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Erschienen in: The International Journal of Life Cycle Assessment 10/2015

01.10.2015 | LAND USE IN LCA

Attributional life cycle assessment: is a land-use baseline necessary?

verfasst von: Sampo Soimakallio, Annette Cowie, Miguel Brandão, Göran Finnveden, Tomas Ekvall, Martin Erlandsson, Kati Koponen, Per-Erik Karlsson

Erschienen in: The International Journal of Life Cycle Assessment | Ausgabe 10/2015

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Abstract

Purpose

This paper aims to clarify the application of a land-use baseline in attributional life cycle assessment (ALCA) for product systems involving land use, through consideration of the fundamental purpose of ALCA. Currently, there is no clear view in the literature whether a baseline should be used when accounting for environmentally relevant physical flows related to land use.

Methods

An extensive search of literature was carried out using the key terms ‘attributional life cycle assessment’ and ‘attributional LCA’ in the Google Scholar web search engine. Approximately 700 publications were reviewed and summarised according to their type and scope, relevance of land use, key statements and references given for ALCA, and arguments for and against using a baseline in ALCA. Based on the literature review and supplementary literature references, a critical discussion on the use of a baseline and determination of the most appropriate land-use baseline in ALCA is provided.

Results and discussion

A few studies clearly argued that only absolute (observable) flows without a baseline are to be inventoried in ALCA, while the majority of the studies did not make any clear statement for or against. On the other hand, a land-use baseline was explicitly applied or proposed in a minority of the studies only, despite the fact that we classified land use as highly relevant for the majority of the studies reviewed. Furthermore, the LCA guidelines reviewed give contradictory recommendations. The most cited studies for the definition of ALCA provide general rules for selecting processes based on observable flows but do not argue that observable flows necessarily describe the environmentally relevant physical flows.

Conclusions

We conclude that a baseline is required to separate the studied parts of the technosphere from natural processes and to describe the impact of land use on ecosystem quality, such as carbon sequestration and biodiversity. The most coherent baseline for human-induced land-use in ALCA is natural regeneration. As the natural-regeneration baseline has typically been excluded, may vary bio-geographically and temporally, and is subject to uncertainties, case studies applying it should be performed so that implications can be studied and evaluated. This is particularly important for agricultural and forestry systems, such as food, feed, fibre, timber and biofuels.

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1
For a comprehensive consequential assessment of UK land-use strategies, see Brandão (2012).
 
