Effects of biochar-based materials on the bioavailability of soil organic pollutants and their biological impacts

生物炭 环境科学 污染物 环境化学 土壤污染物 生物利用度 土壤水分 废物管理 化学 热解 土壤污染 土壤科学 工程类 生物 生物信息学 有机化学
作者
Lin Qing,Xiaofei Tan,Eydhah Almatrafi,Yang Yang,Wenjun Wang,Hanzhuo Luo,Fanzhi Qin,Chengyun Zhou,Guangming Zeng,Chen Zhang
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:826: 153956-153956 被引量:39
标识
DOI:10.1016/j.scitotenv.2022.153956
摘要

Motivated by the unique structure and superior properties, biochar-based materials, including pristine biochar and composites of biochar with other functional materials, are considered as new generation materials for diverse multi-functional applications, which may be intentionally or unintentionally released to soil. The influencing mechanism of biochar-based material on soil organisms is a key aspect for quantifying and predicting its benefits and trade-offs. This work focuses on the effects of biochar-based materials on soil organisms within the past ten years. 206 sources are reviewed and available knowledge on biochar-based materials' impacts on soil organisms is summarized from a diverse perspective, including the pollutant bioavailability changes in soil, and potential effects of biochar-based materials on soil organisms. Herein, effects of biochar-based materials on the bioavailability of soil organic pollutants are detailed, from the perspective of plant, microorganism, and soil fauna. Potential biological effects of pristine biochar (PBC), metal/metal compounds-biochar composites (MBC), clay minerals-biochar composites (CMBC), and carbonaceous materials-biochar composites (CBC) on soil organisms are highlighted for the first time. And possible mechanisms are presented based on the different characters of biochar-based materials as well as various environmental interactions. Finally, the bottleneck and challenges of risk assessment of biochar-based materials as well as future prospects are proposed. This work not only promotes the development of risk assessment system of biochar-based materials, but broadens the strategy for the design and optimization of environmental-friendly biochar materials.
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