQAM, C.P. 8888, succ. Centre ville, Montréal, QC, H3C 3P8, Canada
2CIRAIG, Mathematical and Industrial Engineering Department, Polytechnique Montreal, C.P. 6079, succ. Centre-Ville, Montréal, QC, H3C 3A7, Canada
3CIRAIG, Department of Chemical Engineering, Polytechnique Montréal, C.P. 6079, succ. Centre-Ville, Montréal, QC, H3C 3A7, Canada
4Division for Quantitative Sustainability Assessment, Department of Management Engineering, Technical University of Denmark, Kgs. Lyngby, Denmark
5Department of Environmental Health Sciences, School of Public Health, University of Michigan, Ann Arbor, MI USA
6Quantis, EPFL Innovation Park, Bâtiment D, 1015, Lausanne, Switzerland
7ITAP, Irstea, Montpellier SupAgro, ELSA Research group and ELSA-PACT Industrial Chair, University of Montpellier, Montpellier, France

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Apte JS, Bombrun E, Marshall JD, Nazaroff WW (2012) Global intraurban intake fractions for primary air pollutants from vehicles and other distributed sources. Environ Sci Technol 46:3415–3423

Azevedo LB, De Schryver AM, Hendriks AJ, Huijbregts MA (2015) Calcifying species sensitivity distributions for ocean acidification. Environ Sci Technol 49:1495–1500

Bare J (2011) TRACI 2.0: the tool for the reduction and assessment of chemical and other environmental impacts 2.0. Clean Technol Environ 13:687–696

Boulay AM, Bouchard C, Bulle C, Deschênes L, Margni M (2011) Categorizing water for LCA inventory. Int J Life Cycle Assess 16:639–651

Boulay A-M, Motoshita M, Pfister S, Bulle C, Muñoz I, Franceschini H, Margni M (2015) Analysis of water use impact assessment methods (part A): evaluation of modeling choices based on a quantitative comparison of scarcity and human health indicators. Int J Life Cycle Assess 20:139–160

Boulay A-M et al (2018) Consensus-based water scarcity footprint method from WULCA: the AWARE model. Environ Sci Technol submitted 23:368–378

Chaudhary A, Verones F, de Baan L, Hellweg S (2015) Quantifying land use impacts on biodiversity: combining species—area models and vulnerability indicators. Environ Sci Technol 49:9987–9995

Curran M et al (2010) Toward meaningful end points of biodiversity in life cycle assessment. Environ Sci Technol 45:70–79

de Baan L, Alkemade R, Koellner T (2013) Land use impacts on biodiversity in LCA: a global approach. Int J Life Cycle Assess 18:1216–1230

de Bruille V (2014) Impact de l'utilisation des ressources minérales et métalliques dans un contexte cycle de vie : une approche fonctionnelle. Polytechnique Montreal, Montreal

De Schryver A, Brakkee K, Goedkoop M, Huijbregts M (2009) Characterization factors for global warming in life cycle assessment based on damages to humans and ecosystems. Environ Sci Technol 43:1689–169595

European Commission (2010) Framework and requirements for life cycle impact assessment models and indicators. European Commission - Joint Research Centre - Institute for Environment and Sustainability, Luxembourg

European Commission (2011) International reference life cycle data system (ILCD) handbook—recommendations for life cycle impact assessment in the European context, 1st edn. European commission - Joint Research Centre - Institute for Environment and Sustainability, Luxemburg

Fantke P, Jolliet O (2016) Life cycle human health impacts of 875 pesticides. Int J Life Cycle Assess 21:722–733

Fantke P, Charles R, de Alencastro LF, Friedrich R, Jolliet O (2011) Plant uptake of pesticides and human health: dynamic modeling of residues in wheat and ingestion intake. Chemosphere 85:1639–1647

Fantke P, Wieland P, Juraske R, Shaddick G, Itoiz ES, Friedrich R, Jolliet O (2012) Parameterization models for pesticide exposure via crop consumption. Environ Sci Technol 46:12864–12872

Fantke P, Jolliet O, Evans JS, Apte JS, Cohen AJ, Hänninen OO, Hurley F, Jantunen MJ, Jerrett M, Levy JI, Loh MM, Marshall JD, Miller BG, Preiss P, Spadaro JV, Tainio M, Tuomisto JT, Weschler CJ, McKone TE (2015) Health effects of fine particulate matter in life cycle impact assessment: findings from the Basel Guidance Workshop. Int J Life Cycle Assess 20:276–288