Literatur
Zurück zum Zitat Arm M, Wik O, Engelse CJ, Erlandsson M, Sundqvist J, Oberender A, Hjelmar O, Wahlström M (2014) ENCORT-CDW : evaluation of the European recovery target for construction and demolition waste. Nordic Working Papers, 2014:916 Arm M, Wik O, Engelse CJ, Erlandsson M, Sundqvist J, Oberender A, Hjelmar O, Wahlström M (2014) ENCORT-CDW : evaluation of the European recovery target for construction and demolition waste. Nordic Working Papers, 2014:916
Zurück zum Zitat Baumann H, Tillman A (2004) The Hitch Hiker's guide to LCA: an orientation in life cycle assessment methodology and applications. Studentlitteratur, Lund Baumann H, Tillman A (2004) The Hitch Hiker's guide to LCA: an orientation in life cycle assessment methodology and applications. Studentlitteratur, Lund
Zurück zum Zitat Beccali M, Cellura M, Finocchiaro P, Guarino F, Longo S, Nocke B (2014) Life cycle performance assessment of small solar thermal cooling systems and conventional plants assisted with photovoltaics. Sol Energy 104:93–102CrossRef Beccali M, Cellura M, Finocchiaro P, Guarino F, Longo S, Nocke B (2014) Life cycle performance assessment of small solar thermal cooling systems and conventional plants assisted with photovoltaics. Sol Energy 104:93–102CrossRef
Zurück zum Zitat Bellassen V, Luyssaert S (2014) Carbon sequestration: managing forests in uncertain times. Nature 506:153–155CrossRef Bellassen V, Luyssaert S (2014) Carbon sequestration: managing forests in uncertain times. Nature 506:153–155CrossRef
Zurück zum Zitat Brandão M (2012) Food, feed, fuel, timber or carbon sink? towards sustainable land use: a consequential life cycle approach. PhD thesis. Centre for Environmental Strategy (Division of Civil, Chemical and Environmental Engineering), Faculty of Engineering and Physical Sciences, University of Surrey, UK. 246 pp. Appendices 541 pp Brandão M (2012) Food, feed, fuel, timber or carbon sink? towards sustainable land use: a consequential life cycle approach. PhD thesis. Centre for Environmental Strategy (Division of Civil, Chemical and Environmental Engineering), Faculty of Engineering and Physical Sciences, University of Surrey, UK. 246 pp. Appendices 541 pp
Zurück zum Zitat Brandão M, i Canals LM (2013) Global characterisation factors to assess land use impacts on biotic production. Int J Life Cycle Assess 18:1243–1252CrossRef Brandão M, i Canals LM (2013) Global characterisation factors to assess land use impacts on biotic production. Int J Life Cycle Assess 18:1243–1252CrossRef
Zurück zum Zitat Cellura M, Longo S, Marsala G, Mistretta M, Pucci M (2013) The use of genetic algorithms to solve the allocation problems in the life cycle inventory. In: Assessment and simulation tools for sustainable energy systems. Springer, pp 267–284 Cellura M, Longo S, Marsala G, Mistretta M, Pucci M (2013) The use of genetic algorithms to solve the allocation problems in the life cycle inventory. In: Assessment and simulation tools for sustainable energy systems. Springer, pp 267–284
Zurück zum Zitat Cherubini F, Peters GP, Berntsen T, Strømman AH, Hertwich E (2011) CO2 emissions from biomass combustion for bioenergy: atmospheric decay and contribution to global warming. Glob Chang Biol Bioenergy 3:413–426CrossRef Cherubini F, Peters GP, Berntsen T, Strømman AH, Hertwich E (2011) CO2 emissions from biomass combustion for bioenergy: atmospheric decay and contribution to global warming. Glob Chang Biol Bioenergy 3:413–426CrossRef
Zurück zum Zitat Cherubini F, Jungmeier G, Bird DN (2012) Greenhouse Gas (GHG) and energy analysis of a bioethanol oriented biorefinery based on wood. In: IEA Bioenergy Task (Vol. 38). task38.org/Bioref_Case_Study_T38_Long_v4_clean.pdf. Accessed 14 June 2014 Cherubini F, Jungmeier G, Bird DN (2012) Greenhouse Gas (GHG) and energy analysis of a bioethanol oriented biorefinery based on wood. In: IEA Bioenergy Task (Vol. 38). task38.org/Bioref_Case_Study_T38_Long_v4_clean.pdf. Accessed 14 June 2014
Zurück zum Zitat Cherubini F, Guest G, Strømman AH (2013) Bioenergy from forestry and changes in atmospheric CO 2: reconciling single stand and landscape level approaches. J Environ Manag 129:292–301CrossRef Cherubini F, Guest G, Strømman AH (2013) Bioenergy from forestry and changes in atmospheric CO 2: reconciling single stand and landscape level approaches. J Environ Manag 129:292–301CrossRef
Zurück zum Zitat Chiarucci A, Araújo MB, Decocq G, Beierkuhnlein C, Fernández-Palacios JM (2010) The concept of potential natural vegetation: an epitaph? J Veg Sci 21:1172–1178CrossRef Chiarucci A, Araújo MB, Decocq G, Beierkuhnlein C, Fernández-Palacios JM (2010) The concept of potential natural vegetation: an epitaph? J Veg Sci 21:1172–1178CrossRef
Zurück zum Zitat Curran MA, Mann M, Norris G (2002) Report on the international workshop on electricity data for life cycle inventories. EPA/600/R-02/041. Cincinnati, OH: US EPA National Risk Management Research Laboratory. March. nepis.epa.gov/Adobe/PDF/P1001NRO.pdf. Accessed 24 January 2014 Curran MA, Mann M, Norris G (2002) Report on the international workshop on electricity data for life cycle inventories. EPA/600/R-02/041. Cincinnati, OH: US EPA National Risk Management Research Laboratory. March. nepis.epa.gov/Adobe/PDF/P1001NRO.pdf. Accessed 24 January 2014
