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Erschienen in: The International Journal of Life Cycle Assessment 8/2016

04.03.2016 | LAND USE IN LCA

A spatially explicit life cycle assessment midpoint indicator for soil quality in the European Union using soil organic carbon

verfasst von: Tiago G. Morais, Tiago Domingos, Ricardo F. M. Teixeira

Erschienen in: The International Journal of Life Cycle Assessment | Ausgabe 8/2016

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Abstract

Purpose

Improving land use assessment in life cycle assessment (LCA) is a priority. Recently, soil organic carbon (SOC) depletion has been proposed as a transformation and occupation midpoint indicator to estimate impacts on biotic production potential (BPP). SOC depletion is recommended by the European Union in the International Reference Life Cycle Data System (ILCD) Handbook as a land use indicator. There is a consensus method to calculate SOC depletion in LCA, and ILCD proposes a set of characterization factors (CFs), but these lack geographical discrimination.

Methods

Our method of calculation for midpoint CFs follows Brandão and Milà i Canals (Int J Life Cycle Assess 18:1243–1252, 2013). We operationalize the method using SOC stocks from the LUCASOIL database of field measurements in Europe. We use potential natural vegetation (PNV) as the reference situation. CFs were calculated on a cell basis for 23 countries in Europe and grouped in three spatial scales (an administrative classification, NUTS II, and two biophysical classifications, ecoregion and climate region) according to soil type and land cover following a consensus map of cover classes. To evaluate the method’s results, CFs were applied in a case study.

Results and discussion

SOC stocks of European soils were obtained according to land use and soil type classes (excluding non-European Union countries) for the three spatial scales. A database of European transformation and occupation CFs is also presented and analyzed. The aggregation of CFs at biophysical scales (ecoregion and climate region) is similar, but NUTS II aggregation of CFs is problematic. The application of the CFs in the case study revealed significant differences compared to the outcome of using CFs collected from other land use models.

Conclusions

This paper is the first operationalization using field measurements of an updated version of the ILCD-recommended model for land use impacts in LCA. We obtained CFs for SOC depletion in Europe that can be nested within CFs suggested by ILCD since our results possess better spatial resolution but are only for European Union countries. The case study application highlighted the need for inventories to improve the spatial resolution of the life cycle processes to match the detail of LCIA models.

