Sustainability of Biogas Production from Anaerobic Digestion of Food Waste and Animal Manure

Author:

Ankathi Sharath Kumar1ORCID,Chaudhari Utkarsh S.2ORCID,Handler Robert M.23ORCID,Shonnard David R.23

Affiliation:

1. Aramco Americas, Aramco Research Center−Detroit, Novi, MI 48377, USA

2. Department of Chemical Engineering, Michigan Technological University, Houghton, MI 49931, USA

3. Sustainable Futures Institute, Michigan Technological University, Houghton, MI 49931, USA

Abstract

Anaerobic digestion (AD) involves a set of microbiological reactions and physio-chemical processes to generate biogas, a mixture of predominantly CH4 and CO2. It is commercialized globally; however, AD has limited commercial applications in the U.S. compared to other regions of the world. The main objective of this article is to review different studies on socio-economic and environmental aspects and policies of biogas/biomethane production and to focus on resource availability. The key outcome from this review shows that the anaerobic digestion of food waste and animal manure has great potential to achieve economic and environmental benefits compared to other waste management techniques such as landfilling or conventional manure management. The 12 life cycle assessment (LCA) studies reviewed showed lower impacts for biogas systems and indicated a need for standardization of methodology so that alternative production concepts can be objectively compared. Similarly, economic analyses showed higher profitability for a biogas combined heat and power facility compared to a biomethane facility. By considering a review of the sustainability of biogas, we presented a new multi-criteria sustainable assessment framework that includes three domains: i. resource availability and logistics, ii. process modeling, and iii. impact assessment with primary application to the optimum location and installation of sustainable biogas/biomethane plants in the U.S.

Publisher

MDPI AG

Reference95 articles.

1. Food and Agriculture Organization (FAO) (2013). Summary Report, FAO. Available online: http://www.fao.org/3/i3347e/i3347e.pdf.

2. Forbes, H., Quested, T., and O’Connor, C. (2021). Food Waste Index Report, UNEP. Available online: https://www.unep.org/resources/report/unep-food-waste-index-report-2021.

3. Life cycle assessment of food waste-based biogas generation;Xu;Renew. Sustain. Energy Rev.,2015

4. Taelman, S., Tonini, D., Wandl, A., and Dewulf, J. (2018). A holistic sustainability framework for waste management in European cities: Concept development. Sustainability, 10.

5. Food waste recovery into energy in a circular economy perspective: A comprehensive review of aspects related to plant operation and environmental assessment;Ingrao;J. Clean. Prod.,2018

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