Zurück zum Zitat Curran MA, Mann M, Norris G (2005) The international workshop on electricity data for life cycle inventories. J Clean Prod 13:853–862CrossRef Curran MA, Mann M, Norris G (2005) The international workshop on electricity data for life cycle inventories. J Clean Prod 13:853–862CrossRef
Zurück zum Zitat de Baan L, Alkemade R, Koellner T (2013) Land use impacts on biodiversity in LCA: a global approach. Int J Life Cycle Assess 18:1216–1230CrossRef de Baan L, Alkemade R, Koellner T (2013) Land use impacts on biodiversity in LCA: a global approach. Int J Life Cycle Assess 18:1216–1230CrossRef
Zurück zum Zitat Ekvall T (2002) Cleaner production tools: LCA and beyond. J Clean Prod 10:403–406CrossRef Ekvall T (2002) Cleaner production tools: LCA and beyond. J Clean Prod 10:403–406CrossRef
Zurück zum Zitat Ekvall T, Andrae A (2006) Attributional and consequential environmental assessment of the shift to lead-free solders (10 pp). Int J Life Cycle Assess 11:344–353CrossRef Ekvall T, Andrae A (2006) Attributional and consequential environmental assessment of the shift to lead-free solders (10 pp). Int J Life Cycle Assess 11:344–353CrossRef
Zurück zum Zitat Ekvall T, Tillman A (1997) Open-loop recycling: criteria for allocation procedures. Int J Life Cycle Assess 2:155–162CrossRef Ekvall T, Tillman A (1997) Open-loop recycling: criteria for allocation procedures. Int J Life Cycle Assess 2:155–162CrossRef
Zurück zum Zitat Ekvall T, Weidema BP (2004) System boundaries and input data in consequential life cycle inventory analysis. Int J Life Cycle Assess 9:161–171CrossRef Ekvall T, Weidema BP (2004) System boundaries and input data in consequential life cycle inventory analysis. Int J Life Cycle Assess 9:161–171CrossRef
Zurück zum Zitat Elshout P, van Zelm R, Balkovic J, Obersteiner M, Schmid E, Skalsky R, van der Velde M, Huijbregts MAJ (2015) Greenhouse-gas payback times for crop-based biofuels. Nature Clim Change 5:604--610 Elshout P, van Zelm R, Balkovic J, Obersteiner M, Schmid E, Skalsky R, van der Velde M, Huijbregts MAJ (2015) Greenhouse-gas payback times for crop-based biofuels. Nature Clim Change 5:604--610
Zurück zum Zitat EU (2009) Directive of the European Parliament and of the Council on the promotion of the use of energy from renewable sources. 2009/28/EC. The Official Journal of the European Union 05/06/2009 EU (2009) Directive of the European Parliament and of the Council on the promotion of the use of energy from renewable sources. 2009/28/EC. The Official Journal of the European Union 05/06/2009
Zurück zum Zitat Evangelisti S, Lettieri P, Borello D, Clift R (2014) Life cycle assessment of energy from waste via anaerobic digestion: a UK case study. Waste Manag 34:226–237CrossRef Evangelisti S, Lettieri P, Borello D, Clift R (2014) Life cycle assessment of energy from waste via anaerobic digestion: a UK case study. Waste Manag 34:226–237CrossRef
Zurück zum Zitat Evangelisti S, Lettieri P, Clift R, Borello D (2015) Distributed generation by energy from waste technology: a life cycle perspective. Process Saf Environ Protect 93:161–172CrossRef Evangelisti S, Lettieri P, Clift R, Borello D (2015) Distributed generation by energy from waste technology: a life cycle perspective. Process Saf Environ Protect 93:161–172CrossRef
Zurück zum Zitat Finnveden G, Hauschild MZ, Ekvall T, Guinée J, Heijungs R, Hellweg S, Koehler A, Pennington D, Suh S (2009) Recent developments in life cycle assessment. J Environ Manag 91:1–21CrossRef Finnveden G, Hauschild MZ, Ekvall T, Guinée J, Heijungs R, Hellweg S, Koehler A, Pennington D, Suh S (2009) Recent developments in life cycle assessment. J Environ Manag 91:1–21CrossRef
Zurück zum Zitat Goel P (2013) Land use in LCA: a critical analysis. Master's thesis, Leiden University Goel P (2013) Land use in LCA: a critical analysis. Master's thesis, Leiden University
Zurück zum Zitat Guinée JB (2002) Handbook on life cycle assessment operational guide to the ISO standards. Int J Life Cycle Assess 7:311–313CrossRef Guinée JB (2002) Handbook on life cycle assessment operational guide to the ISO standards. Int J Life Cycle Assess 7:311–313CrossRef
Zurück zum Zitat Guinée J, Kleijn R, Henriksson P (2010) Environmental life cycle assessment of South-East Asian aquaculture systems for tilapia, pangasius, catfish, penaeid shrimp and macrobrachium prawns. Goal & Scope Definition Report-Final version.Sustaining Ethical Aquaculture Trade (SEAT) Deliverable Ref: D 2 Guinée J, Kleijn R, Henriksson P (2010) Environmental life cycle assessment of South-East Asian aquaculture systems for tilapia, pangasius, catfish, penaeid shrimp and macrobrachium prawns. Goal & Scope Definition Report-Final version.Sustaining Ethical Aquaculture Trade (SEAT) Deliverable Ref: D 2