Fatemi F (2012) A novel methodology for the assessment of the direct and indirect impacts associated with the depletion of fossil resources in life cycle assessment. Polytechnique Montreal, Montreal

Flörke M, Kynast E, Bärlund I, Eisner S, Wimmer F, Alcamo J (2013) Domestic and industrial water uses of the past 60 years as a mirror of socio-economic development: a global simulation study. Glob Environ Chang 23:144–156 ecoinvent database (2003) http://www.ecoinvent.ch/

GEOSchem. http://wiki.seas.harvard.edu/geos-chem/index.php/Main_Page

Goedkoop M, De Schryver, A (2008) Mineral resource depletion in a life cycle impact assessment method which comprises harmonised category indicators at the midpoint and the endpoint level. Ruimte en milieu, ministerie van Volkshuisvesting, ruimtelijk ordening en milieubeheer

Goedkoop M, Spriensma R (2000) The eco-indicator 99—a damage oriented method for LCIA. Pre Consultants, Amersfoot

Goedkoop M, Heijungs R, Huijbregts M, De Schryver A, Struijs J, Van Zelm R (2009) ReCiPe 2008, a life cycle impact assessment method which comprises harmonised category indicators at the midpoint and the endpoint level. First edition. Report I: characterisation. Ministry of Housing, Spatial Planning and Environment, The Hague

Gronlund CJ, Humbert S, Shaked S, O’Neill MS, Jolliet O (2015) Characterizing the burden of disease of particulate matter for life cycle impact assessment. Air Qual Atmos Health 8:29–46

Guinée JB et al (2002) Handbook on life cycle assessment. Operational guide to the ISO standards. I: LCA in perspective. IIa: guide. IIb: operational annex. III: scientific background. Kluwer Academic Publishers, Dordrecht

Hanafiah M, Xenopoulos M, Pfister S, Leuven RS, Huijbregts M (2011) Characterization factors for water consumption and greenhouse gas emissions based on freshwater fish species extinction. Environ Sci Technol 45:5272–5278

Hauschild MZ, Wenzel H (1998) Environmental assessment of products. In: Scientific background, vol 2. Kluwer Academic Publishers, Hingham

Hauschild M et al (2008) Building a model based on scientific consensus for life cycle impact assessment of chemicals: the search for harmony and parsimony. Environ Sci Technol 42:7032–7037

Hauschild MZ, Goedkoop M, Guinée J, Heijungs R, Huijbregts M, Jolliet O, Margni M, de Schryver A, Humbert S, Laurent A, Sala S, Pant R (2013) Identifying best existing practice for characterization modeling in life cycle impact assessment. Int J Life Cycle Assess 18:683–697

Hellweg S, Demou E, Bruzzi R, Meijer A, Rosenbaum RK, Huijbregts MA, McKone TE (2009) Integrating human indoor air pollutant exposure within life cycle impact assessment. Environ Sci Technol 43:1670–1679

Helmes RJ, Huijbregts MA, Henderson AD, Jolliet O (2012) Spatially explicit fate factors of phosphorous emissions to freshwater at the global scale. Int J Life Cycle Assess 17:646–654

Hernández-Padilla F, Margni M, Noyola A, Guereca-Hernandez L, Bulle C (2017) Assessing wastewater treatment in Latin America and the Caribbean: enhancing life cycle assessment interpretation by regionalization and impact assessment sensibility. J Clean Prod 142:2140–2153

Hodas N et al. (2015) Indoor inhalation intake fractions of fine particulate matter: review of influencing factors Indoor air. International Journal of Indoor Environment and Health 26:836–856

Huijbregts MAJ, Rombouts LJA, Ragas AMJ, van de Meent D (2005) Human-toxicological effect and damage factors of carcinogenic and noncarcinogenic chemicals for life cycle impact assessment. Integr Environ Assess Manag 1:181–244

Humbert S, Maendly R (2009) Characterization factors for damage to aquatic biodiversity caused by water use especially from dams used for hydropower LCA IX, Boston, September 2009

Humbert S, Marshall JD, Shaked S, Spadaro JV, Nishioka Y, Preiss P, McKone TE, Horvath A, Jolliet O (2011) Intake fraction for particulate matter: recommendations for life cycle impact assessment. Environ Sci Technol 45:4808–4816

ISO (2018) ISO/TS 14067:2018—greenhouse gases—carbon footprint of products—requirements and guidelines for quantification and communication

ISO (2014) ISO 14046:2014—environmental management—water footprint—principles, requirements and guidelines

Itsubo N, Inaba A (2012) LIME2 life-cycle impact assessment method based on endpoint modeling JLCA news—life cycle assessment society of Japan 12:2–21

