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生物炭基吸附剂对水中重金属分离的研究综述。

A review of biochar-based sorbents for separation of heavy metals from water.

机构信息

Department of Environmental Sciences and Engineering, Government College University Faisalabad, Faisalabad, Pakistan.

Key Laboratory of Urban Pollutant Conversion, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen City, Fujian, China.

出版信息

Int J Phytoremediation. 2020;22(2):111-126. doi: 10.1080/15226514.2019.1647405. Epub 2019 Nov 5.

Abstract

Biochar is the low-cost and environmental-friendly material which has shown a great potential for separation of heavy metals from water. The previous studies have established a superior role of biochar over other materials, such as activated carbon and inorganic sorbents (iron based) in efficient removal of toxic heavy metals from aqueous systems. Among the various factors influencing heavy metals sorption ability of biochar, types of feedstock/biomass and pyrolysis temperature play a significant role. The goal of this review is to increase our understanding of heavy metals sorption behavior by biochars - this is important as heavy metals sorption is driven based on biochar type, heavy metals species which involve numerous mechanisms, including the physical binding, complexation, ion exchange, surface precipitation and electrostatic interactions. In addition, this review paper describes various approaches to improve heavy metal sorption capacity of biochars by steam and acids/bases activations and impregnation of biochar-based composites with minerals, organic compounds and carbon-rich materials. The physical/chemical activation of biochars can improve the surface area, thus leading to their improved functionality, while modification/pretreatment methods help in synthesizing composites using biochar as a supporting media to develop new sorbents with efficient surface attributes for heavy metals removal from aqueous solutions.

摘要

生物炭是一种低成本、环保的材料,在重金属从水中分离方面显示出巨大的潜力。先前的研究已经确立了生物炭在其他材料(如活性炭和无机吸附剂(基于铁))之上的优越地位,在从水系统中有效去除有毒重金属方面。在影响生物炭重金属吸附能力的各种因素中,原料/生物质的类型和热解温度起着重要作用。本综述的目的是提高我们对生物炭吸附重金属行为的理解——这很重要,因为重金属的吸附是基于生物炭的类型驱动的,重金属物种涉及多种机制,包括物理结合、络合、离子交换、表面沉淀和静电相互作用。此外,本文还描述了通过蒸汽和酸碱对生物炭进行活化,以及通过浸渍矿物、有机化合物和富碳材料来提高生物炭基复合材料的重金属吸附能力的各种方法。生物炭的物理/化学活化可以提高其表面积,从而提高其功能,而改性/预处理方法有助于利用生物炭作为支撑介质合成复合材料,开发具有高效表面特性的新型吸附剂,以从水溶液中去除重金属。

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