Zurück zum Zitat Guo M, Li C, Bell JNB, Murphy RJ (2011) Influence of agro-ecosystem modeling approach on the greenhouse gas profiles of wheat-derived biopolymer products. Environ Sci Technol 46:320–330CrossRef Guo M, Li C, Bell JNB, Murphy RJ (2011) Influence of agro-ecosystem modeling approach on the greenhouse gas profiles of wheat-derived biopolymer products. Environ Sci Technol 46:320–330CrossRef
Zurück zum Zitat Haberl H (2013) Net land-atmosphere flows of biogenic carbon related to bioenergy: towards an understanding of systemic feedbacks. Glob Chang Biol Bioenergy 5:351–357CrossRef Haberl H (2013) Net land-atmosphere flows of biogenic carbon related to bioenergy: towards an understanding of systemic feedbacks. Glob Chang Biol Bioenergy 5:351–357CrossRef
Zurück zum Zitat Haberl H, Erb KH, Krausmann F, Gaube V, Bondeau A, Plutzar C, Gingrich S, Lucht W, Fischer-Kowalski M (2007) Quantifying and mapping the human appropriation of net primary production in earth's terrestrial ecosystems. Proc Natl Acad Sci U S A 104:12942–12947CrossRef Haberl H, Erb KH, Krausmann F, Gaube V, Bondeau A, Plutzar C, Gingrich S, Lucht W, Fischer-Kowalski M (2007) Quantifying and mapping the human appropriation of net primary production in earth's terrestrial ecosystems. Proc Natl Acad Sci U S A 104:12942–12947CrossRef
Zurück zum Zitat Heath LS, Maltby V, Miner R, Skog KE, Smith JE, Unwin J, Upton B (2010) Greenhouse gas and carbon profile of the US forest products industry value chain. Environ Sci Technol 44:3999–4005CrossRef Heath LS, Maltby V, Miner R, Skog KE, Smith JE, Unwin J, Upton B (2010) Greenhouse gas and carbon profile of the US forest products industry value chain. Environ Sci Technol 44:3999–4005CrossRef
Zurück zum Zitat Heijungs R, Guinée JB (2014) Life cycle impact assessment. Life Cycle Assess (LCA):90 Heijungs R, Guinée JB (2014) Life cycle impact assessment. Life Cycle Assess (LCA):90
Zurück zum Zitat Heijungs R, Guinée JB, Huppes G, Lankreijer RM, Udo de Haes HA, Wegener Sleeswijk A, Ansems AMM, Eggels PG, van Duin R, de Goede HP (1992) Environmental life cycle assessment of products. Guide and backgrounds. NOH reports 9266 & 9267 Leiden: CML 96pp + 130pp Guide: ISBN: 90-5191-064-9Backgrounds: ISBN: 90-5191-064-9 Heijungs R, Guinée JB, Huppes G, Lankreijer RM, Udo de Haes HA, Wegener Sleeswijk A, Ansems AMM, Eggels PG, van Duin R, de Goede HP (1992) Environmental life cycle assessment of products. Guide and backgrounds. NOH reports 9266 & 9267 Leiden: CML 96pp + 130pp Guide: ISBN: 90-5191-064-9Backgrounds: ISBN: 90-5191-064-9
Zurück zum Zitat Helin T, Sokka L, Soimakallio S, Pingoud K, Pajula T (2013) Approaches for inclusion of forest carbon cycle in life cycle assessment - A review. Glob Chang Biol Bioenergy 5:475–486CrossRef Helin T, Sokka L, Soimakallio S, Pingoud K, Pajula T (2013) Approaches for inclusion of forest carbon cycle in life cycle assessment - A review. Glob Chang Biol Bioenergy 5:475–486CrossRef
Zurück zum Zitat Helin T, Salminen H, Hynynen J, Soimakallio S, Huuskonen S, Pingoud K (2015) Global warming potentials of stemwood used for energy and materials in Southern Finland: differentiation of impacts based on type of harvest and product lifetime. Glob Chang Biol Bioenergy. doi:10.1111/gcbb.12244 Helin T, Salminen H, Hynynen J, Soimakallio S, Huuskonen S, Pingoud K (2015) Global warming potentials of stemwood used for energy and materials in Southern Finland: differentiation of impacts based on type of harvest and product lifetime. Glob Chang Biol Bioenergy. doi:10.​1111/​gcbb.​12244
Zurück zum Zitat Hofstetter P (1998) Perspectives in life cycle impact assessment - A structured approach to combine models of the technosphere, ecosphere and valuesphere. PhD thesis, Swiss Federal Institute of Technology Zürich. Kluwer Academic Publishers, Dordrecht, The Netherlands. Dissertation or Thesis Hofstetter P (1998) Perspectives in life cycle impact assessment - A structured approach to combine models of the technosphere, ecosphere and valuesphere. PhD thesis, Swiss Federal Institute of Technology Zürich. Kluwer Academic Publishers, Dordrecht, The Netherlands. Dissertation or Thesis
Zurück zum Zitat Holtsmark B (2013) The outcome is in the assumptions: analyzing the effects on atmospheric CO 2 levels of increased use of bioenergy from forest biomass. Glob Chang Biol Bioenergy 5:467–473CrossRef Holtsmark B (2013) The outcome is in the assumptions: analyzing the effects on atmospheric CO 2 levels of increased use of bioenergy from forest biomass. Glob Chang Biol Bioenergy 5:467–473CrossRef
Zurück zum Zitat Huijbregts M (2002) Uncertainty and variability in environmental life-cycle assessment. Int J Life Cycle Assess 7:173–173CrossRef Huijbregts M (2002) Uncertainty and variability in environmental life-cycle assessment. Int J Life Cycle Assess 7:173–173CrossRef
Zurück zum Zitat ISO (2006) 14040:2006. Environmental management -- Life cycle assessment -- Principles and framework. International Organization for Standardization (ISO). 20 p ISO (2006) 14040:2006. Environmental management -- Life cycle assessment -- Principles and framework. International Organization for Standardization (ISO). 20 p