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Literatur
Zurück zum Zitat Alvarenga RAF, Dewulf J, Van Langenhove H, Huijbregts MAJ (2013) Exergy-based accounting for land as a natural resource in life cycle assessment. Int J Life Cycle Assess 18:939–947CrossRef Alvarenga RAF, Dewulf J, Van Langenhove H, Huijbregts MAJ (2013) Exergy-based accounting for land as a natural resource in life cycle assessment. Int J Life Cycle Assess 18:939–947CrossRef
Zurück zum Zitat Alvarenga RAF, Erb K-H, Haberl H et al (2015) Global land use impacts on biomass production—a spatial-differentiated resource-related life cycle impact assessment method. Int J Life Cycle Assess 20:440–450CrossRef Alvarenga RAF, Erb K-H, Haberl H et al (2015) Global land use impacts on biomass production—a spatial-differentiated resource-related life cycle impact assessment method. Int J Life Cycle Assess 20:440–450CrossRef
Zurück zum Zitat Bot A, Benites J (2005) The importance of soil organic matter: key to drought resistant soil and sustained food and production. Food and Agriculture Organization of the United Nations (FAO), Rome Bot A, Benites J (2005) The importance of soil organic matter: key to drought resistant soil and sustained food and production. Food and Agriculture Organization of the United Nations (FAO), Rome
Zurück zum Zitat Brandão M, Milà i Canals L (2013) Global characterisation factors to assess land use impacts on biotic production. Int J Life Cycle Assess 18:1243–1252CrossRef Brandão M, Milà i Canals L (2013) Global characterisation factors to assess land use impacts on biotic production. Int J Life Cycle Assess 18:1243–1252CrossRef
Zurück zum Zitat Curran M, Hellweg S, Beck J (2014) Is there any empirical support for biodiversity offset policy? Ecol Appl 24:617–632CrossRef Curran M, Hellweg S, Beck J (2014) Is there any empirical support for biodiversity offset policy? Ecol Appl 24:617–632CrossRef
Zurück zum Zitat Don A, Schumacher J, Freibauer A (2011) Impact of tropical land-use change on soil organic carbon stocks - a meta-analysis. Glob Chang Biol 17:1658–1670CrossRef Don A, Schumacher J, Freibauer A (2011) Impact of tropical land-use change on soil organic carbon stocks - a meta-analysis. Glob Chang Biol 17:1658–1670CrossRef
Zurück zum Zitat EC (2003) European soil database (distribution version v2.0) EC (2003) European soil database (distribution version v2.0)
Zurück zum Zitat European Commission - Joint Research Centre, Institute for Environment and Sustainability (2011) International Reference Life Cycle Data System (ILCD) Handbook - Recommendations for Life Cycle Impact Assessment in the European Context. Publications Office of the European Union, Luxemburg European Commission - Joint Research Centre, Institute for Environment and Sustainability (2011) International Reference Life Cycle Data System (ILCD) Handbook - Recommendations for Life Cycle Impact Assessment in the European Context. Publications Office of the European Union, Luxemburg
Zurück zum Zitat Finkbeiner M, Ackermann R, Bach V et al (2014) Challenges in life cycle assessment: an overview of current gaps and research needs. In: Klöpffer W (ed) Background and future prospects in life cycle assessment. Springer Netherlands, Dordrecht, pp 207–258CrossRef Finkbeiner M, Ackermann R, Bach V et al (2014) Challenges in life cycle assessment: an overview of current gaps and research needs. In: Klöpffer W (ed) Background and future prospects in life cycle assessment. Springer Netherlands, Dordrecht, pp 207–258CrossRef
Zurück zum Zitat Garrigues E, Corson MS, Angers DA et al (2012) Soil quality in life cycle assessment: towards development of an indicator. Ecol Indic 18:434–442CrossRef Garrigues E, Corson MS, Angers DA et al (2012) Soil quality in life cycle assessment: towards development of an indicator. Ecol Indic 18:434–442CrossRef
Zurück zum Zitat Garrigues E, Corson MS, Angers DA et al (2013) Development of a soil compaction indicator in life cycle assessment. Int J Life Cycle Assess 18:1316–1324CrossRef Garrigues E, Corson MS, Angers DA et al (2013) Development of a soil compaction indicator in life cycle assessment. Int J Life Cycle Assess 18:1316–1324CrossRef
Zurück zum Zitat Illies J (1978) Limnofauna Europaea. CRC Press, Stuttgart Illies J (1978) Limnofauna Europaea. CRC Press, Stuttgart