Jolliet O, Margni M, Charles R, Humbert S, Payet J, Rebitzer G, Rosenbaum R (2003) IMPACT 2002+: a new life cycle impact assessment methodology. Int J Life Cycle Assess 8:324–330

Jolliet O et al (2014) Global guidance on environmental life cycle impact assessment indicators: findings of the scoping phase. Int J Life Cycle Assess 19:962–967

Joos F, Roth R, Fuglestvedt JS, Peters GP, Enting IG, von Bloh W, Brovkin V, Burke EJ, Eby M, Edwards NR, Friedrich T, Frölicher TL, Halloran PR, Holden PB, Jones C, Kleinen T, Mackenzie FT, Matsumoto K, Meinshausen M, Plattner GK, Reisinger A, Segschneider J, Shaffer G, Steinacher M, Strassmann K, Tanaka K, Timmermann A, Weaver AJ (2013) Carbon dioxide and climate impulse response functions for the computation of greenhouse gas metrics: a multi-model analysis. Atmos Chem Phys 13:2793–2825

Koellner T et al (2012) UNEP-SETAC guideline on global land use impact assessment on biodiversity and ecosystem services in LCA. Int J Life Cycle Assess 18:1188–1202

Kounina A, Margni M, Bayart JB, Boulay AM, Berger M, Bulle C, Frischknecht R, Koehler A, Milà i Canals L, Motoshita M, Núñez M, Peters G, Pfister S, Ridoutt B, van Zelm R, Verones F, Humbert S (2013) Review of methods addressing freshwater use in life cycle inventory and impact assessment. Int J Life Cycle Assess 18:707–721

Kounina A, Margni M, Shaked S, Bulle C, Jolliet O (2014) Spatial analysis of toxic emissions in LCA: a sub-continental nested USEtox model with freshwater archetypes. Environ Int 69:67–89

Levasseur A, de Schryver A, Hauschild M, Kabe Y, Sahnoune A, Tanaka K, Cherubini F (2016) Greenhouse gas emissions and climate change impacts. In: Frischknecht R, Jolliet O (eds) Global guidance for life cycle impact assessment indicators, vol 1. United Nations Environment Programme, Nairobi

Margni M et al (2008) Guidance on how to move from current practice to recommended practice in life cycle impact assessment. UNEP-SETAC Life Cycle Initiative. https://www.lifecycleinitiative.org/wp-content/uploads/2012/12/2008%20-%20Guidance%20to%20move%20to%20LCA.pdf . Accessed 15 Jan 2019

Mathers C, Doris MF, Jan TB (2008) The global burden of disease: 2004 update

Myhre G et al (2013) Anthropogenic and natural radiative forcing climate change 2013: the physical science basis. Contribution of Working Group I to the Fifth Assessment Report 576 of the Intergovernmental Panel on Climate Change

Patouillard L, Bulle C, Margni M (2016) Ready-to-use and advanced methodologies to prioritise the regionalisation effort in LCA. Mater Tech 104:105

Ridoutt B, Fantke P, Pfister S, Bare J, Boulay AM, Cherubini F, Frischknecht R, Hauschild M, Hellweg S, Henderson A, Jolliet O, Levasseur A, Margni M, McKone T, Michelsen O, Milà i Canals L, Page G, Pant R, Raugei M, Sala S, Saouter E, Verones F, Wiedmann T (2015) Making sense of the minefield of footprint indicators. Environ Sci Technol 49:2601–2603

Ridoutt BG, Pfister S, Manzardo A, Bare J, Boulay AM, Cherubini F, Fantke P, Frischknecht R, Hauschild M, Henderson A, Jolliet O, Levasseur A, Margni M, McKone T, Michelsen O, Milà i Canals L, Page G, Pant R, Raugei M, Sala S, Verones F (2016) Area of concern: a new paradigm in life cycle assessment for the development of footprint metrics. Int J Life Cycle Assess 21:276–280

Rosenbaum RK (2018) Overview of existing LCIA methods—Annex to Chapter 10. In: Hauschild MZA, Olsen SI (eds) Life cycle assessment—theory and practice. Spinger, Heildelberg

Rosenbaum R et al (2008) USEtox—the UNEP-SETAC toxicity model: recommended characterisation factors for human toxicity and freshwater ecotoxicity in life cycle impact assessment. Int J Life Cycle Assess 13:532–546

Rosenbaum R et al (2011) USEtox human exposure and toxicity factors for comparative assessment of toxic emissions in life cycle analysis: sensitivity to key chemical properties. Int J Life Cycle Assess 16:710–727