Zurück zum Zitat Jackson RB, Banner JL, Jobbágy EG, Pockman WT, Wall DH (2002) Ecosystem carbon loss with woody plant invasion of grasslands. Nature 418:623–626CrossRef Jackson RB, Banner JL, Jobbágy EG, Pockman WT, Wall DH (2002) Ecosystem carbon loss with woody plant invasion of grasslands. Nature 418:623–626CrossRef
Zurück zum Zitat Jury C, Benetto E, Koster D, Schmitt B, Welfring J (2010) Life cycle assessment of biogas production by monofermentation of energy crops and injection into the natural gas grid. Biomass Bioenergy 34:54–66CrossRef Jury C, Benetto E, Koster D, Schmitt B, Welfring J (2010) Life cycle assessment of biogas production by monofermentation of energy crops and injection into the natural gas grid. Biomass Bioenergy 34:54–66CrossRef
Zurück zum Zitat Kaufman AS, Meier PJ, Sinistore JC, Reinemann DJ (2010) Applying life-cycle assessment to low carbon fuel standards--How allocation choices influence carbon intensity for renewable transportation fuels. Energ Policy 38:5229–5241CrossRef Kaufman AS, Meier PJ, Sinistore JC, Reinemann DJ (2010) Applying life-cycle assessment to low carbon fuel standards--How allocation choices influence carbon intensity for renewable transportation fuels. Energ Policy 38:5229–5241CrossRef
Zurück zum Zitat Kendall A (2012) Time-adjusted global warming potentials for LCA and carbon footprints. Int J Life Cycle Assess 17:1042–1049CrossRef Kendall A (2012) Time-adjusted global warming potentials for LCA and carbon footprints. Int J Life Cycle Assess 17:1042–1049CrossRef
Zurück zum Zitat Koellner T (2013) Ecosystem services and global trade of natural resources: ecology, economics and policies. Routledge Koellner T (2013) Ecosystem services and global trade of natural resources: ecology, economics and policies. Routledge
Zurück zum Zitat Koellner T, de Baan L, Beck T, Brandão M, Civit B, Margni M, i Canals LM, Saad R, de Souza DM, Müller-Wenk R (2013) UNEP-SETAC guideline on global land use impact assessment on biodiversity and ecosystem services in LCA. Int J Life Cycle Assess 18:1188–1202CrossRef Koellner T, de Baan L, Beck T, Brandão M, Civit B, Margni M, i Canals LM, Saad R, de Souza DM, Müller-Wenk R (2013) UNEP-SETAC guideline on global land use impact assessment on biodiversity and ecosystem services in LCA. Int J Life Cycle Assess 18:1188–1202CrossRef
Zurück zum Zitat Koponen K, Soimakallio S, Tsupari E, Thun R, Antikainen R (2013) GHG emission performance of various liquid transportation biofuels in Finland in accordance with the EU sustainability criteria. Appl Energy 102:440–448CrossRef Koponen K, Soimakallio S, Tsupari E, Thun R, Antikainen R (2013) GHG emission performance of various liquid transportation biofuels in Finland in accordance with the EU sustainability criteria. Appl Energy 102:440–448CrossRef
Zurück zum Zitat Kurz WA, Dymond C, Stinson G, Rampley G, Neilson E, Carroll A, Ebata T, Safranyik L (2008) Mountain pine beetle and forest carbon feedback to climate change. Nature 452:987–990CrossRef Kurz WA, Dymond C, Stinson G, Rampley G, Neilson E, Carroll A, Ebata T, Safranyik L (2008) Mountain pine beetle and forest carbon feedback to climate change. Nature 452:987–990CrossRef
Zurück zum Zitat Leinonen I, Williams AG, Kyriazakis I (2014) Evaluating methods to account for the greenhouse gas emissions from land use changes in agricultural LCA. In Proceedings of the 9th International Conference on Life Cycle Assessment in the Agri-Food Sector. LCA Food 2014, pp 8–10 Leinonen I, Williams AG, Kyriazakis I (2014) Evaluating methods to account for the greenhouse gas emissions from land use changes in agricultural LCA. In Proceedings of the 9th International Conference on Life Cycle Assessment in the Agri-Food Sector. LCA Food 2014, pp 8–10
Zurück zum Zitat Lindeijer E, Müller-Wenk R, Steen B (eds) (2002) Impact assessment of resources and land use. In: Udo de Haes HA, Finnveden G, Goedkoop M, Hauschild M, Hertwich EG, Hofstetter P, Jolliet O, Klöpffer W, Krewitt W, Lindeijer EW, Müller-Wenk R, Olsen SI, Pennington DW, Potting J, Steen B (eds) (2002), Life cycle impact assessment: striving towards best practice. SETAC, Pensacola, USA, pp 11–64 Lindeijer E, Müller-Wenk R, Steen B (eds) (2002) Impact assessment of resources and land use. In: Udo de Haes HA, Finnveden G, Goedkoop M, Hauschild M, Hertwich EG, Hofstetter P, Jolliet O, Klöpffer W, Krewitt W, Lindeijer EW, Müller-Wenk R, Olsen SI, Pennington DW, Potting J, Steen B (eds) (2002), Life cycle impact assessment: striving towards best practice. SETAC, Pensacola, USA, pp 11–64
Zurück zum Zitat Lindholm E (2010) Energy use and environmental impact of roundwood and forest fuel production in Sweden. Dissertation, Swedish University of Agricultural Sciences Lindholm E (2010) Energy use and environmental impact of roundwood and forest fuel production in Sweden. Dissertation, Swedish University of Agricultural Sciences
Zurück zum Zitat Malça J, Freire F (2011) Life-cycle studies of biodiesel in Europe: a review addressing the variability of results and modeling issues. Renew Sust Energ Rev 15:338–351CrossRef Malça J, Freire F (2011) Life-cycle studies of biodiesel in Europe: a review addressing the variability of results and modeling issues. Renew Sust Energ Rev 15:338–351CrossRef
