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生物炭改良土壤中生物指标和土壤健康评价的研究进展

A critical review on performance indicators for evaluating soil biota and soil health of biochar-amended soils.

机构信息

Department of Civil and Environmental Engineering, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China.

Institute of Construction Materials, Technische Universität Dresden, 01062 Dresden, Germany.

出版信息

J Hazard Mater. 2021 Jul 15;414:125378. doi: 10.1016/j.jhazmat.2021.125378. Epub 2021 Feb 17.

Abstract

Amendment of soil with biochar has been widely investigated for soil quality improvement in terms of biotic and abiotic functionalities. The performance of biochar-based amendment varies according to the site characteristics, biochar properties, and soil management targets. There is no existing review that summarizes a broad range of performance indicators to evaluate the health of biochar-amended soil. Based on the latest studies on soil amendment with biochar, this review critically analyzes the soil health indicators that reveal the potential impact of biochar amendment with respect to physicochemical properties, biological properties, and overall soil quality. It is found that soil pH, soil aggregate stability, and soil organic matter are the basic indicators that could influence most of the soil functions, which should be prioritized for measurement. Relevant functional indicators (e.g., erosion rate, crop productivity, and ecotoxicity) should be selected based on the soil management targets of biochar application in agricultural soils. With this review, it is expected that target-oriented performance indicators can be selected in future studies for field-relevant evaluation of soil amendment by biochar under different situations. Therefore, a more cost-effective and purpose-driven assessment protocol for biochar-amended soils can be devised by using relevant measurable attributes suggested in this review.

摘要

生物炭改良土壤在生物和非生物功能方面改善土壤质量已得到广泛研究。生物炭基改良剂的性能因场地特征、生物炭特性和土壤管理目标而异。目前还没有综述总结广泛的性能指标来评估生物炭改良土壤的健康状况。基于生物炭改良土壤的最新研究,本综述批判性地分析了揭示生物炭改良对物理化学性质、生物特性和整体土壤质量潜在影响的土壤健康指标。研究发现,土壤 pH 值、土壤团聚体稳定性和土壤有机质是可能影响大多数土壤功能的基本指标,应优先进行测量。应根据生物炭在农业土壤中应用的土壤管理目标选择相关功能指标(例如,侵蚀速率、作物生产力和生态毒性)。通过本综述,预计未来的研究可以选择有针对性的性能指标,在不同情况下对生物炭改良土壤进行现场相关的评估。因此,可以利用本综述中提出的相关可测量属性来制定更具成本效益和针对性的生物炭改良土壤评估方案。

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