Zurück zum Zitat IPCC (2003) Good Practice Guidance for Land Use, Land-Use Change and Forestry. Institute for Global Environmental Strategies (IGES) for the Intergovernmental Panel on Climate Change. The Intergovernmental Panel on Climate Change (IPCC), Kanagawa IPCC (2003) Good Practice Guidance for Land Use, Land-Use Change and Forestry. Institute for Global Environmental Strategies (IGES) for the Intergovernmental Panel on Climate Change. The Intergovernmental Panel on Climate Change (IPCC), Kanagawa
Zurück zum Zitat IPCC (2006) 2006 IPCC Guidelines for National Greenhouse Gas Inventories. Institute for Global Environmental Strategies (IGES) for the Intergovernmental Panel on Climate Change. The Intergovernmental Panel on Climate Change (IPCC), Kanagawa IPCC (2006) 2006 IPCC Guidelines for National Greenhouse Gas Inventories. Institute for Global Environmental Strategies (IGES) for the Intergovernmental Panel on Climate Change. The Intergovernmental Panel on Climate Change (IPCC), Kanagawa
Zurück zum Zitat Jobbágy EG, Jackson RB (2000) The vertical distribution of soil organic carbon and its relation to climate and vegetation. Ecol Appl 10:423–436CrossRef Jobbágy EG, Jackson RB (2000) The vertical distribution of soil organic carbon and its relation to climate and vegetation. Ecol Appl 10:423–436CrossRef
Zurück zum Zitat Jolliet O, Frischknecht R, Bare J et al (2014) Global guidance on environmental life cycle impact assessment indicators: findings of the scoping phase. Int J Life Cycle Assess 19:962–967CrossRef Jolliet O, Frischknecht R, Bare J et al (2014) Global guidance on environmental life cycle impact assessment indicators: findings of the scoping phase. Int J Life Cycle Assess 19:962–967CrossRef
Zurück zum Zitat Jones RJA, Hiederer R, Rusco E et al (2004) The map of organic carbon in topsoils in Europe, Version 1.2, September 2003: Explanation of Special Publication Ispra 2004 No.72 (S.P.I.04.72). European Soil Bureau Research Report No.17, EUR 21209 EN, 26pp. and 1 map in ISO B1 format. Office for Official Publications of the European Communities, Luxembourg Jones RJA, Hiederer R, Rusco E et al (2004) The map of organic carbon in topsoils in Europe, Version 1.2, September 2003: Explanation of Special Publication Ispra 2004 No.72 (S.P.I.04.72). European Soil Bureau Research Report No.17, EUR 21209 EN, 26pp. and 1 map in ISO B1 format. Office for Official Publications of the European Communities, Luxembourg
Zurück zum Zitat Koellner T, de Baan L, Beck T et al (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 et al (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 Mila Canals L, Baan L (2014) Land Use. In: Hauschild MZ, Huijbregts MAJ (eds) Life cycle impact assessment. Springer, Netherlands, pp 197–222 Mila Canals L, Baan L (2014) Land Use. In: Hauschild MZ, Huijbregts MAJ (eds) Life cycle impact assessment. Springer, Netherlands, pp 197–222
Zurück zum Zitat Milà i Canals L, Muñoz I, McLaren S, Brandão M (2007b) LCA Methodology and Modelling Considerations for Vegetable Production and Consumption. CES Working Papers 02/07 Milà i Canals L, Muñoz I, McLaren S, Brandão M (2007b) LCA Methodology and Modelling Considerations for Vegetable Production and Consumption. CES Working Papers 02/07
Zurück zum Zitat Milà i Canals L, Bauer C, Depestele J et al (2007) Key elements in a framework for land use impact assessment within LCA. Int J Life Cycle Assess 12:5–15 Milà i Canals L, Bauer C, Depestele J et al (2007) Key elements in a framework for land use impact assessment within LCA. Int J Life Cycle Assess 12:5–15
Zurück zum Zitat Morais TG, Teixeira RFM, Domingos T (2016) Regionalization of agri-food life cycle assessment: a review of studies in Portugal and recommendations for the future. Int J Life Cycle Assess. doi:10.1007/s11367-016-1055-3 Morais TG, Teixeira RFM, Domingos T (2016) Regionalization of agri-food life cycle assessment: a review of studies in Portugal and recommendations for the future. Int J Life Cycle Assess. doi:10.​1007/​s11367-016-1055-3
Zurück zum Zitat Núñez M, Civit B, Muñoz P et al (2009) Assessing potential desertification environmental impact in life cycle assessment. Int J Life Cycle Assess 15:67–78CrossRef Núñez M, Civit B, Muñoz P et al (2009) Assessing potential desertification environmental impact in life cycle assessment. Int J Life Cycle Assess 15:67–78CrossRef
Zurück zum Zitat Núñez M, Antón A, Muñoz P, Rieradevall J (2012) Inclusion of soil erosion impacts in life cycle assessment on a global scale: application to energy crops in Spain. Int J Life Cycle Assess 18:755–767CrossRef Núñez M, Antón A, Muñoz P, Rieradevall J (2012) Inclusion of soil erosion impacts in life cycle assessment on a global scale: application to energy crops in Spain. Int J Life Cycle Assess 18:755–767CrossRef