Zurück zum Zitat Marland G, Schlamadinger B, Leiby P (1997) Forest/biomass based mitigation strategies: does the timing of carbon reductions matter? Crit Rev Environ Sci Technol 27:213–226CrossRef Marland G, Schlamadinger B, Leiby P (1997) Forest/biomass based mitigation strategies: does the timing of carbon reductions matter? Crit Rev Environ Sci Technol 27:213–226CrossRef
Zurück zum Zitat Mattila T, Helin T, Antikainen R, Soimakallio S, Pingoud K, Wessman H (2011) Land use in life cycle assessment. The Finnish Environment 24. Finnish Environment Institute Mattila T, Helin T, Antikainen R, Soimakallio S, Pingoud K, Wessman H (2011) Land use in life cycle assessment. The Finnish Environment 24. Finnish Environment Institute
Zurück zum Zitat Michelsen O (2006) Eco-efficiency in extended supply chains–methodological development with regulatory and organizational implications. Dissertation, Norwegian University of Science and Technology. Dissertation or Thesis, Fakultet for samfunnsvitenskap og teknologiledelse Michelsen O (2006) Eco-efficiency in extended supply chains–methodological development with regulatory and organizational implications. Dissertation, Norwegian University of Science and Technology. Dissertation or Thesis, Fakultet for samfunnsvitenskap og teknologiledelse
Zurück zum Zitat Milà i Canals L, Clift R, Basson L, Hansen Y, Brandão M (2006) Expert workshop on land use impacts in life cycle assessment. 12–13 June 2006 Guildford, Surrey (UK). Int J Life Cycle Assess 11:363–368 Milà i Canals L, Clift R, Basson L, Hansen Y, Brandão M (2006) Expert workshop on land use impacts in life cycle assessment. 12–13 June 2006 Guildford, Surrey (UK). Int J Life Cycle Assess 11:363–368
Zurück zum Zitat Milà i Canals L, Bauer C, Depestele J, Dubreuil A, Knuchel RF, Gaillard G, Michelsen O, Mueller-Wenk R, Rydgren B (2007a) Key elements in a framework for land use impact assessment within LCA. Int J Life Cycle Assess 12:5–15CrossRef Milà i Canals L, Bauer C, Depestele J, Dubreuil A, Knuchel RF, Gaillard G, Michelsen O, Mueller-Wenk R, Rydgren B (2007a) Key elements in a framework for land use impact assessment within LCA. Int J Life Cycle Assess 12:5–15CrossRef
Zurück zum Zitat Milà i Canals L, Romanya J, Cowell SJ (2007b) Method for assessing impacts on life support functions (LSF) related to the use of 'fertile land' in Life Cycle Assessment (LCA). J Clean Prod 15:1426–1440CrossRef Milà i Canals L, Romanya J, Cowell SJ (2007b) Method for assessing impacts on life support functions (LSF) related to the use of 'fertile land' in Life Cycle Assessment (LCA). J Clean Prod 15:1426–1440CrossRef
Zurück zum Zitat Milà i Canals L, Rigarlsford G, Sim S (2013) Land use impact assessment of margarine. Int J Life Cycle Assess 18:1265–1277CrossRef Milà i Canals L, Rigarlsford G, Sim S (2013) Land use impact assessment of margarine. Int J Life Cycle Assess 18:1265–1277CrossRef
Zurück zum Zitat Minkkinen K, Korhonen R, Savolainen I, Laine J (2002) Carbon balance and radiative forcing of Finnish peatlands 1900–2100–the impact of forestry drainage. Glob Chang Biol 8:785–799CrossRef Minkkinen K, Korhonen R, Savolainen I, Laine J (2002) Carbon balance and radiative forcing of Finnish peatlands 1900–2100–the impact of forestry drainage. Glob Chang Biol 8:785–799CrossRef
Zurück zum Zitat Mogensen L, Kristensen T, Nguyen TLT, Knudsen MT, Hermansen JE (2014) Method for calculating carbon footprint of cattle feeds–including contribution from soil carbon changes and use of cattle manure. J Clean Prod 73:40–51CrossRef Mogensen L, Kristensen T, Nguyen TLT, Knudsen MT, Hermansen JE (2014) Method for calculating carbon footprint of cattle feeds–including contribution from soil carbon changes and use of cattle manure. J Clean Prod 73:40–51CrossRef
Zurück zum Zitat Muys B (2002) Reference system. In: Schweinle J (ed) The assessment of environmental impacts caused by land use in the life cycle assessment of forestry and forest products. Final report. Working group 2, land use of COST action E9. Nr. 209. BFH, Hamburg, pp 56 Muys B (2002) Reference system. In: Schweinle J (ed) The assessment of environmental impacts caused by land use in the life cycle assessment of forestry and forest products. Final report. Working group 2, land use of COST action E9. Nr. 209. BFH, Hamburg, pp 56
Zurück zum Zitat National Council for Air and Stream Improvement, Inc. (NCASI) (2013) A review of biomass carbon accounting methods and implications. Technical Bulletin No. 1015. National Council for Air and Stream Improvement, Inc., Research Triangle Park, North Carolina National Council for Air and Stream Improvement, Inc. (NCASI) (2013) A review of biomass carbon accounting methods and implications. Technical Bulletin No. 1015. National Council for Air and Stream Improvement, Inc., Research Triangle Park, North Carolina
