Critical aspects in the life cycle assessment (LCA) of bio-based materials – Reviewing methodologies and deriving recommendations

Files

Access status: Embargo until 2050-01-01 , 9_main.pdf (1014.72 KB)

Publication date

2013

Authors

Pawelzik, P.
Carus, M.
Hotchkiss, J.
Narayan, R.
Selke, S.
Wellisch, M.
Weiss, M.ISNI 0000000397169277
Wicke, B.ORCID 0000-0003-0445-0984ISNI 000000039652365X
Patel, M.K.ISNI 000000003583695X

Editors

Advisors

Supervisors

Document Type

Article

License

Abstract

Concerns over non-renewable fossil fuel supply and climate change have been driving the Renaissance of bio-based materials. To substantiate environmental claims, the impacts of bio-based materials are typically quantified by applying life cycle assessment(LCA). The internationally agreed LCA standards provide generic recommendations on how to evaluate the environmental impacts of products and services but do not address details that are specifically relevantfor the life cycles of bio-based materials. Here, we provide an overview of key issues and methodologies explicitly pertinent to the LCA of bio-based materials. We argue that the treatment of biogenic carbon storage is critical for quantifying the greenhouse gas emissions of bio-based materials in comparison with petrochemical materials. We acknowledge that biogenic carbon storage remains controversial but recommend accounting for it, depending on product-specific life cycles and the likely time duration of carbon storage. If carbon storage is considered, co-product allocation is nontrivial and should be chosen with care in order to:(i) ensure that carbon storage is assigned to the main product and the co-product(s) in the intended manner and (ii) avoid double counting of stored carbon in the main product and once more in the co-product(s). Land-use change, soil degradation, water use, and impacts on soil carbon stocks and biodiversity are important aspects that have recently received attention. We explain various approaches to account for these and conclude that substantial methodological progress is necessary, which is however hampered by the complex and often case- and site-specific nature of impacts. With the exception of soil degradation, we recommend preliminary approaches for including these impacts in the LCA of bio-based materials. The use of attributional versus consequential LCA approaches is particularly relevant in the context of bio-based materials. We conclude that it is more challenging to prepare accurate consequential LCA studies, especially because these should account for future developments and secondary impacts around bio-based materials which are often difficult to anticipate and quantify. Although hampered by complexity and limited data availability, the application of the proposed approaches to the extent possible would allow obtaining a more comprehensive insight into the environmental impacts of the production, use, and disposal of bio-based materials. © 2013 Elsevier B.V. All rights reserved.

Keywords

Life cycle assessment, t Bio-based materials, Environmental impacts, Biogenic carbon storage, Indirect land use change, Soil carbon, SDG 7 - Affordable and Clean Energy, SDG 12 - Responsible Consumption and Production, SDG 13 - Climate Action, SDG 15 - Life on Land

Citation

Pawelzik, P, Carus, M, Hotchkiss, J, Narayan, R, Selke, S, Wellisch, M, Weiss, M, Wicke, B & Patel, M K 2013, 'Critical aspects in the life cycle assessment (LCA) of bio-based materials – Reviewing methodologies and deriving recommendations', Resources, Conservation and Recycling, vol. 73, no. April 2013, pp. 211-228. https://doi.org/10.1016/j.resconrec.2013.02.006