Rosenbaum RK, Meijer A, Demou E, Hellweg S, Jolliet O, Lam NL, Margni M, McKone TE (2015) Indoor air pollutant exposure for life cycle assessment: regional health impact factors for households. Environ Sci Technol 49:12823–12831

Roy P-O, Deschênes L, Margni M (2012a) Life cycle impact assessment of terrestrial acidification: modeling spatially explicit soil sensitivity at the global scale. Environ Sci Technol 46:8270–8278

Roy P-O, Huijbregts M, Deschênes L, Margni M (2012b) Spatially-differentiated atmospheric source–receptor relationships for nitrogen oxides, sulfur oxides and ammonia emissions at the global scale for life cycle impact assessment. Atmos Environ 62:74–81

Roy P-O, Azevedo LB, Margni M, van Zelm R, Deschênes L, Huijbregts MA (2014a) Characterization factors for terrestrial acidification at the global scale: a systematic analysis of spatial variability and uncertainty. Sci Total Environ 500:270–276

Roy P-O, Dechênes L, Margni M (2014b) Uncertainty and spatial variability in characterization factors for aquatic acidification at the global scale. Int J Life Cycle Assess 19:882–890

Steen B (1999) A systematic approach to environmental priority strategies in product development (EPS)—version 2000—models and data of the default method. Chalmers University of Technology, Gothenburg

Stewart M, Weidema B (2005) A consistent framework for assessing the impact from resource use—a focus on functionality. Int J Life Cycle Assess 10:240–247

Tirado-Seco P (2005) Development of damage functions for aquatic eutrophication in life cycle assessment. Université de Genève, Geneva

Toffoletto L, Bulle C, Godin J, Reid C, Deschênes L (2007) LUCAS—a new LCIA method used for a Canadian-specific context. Int J Life Cycle Assess 12:93–102

Udo de Haes H et al (2002) Life cycle impact assessment: striving towards best practice SETAC Press Proceedings

UNEP (2016) Global guidance for life cycle impact assessment indicators—volume 1. SETAC, UNEP/SETAC Life Cycle Initiative: 159

Van Oers L, De Koning A, Guinée JB (2002) Abiotic resource depletion in LCA; improving characterisation factors abiotic resource depletion as recommended in the new Dutch LCA handbook

van Zelm R, Huijbregts MAJ, den Hollander HA, van Jaarsveld HA, Sauter FJ, Struijs J, van Wijnen HJ, van de Meent D (2008) European characterization factors for human health damage of PM 10 and ozone in life cycle impact assessment. Atmos Environ 42:441–453

van Zelm R, Schipper A, Rombouts M, Snepvangers J, Huijbregts M (2011) Implementing groundwater extraction in life cycle impact assessment: characterization factors based on plant species richness for the Netherlands. Environ Sci Technol 45:629–635

Verones F, Hanafiah MM, Pfister S, Huijbregts MAJ, Pelletier GJ, Koehler A (2010) Characterization factors for thermal pollution in freshwater aquatic environments. Environ Sci Technol 44:9364–9369

Verones F, Bare J, Bulle C, Frischknecht R, Hauschild M, Hellweg S, Henderson A, Jolliet O, Laurent A, Liao X, Lindner JP, Maia de Souza D, Michelsen O, Patouillard L, Pfister S, Posthuma L, Prado V, Ridoutt B, Rosenbaum RK, Sala S, Ugaya C, Vieira M, Fantke P (2017) LCIA framework and cross-cutting issues guidance within the UNEP-SETAC Life Cycle Initiative. J Clean Prod 161:957–967

Wegener Sleeswijk A, van Oers LFCM, Guinée JB, Struijs J, Huijbregts MAJ (2008) Normalisation in product life cycle assessment: an LCA of the global and European economic systems in the year 2000. Sci Total Environ 390:227–240

Weidema BP, Hauschild MZ, Jolliet O (2006) Preparing characterisation methods for endpoint impact assessment (previously submitted under the title: “Stepwise 2006 - a new environmental impact assessment method”)

Wenger Y, Li D, Jolliet O (2012) Indoor intake fraction considering surface sorption of air organic compounds for life cycle assessment. Int J Life Cycle Assess 17:919–931

WHO (2003) Climate change and human health: risks and responses. World Health Organization, Geneva

WMO (World Meteorological Organization) (2014) Assessment for decision-makers: scientific assessment of ozone depletion—global ozone research and monitoring project—report no. 56. WMO (World Meteorological Organization), Geneva 88 pp