Zurück zum Zitat Núñez M, Pfister S, Antón A, Muñoz P, Hellweg S, Koehler A, Rieradevall J (2013) Assessing the environmental impact of water consumption by energy crops grown in Spain. J Ind Ecol 17:90–102CrossRef Núñez M, Pfister S, Antón A, Muñoz P, Hellweg S, Koehler A, Rieradevall J (2013) Assessing the environmental impact of water consumption by energy crops grown in Spain. J Ind Ecol 17:90–102CrossRef
Zurück zum Zitat Nuss P, Bringezu S, Gardner KH (2012) Waste-to-materials: the longterm option. In: Waste to energy. Springer, pp 1–26 Nuss P, Bringezu S, Gardner KH (2012) Waste-to-materials: the longterm option. In: Waste to energy. Springer, pp 1–26
Zurück zum Zitat Oyewole A (2010) Implementation of land use and land use change and its effects on biodiversity in life cycle assessment. Master thesis, Norwegian University of Science and Technology Oyewole A (2010) Implementation of land use and land use change and its effects on biodiversity in life cycle assessment. Master thesis, Norwegian University of Science and Technology
Zurück zum Zitat Pelletier N, Ardente F, Brandão M, De Camillis C, Pennington D (2015) Rationales for and limitations of preferred solutions for multi-functionality problems in LCA: is increased consistency possible? Int J Life Cycle Assess 20:74–86CrossRef Pelletier N, Ardente F, Brandão M, De Camillis C, Pennington D (2015) Rationales for and limitations of preferred solutions for multi-functionality problems in LCA: is increased consistency possible? Int J Life Cycle Assess 20:74–86CrossRef
Zurück zum Zitat Rajagopal D, Zilberman D (2013) On market-mediated emissions and regulations on life cycle emissions. Ecol Econ 90:77–84CrossRef Rajagopal D, Zilberman D (2013) On market-mediated emissions and regulations on life cycle emissions. Ecol Econ 90:77–84CrossRef
Zurück zum Zitat Rebitzer G, Ekvall T, Frischknecht R, Hunkeler D, Norris G, Rydberg T, Schmidt WP, Suh S, Weidema BP, Pennington DW (2004) Life cycle assessment: part 1: framework, goal and scope definition, inventory analysis, and applications. Environ Int 30:701–720CrossRef Rebitzer G, Ekvall T, Frischknecht R, Hunkeler D, Norris G, Rydberg T, Schmidt WP, Suh S, Weidema BP, Pennington DW (2004) Life cycle assessment: part 1: framework, goal and scope definition, inventory analysis, and applications. Environ Int 30:701–720CrossRef
Zurück zum Zitat Repo A, Tuomi M, Liski J (2011) Indirect carbon dioxide emissions from producing bioenergy from forest harvest residues. Glob Chang Biol Bioenergy 3:107–115CrossRef Repo A, Tuomi M, Liski J (2011) Indirect carbon dioxide emissions from producing bioenergy from forest harvest residues. Glob Chang Biol Bioenergy 3:107–115CrossRef
Zurück zum Zitat Rödl A (2012) IEA bioenergy task 38 - case study environmental assessment of liquid biofuel from woody biomass. Work Report of the Institute of Forest Based Sector Economics 2012/01. Hamburg Rödl A (2012) IEA bioenergy task 38 - case study environmental assessment of liquid biofuel from woody biomass. Work Report of the Institute of Forest Based Sector Economics 2012/01. Hamburg
Zurück zum Zitat Rutland CT (2011) Life cycle assessment applied to 95 representative US Farms. Master thesis, Texas A&M University Rutland CT (2011) Life cycle assessment applied to 95 representative US Farms. Master thesis, Texas A&M University
Zurück zum Zitat Samuel-Fitwi B, Nagel F, Meyer S, Schroeder J, Schulz C (2013) Comparative life cycle assessment (LCA) of raising rainbow trout (Oncorhynchus mykiss) in different production systems. Aquacult Eng 54:85–92CrossRef Samuel-Fitwi B, Nagel F, Meyer S, Schroeder J, Schulz C (2013) Comparative life cycle assessment (LCA) of raising rainbow trout (Oncorhynchus mykiss) in different production systems. Aquacult Eng 54:85–92CrossRef
Zurück zum Zitat Schäfer F, Blanke M (2012) Farming and marketing system affects carbon and water footprint–a case study using Hokaido pumpkin. J Clean Prod 28:113–119CrossRef Schäfer F, Blanke M (2012) Farming and marketing system affects carbon and water footprint–a case study using Hokaido pumpkin. J Clean Prod 28:113–119CrossRef
Zurück zum Zitat Schmidt JH (2007) Life assessment of rapeseed oil and palm oil. Ph. D. thesis, Part 3: life cycle inventory of rapeseed oil. Dissertation, Aalborg University Schmidt JH (2007) Life assessment of rapeseed oil and palm oil. Ph. D. thesis, Part 3: life cycle inventory of rapeseed oil. Dissertation, Aalborg University
Zurück zum Zitat Schulze E, Körner C, Law BE, Haberl H, Luyssaert S (2012) Large-scale bioenergy from additional harvest of forest biomass is neither sustainable nor greenhouse gas neutral. Glob Chang Biol Bioenergy 4:611–616CrossRef Schulze E, Körner C, Law BE, Haberl H, Luyssaert S (2012) Large-scale bioenergy from additional harvest of forest biomass is neither sustainable nor greenhouse gas neutral. Glob Chang Biol Bioenergy 4:611–616CrossRef
Zurück zum Zitat Scown CD (2010) Life-cycle water impacts of US transportation fuels. Dissertation, University of California Scown CD (2010) Life-cycle water impacts of US transportation fuels. Dissertation, University of California
Zurück zum Zitat Sheehan JJ (2009) Biofuels and the conundrum of sustainability. Curr Opin Biotechnol 20:318–324CrossRef Sheehan JJ (2009) Biofuels and the conundrum of sustainability. Curr Opin Biotechnol 20:318–324CrossRef
