Bio-oil and biochar from the pyrolytic conversion of biomass: A current and future perspective on the trade-off between economic, environmental, and technical indicators

Vuppaladadiyam, Arun Krishna, Vuppaladadiyam, Sai Sree Varsha, Sahoo, Abhisek, Murugavelh, S., Anthony, Edward, Bhashkar, Thallada, Zheng, Ying, Zhao, Ming, Duan, Huabo, Zhao, Yan, Dos Santos Antunes, Elsa, Sarmah, Ajit K., and Leu, Shao Yuan (2023) Bio-oil and biochar from the pyrolytic conversion of biomass: A current and future perspective on the trade-off between economic, environmental, and technical indicators. Science of the Total Environment, 857. 159155.

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Abstract

Over the years, the transformation of biomass into a plethora of renewable value-added products has been identified as a promising strategy to fulfil high energy demands, lower greenhouse gas emissions, and exploit under-utilized resources. Techno-economic analysis (TEA) and life-cycle assessment (LCA) are essential to scale up this process while lowering the conversion cost. In this study, trade-offs are made between economic, environmental, and technical indicators produced from these methodologies to better evaluate the commercialization potential of biomass pyrolysis. This research emphasizes the necessity of combining LCA and TEA variables to assess the performance of the early-stage technology and associated constraints. The important findings based on the LCA analysis imply that most of the studies reported in literature focussed on the global warming potentials (GWP) under environmental category by considering greenhouse gases (GHGs) as evaluation parameter, neglecting many other important environmental indices. In addition, the upstream and downstream processes play an important role in understanding the life cycle impacts of a biomass based biorefinery. Under upstream conditions, the use of a specific type of feedstock may influence the LCA conclusions and technical priority. Under downstream conditions, the product utilization as fuels in different energy backgrounds is crucial to the overall impact potentials of the pyrolysis systems. In view of the TEA analysis, investigations towards maximizing the yield of valuable co-products would play an important role in the commercialization of pyrolysis process. However, comprehensive research to compare the conventional, advanced, and emerging approaches of biomass pyrolysis from the economic perspective is currently not available in the literature.

Item ID: 78447
Item Type: Article (Research - C1)
ISSN: 1879-1026
Keywords: Bio-oil, Biochar, Biomass conversion, Life cycle assessment, Pyrolysis, Pyrolysis reactors, Techno-economic analysis
Copyright Information: © 2022 Elsevier B.V. All rights reserved.
Date Deposited: 31 May 2023 00:38
FoR Codes: 40 ENGINEERING > 4011 Environmental engineering > 401102 Environmentally sustainable engineering @ 100%
SEO Codes: 19 ENVIRONMENTAL POLICY, CLIMATE CHANGE AND NATURAL HAZARDS > 1903 Mitigation of climate change > 190399 Mitigation of climate change not elsewhere classified @ 100%
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