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生物炭对金属的吸附机制:生物炭特性与改性

Mechanisms of metal sorption by biochars: Biochar characteristics and modifications.

作者信息

Li Hongbo, Dong Xiaoling, da Silva Evandro B, de Oliveira Letuzia M, Chen Yanshan, Ma Lena Q

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Jiangsu 210023, China.

Soil and Water Science Department, University of Florida, Gainesville, FL 32611, United States.

出版信息

Chemosphere. 2017 Jul;178:466-478. doi: 10.1016/j.chemosphere.2017.03.072. Epub 2017 Mar 24.

Abstract

Biochar produced by thermal decomposition of biomass under oxygen-limited conditions has received increasing attention as a cost-effective sorbent to treat metal-contaminated waters. However, there is a lack of information on the roles of different sorption mechanisms for different metals and recent development of biochar modification to enhance metal sorption capacity, which is critical for biochar field application. This review summarizes the characteristics of biochar (e.g., surface area, porosity, pH, surface charge, functional groups, and mineral components) and main mechanisms governing sorption of As, Cr, Cd, Pb, and Hg by biochar. Biochar properties vary considerably with feedstock material and pyrolysis temperature, with high temperature producing biochars with higher surface area, porosity, pH, and mineral contents, but less functional groups. Different mechanisms dominate sorption of As (complexation and electrostatic interactions), Cr (electrostatic interactions, reduction, and complexation), Cd and Pb (complexation, cation exchange, and precipitation), and Hg (complexation and reduction). Besides sorption mechanisms, recent advance in modifying biochar by loading with minerals, reductants, organic functional groups, and nanoparticles, and activation with alkali solution to enhance metal sorption capacity is discussed. Future research needs for field application of biochar include competitive sorption mechanisms of co-existing metals, biochar reuse, and cost reduction of biochar production.

摘要

在氧气受限条件下通过生物质热分解产生的生物炭,作为一种处理金属污染水体的经济高效吸附剂,受到了越来越多的关注。然而,目前缺乏关于不同金属的不同吸附机制的作用以及生物炭改性以提高金属吸附能力的最新进展的信息,而这对于生物炭的实际应用至关重要。本综述总结了生物炭的特性(例如表面积、孔隙率、pH值、表面电荷、官能团和矿物成分)以及生物炭吸附砷、铬、镉、铅和汞的主要机制。生物炭的性质会因原料和热解温度的不同而有很大差异,高温产生的生物炭具有更高的表面积、孔隙率、pH值和矿物含量,但官能团较少。不同机制主导着砷(络合和静电相互作用)、铬(静电相互作用、还原和络合)、镉和铅(络合、阳离子交换和沉淀)以及汞(络合和还原)的吸附。除了吸附机制外,还讨论了通过负载矿物、还原剂、有机官能团和纳米颗粒以及用碱溶液活化来改性生物炭以提高金属吸附能力的最新进展。生物炭实际应用的未来研究需求包括共存金属的竞争吸附机制、生物炭的再利用以及生物炭生产成本的降低。

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