Zurück zum Zitat Socolow R (1997) Industrial ecology and global change. Cambridge University Press Socolow R (1997) Industrial ecology and global change. Cambridge University Press
Zurück zum Zitat Sonnemann G, Vigon B (2011) Global guidance principles for life cycle assessment databases. A basis for greener processes and products.UNEP/SETAC Life Cycle Initiative. United Nations Environment Programme (UNEP), Paris Sonnemann G, Vigon B (2011) Global guidance principles for life cycle assessment databases. A basis for greener processes and products.UNEP/SETAC Life Cycle Initiative. United Nations Environment Programme (UNEP), Paris
Zurück zum Zitat Thomassen M, Dalgaard R, Heijungs R, de Boer I (2008) Attributional and consequential LCA of milk production. Int J Life Cycle Assess 13:339–349CrossRef Thomassen M, Dalgaard R, Heijungs R, de Boer I (2008) Attributional and consequential LCA of milk production. Int J Life Cycle Assess 13:339–349CrossRef
Zurück zum Zitat Tillman A (2000) Significance of decision-making for LCA methodology. Environ Impact Assess Rev 20:113–123CrossRef Tillman A (2000) Significance of decision-making for LCA methodology. Environ Impact Assess Rev 20:113–123CrossRef
Zurück zum Zitat Tufvesson LM, Lantz M, Börjesson P (2013) Environmental performance of biogas produced from industrial residues including competition with animal feed–life-cycle calculations according to different methodologies and standards. J Clean Prod 53:214–223CrossRef Tufvesson LM, Lantz M, Börjesson P (2013) Environmental performance of biogas produced from industrial residues including competition with animal feed–life-cycle calculations according to different methodologies and standards. J Clean Prod 53:214–223CrossRef
Zurück zum Zitat Vázquez-Rowe I, Marvuglia A, Flammang K, Braun C, Leopold U, Benetto E (2014) The use of temporal dynamics for the automatic calculation of land use impacts in LCA using R programming environment. Int J Life Cycle Assess 19:500–516CrossRef Vázquez-Rowe I, Marvuglia A, Flammang K, Braun C, Leopold U, Benetto E (2014) The use of temporal dynamics for the automatic calculation of land use impacts in LCA using R programming environment. Int J Life Cycle Assess 19:500–516CrossRef
Zurück zum Zitat Vellinga TV, Blonk H, Marinussen M, van Zeist W, de Boer I, Starmans D (2009) Methodology used in FeedPrint: a tool quantifying greenhouse gas emissions of feed production and utilization. Lelystad, the Netherlands Vellinga TV, Blonk H, Marinussen M, van Zeist W, de Boer I, Starmans D (2009) Methodology used in FeedPrint: a tool quantifying greenhouse gas emissions of feed production and utilization. Lelystad, the Netherlands
Zurück zum Zitat Weidema B (2000) Avoiding co-product allocation in life-cycle assessment. J Ind Ecol 4:11–33CrossRef Weidema B (2000) Avoiding co-product allocation in life-cycle assessment. J Ind Ecol 4:11–33CrossRef
Zurück zum Zitat Weidema B (2003) Market information in life cycle assessment (Vol. 863, p. 365). Miljøstyrelsen Weidema B (2003) Market information in life cycle assessment (Vol. 863, p. 365). Miljøstyrelsen
Zurück zum Zitat Weidema B, Frees N, Nielsen A (1999) Marginal production technologies for life cycle inventories. Int J Life Cycle Assess 4:48–56CrossRef Weidema B, Frees N, Nielsen A (1999) Marginal production technologies for life cycle inventories. Int J Life Cycle Assess 4:48–56CrossRef
Zurück zum Zitat Weiss F, Leip A (2012) Greenhouse gas emissions from the EU livestock sector: a life cycle assessment carried out with the CAPRI model. Agric Ecosyst Environ 149:124–134CrossRef Weiss F, Leip A (2012) Greenhouse gas emissions from the EU livestock sector: a life cycle assessment carried out with the CAPRI model. Agric Ecosyst Environ 149:124–134CrossRef
Zurück zum Zitat Whittaker C, Borrion AL, Newnes L, McManus M (2014) The renewable energy directive and cereal residues. Appl Energy 122:207–215CrossRef Whittaker C, Borrion AL, Newnes L, McManus M (2014) The renewable energy directive and cereal residues. Appl Energy 122:207–215CrossRef
Zurück zum Zitat WRI, WBCSD (2011) Product life cycle reporting and standard. WRI, Washington WRI, WBCSD (2011) Product life cycle reporting and standard. WRI, Washington
Zurück zum Zitat Zamagni A, Guinée J, Heijungs R, Masoni P, Raggi A (2012) Lights and shadows in consequential LCA. Int J Life Cycle Assess 17:904–918CrossRef Zamagni A, Guinée J, Heijungs R, Masoni P, Raggi A (2012) Lights and shadows in consequential LCA. Int J Life Cycle Assess 17:904–918CrossRef
Metadaten
Titel
Attributional life cycle assessment: is a land-use baseline necessary?
verfasst von
Sampo Soimakallio
Annette Cowie
Miguel Brandão
Göran Finnveden
Tomas Ekvall
Martin Erlandsson
Kati Koponen
Per-Erik Karlsson
Publikationsdatum
01.10.2015
Verlag
Springer Berlin Heidelberg
Erschienen in
The International Journal of Life Cycle Assessment / Ausgabe 10/2015
Print ISSN: 0948-3349
Elektronische ISSN: 1614-7502
DOI
https://doi.org/10.1007/s11367-015-0947-y

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