Zurück zum Zitat Panagos P, Ballabio C, Yigini Y, Dunbar MB (2013) Estimating the soil organic carbon content for European NUTS2 regions based on LUCAS data collection. Sci Total Environ 442:235–246CrossRef Panagos P, Ballabio C, Yigini Y, Dunbar MB (2013) Estimating the soil organic carbon content for European NUTS2 regions based on LUCAS data collection. Sci Total Environ 442:235–246CrossRef
Zurück zum Zitat Poeplau C, Don A, Vesterdal L et al (2011) Temporal dynamics of soil organic carbon after land-use change in the temperate zone - carbon response functions as a model approach. Glob Chang Biol 17:2415–2427CrossRef Poeplau C, Don A, Vesterdal L et al (2011) Temporal dynamics of soil organic carbon after land-use change in the temperate zone - carbon response functions as a model approach. Glob Chang Biol 17:2415–2427CrossRef
Zurück zum Zitat Ramankutty N, Foley JA (1999) Estimating historical changes in global land cover: croplands from 1700 to 1992. Global Biogeochem Cycles 13:997–1027CrossRef Ramankutty N, Foley JA (1999) Estimating historical changes in global land cover: croplands from 1700 to 1992. Global Biogeochem Cycles 13:997–1027CrossRef
Zurück zum Zitat Reap J, Roman F, Duncan S, Bras B (2008) A survey of unresolved problems in life cycle assessment. Int J Life Cycle Assess 13:290–300CrossRef Reap J, Roman F, Duncan S, Bras B (2008) A survey of unresolved problems in life cycle assessment. Int J Life Cycle Assess 13:290–300CrossRef
Zurück zum Zitat Saad R, Margni M, Koellner T et al (2011) Assessment of land use impacts on soil ecological functions: development of spatially differentiated characterization factors within a Canadian context. Int J Life Cycle Assess 16:198–211CrossRef Saad R, Margni M, Koellner T et al (2011) Assessment of land use impacts on soil ecological functions: development of spatially differentiated characterization factors within a Canadian context. Int J Life Cycle Assess 16:198–211CrossRef
Zurück zum Zitat Souza DM, Teixeira RFM, Ostermann OP (2015) Assessing biodiversity loss due to land use with life cycle assessment: are we there yet? Glob Chang Biol 21:32–47CrossRef Souza DM, Teixeira RFM, Ostermann OP (2015) Assessing biodiversity loss due to land use with life cycle assessment: are we there yet? Glob Chang Biol 21:32–47CrossRef
Zurück zum Zitat Teixeira RFM (2015) Critical appraisal of life cycle impact assessment databases for agri-food materials. J Ind Ecol 19:38–50 Teixeira RFM (2015) Critical appraisal of life cycle impact assessment databases for agri-food materials. J Ind Ecol 19:38–50
Zurück zum Zitat Teixeira RFM, Domingos T, Costa APSV et al (2011) Soil organic matter dynamics in Portuguese natural and sown rainfed grasslands. Ecol Modell 222:993–1001CrossRef Teixeira RFM, Domingos T, Costa APSV et al (2011) Soil organic matter dynamics in Portuguese natural and sown rainfed grasslands. Ecol Modell 222:993–1001CrossRef
Zurück zum Zitat Tóth G, Jones A, Montanarella L (2013) The LUCAS topsoil database and derived information on the regional variability of cropland topsoil properties in the European Union. Environ Monit Assess 185:7409–7425CrossRef Tóth G, Jones A, Montanarella L (2013) The LUCAS topsoil database and derived information on the regional variability of cropland topsoil properties in the European Union. Environ Monit Assess 185:7409–7425CrossRef
Zurück zum Zitat Tuanmu M-N, Jetz W (2014) A global 1-km consensus land-cover product for biodiversity and ecosystem modelling. Glob Ecol Biogeogr 23:1031–1045CrossRef Tuanmu M-N, Jetz W (2014) A global 1-km consensus land-cover product for biodiversity and ecosystem modelling. Glob Ecol Biogeogr 23:1031–1045CrossRef
Zurück zum Zitat Van-Camp L, Bujarrabal B, Gentile A-R et al (2004) Reports of the technical working groups established under the thematic strategy for soil protection. EUR 21319, 872 pp EN/3, Luxembourg Van-Camp L, Bujarrabal B, Gentile A-R et al (2004) Reports of the technical working groups established under the thematic strategy for soil protection. EUR 21319, 872 pp EN/3, Luxembourg
Metadaten
Titel
A spatially explicit life cycle assessment midpoint indicator for soil quality in the European Union using soil organic carbon
verfasst von
Tiago G. Morais
Tiago Domingos
Ricardo F. M. Teixeira
Publikationsdatum
04.03.2016
Verlag
Springer Berlin Heidelberg
Erschienen in
The International Journal of Life Cycle Assessment / Ausgabe 8/2016
Print ISSN: 0948-3349
Elektronische ISSN: 1614-7502
DOI
https://doi.org/10.1007/s11367-016-1077-x

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