New trends in biochar pyrolysis and modification strategies: feedstock, pyrolysis conditions, sustainability concerns and implications for soil amendment

Новые тенденции в пиролизе биоугля и стратегиях его модификации: исходное сырье, условия пиролиза, вопросы устойчивого развития и значение для улучшения почв
Liuwei Wang, Yong Sik Ok, Daniel C.W. Tsang, Daniel S. Alessi, Jörg Rinklebe, Hailong Wang, Ondřej Mašek, Renjie Hou, David O’Connor, Deyi Hou
2020-04-11

biochar pyrolysisco-pyrolysiscontaminant adsorptionengineered biocharsoil remediation
Abstract As a waste‐derived soil amendment with a long history, biochar has received extensive attention for its capability to improve soil fertility/health; remove or immobilize contaminants in soil, water and air; and mitigate climate change. With the aim of producing engineered biochars with excellent performances, new trends in biochar pyrolytic production and modification strategies have emerged. This review critically summarizes novel pyrolysis methods (e.g., microwave‐assisted pyrolysis, co‐pyrolysis and wet pyrolysis) and modification approaches (e.g., mineral modification, photocatalytic modification, electrochemical modification) with a focus on (a) the mechanisms involved in environmental remediation processes including soil immobilization, contaminant adsorption and catalytic oxidation; (b) effects of feedstock and pyrolysis conditions on physicochemical properties; (c) sustainability considerations in novel modification and pyrolysis strategies; and (d) the feasibility of extrapolating the results from wastewater treatment to soil remediation. It is argued that in order to achieve the maximum net environmental benefits, ‘greener’ modification methods are warranted, and the risks associated with pyrolysis of contaminated feedstock in soil amendment and contaminant sorption can be minimized through various novel approaches (e.g., co‐pyrolysis). Furthermore, novel pyrolysis methods can be combined with emerging modification strategies to synthesize more ‘effective’ biochars. Considering the similar aims of modification (e.g., increase surface area, introduce oxygen‐containing functional groups, increase aromaticity), the applicability of several novel approaches could in future can be expanded from contaminant adsorption/degradation in aqueous media to soil remediation/fertility improvement.
1
Feedstock type and pyrolysis conditions strongly influence biochar physicochemical properties and therefore its effectiveness for soil amendment and environmental remediation.
2
Greener modification strategies are needed to maximize net environmental benefits, while approaches such as co-pyrolysis can reduce risks from contaminated feedstocks and contaminant sorption.
3
Mineral, photocatalytic, and electrochemical modifications target increased surface area, oxygen-containing functional groups, and aromaticity to enhance contaminant adsorption, immobilization, or catalytic oxidation.
4
Results from wastewater treatment may be transferable to soil remediation because several modification strategies pursue similar mechanisms, although their broader applicability requires further evaluation.
5
The review identifies microwave-assisted pyrolysis, co-pyrolysis, and wet pyrolysis as emerging methods for producing engineered biochars with improved performance.

Engineered biochars produced from diverse feedstocks through novel pyrolysis and modification strategies for soil amendment and environmental remediation

The effects, mechanisms, sustainability, and soil-remediation applicability of pyrolysis conditions and modification strategies on biochar physicochemical properties and environmental performance

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2020-04-11
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Liuwei Wang
Yong Sik Ok
Daniel C.W. Tsang
Daniel S. Alessi
Jörg Rinklebe
Hailong Wang
Ondřej Mašek
Renjie Hou
David O’Connor
Deyi Hou
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