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用于各种环境应用的生物炭衍生碳质材料:系统评价。

Biochar derived carbonaceous material for various environmental applications: Systematic review.

机构信息

Department of Sustainable Engineering, Institute of Biotechnology, Saveetha School of Engineering, SIMATS, Chennai, 602105, India.

Department of Chemical Engineering, Sri Sivasubramaniya Nadar College of Engineering, Chennai - 603110, India; Centre of Excellence in Water Research (CEWAR), Sri Sivasubramaniya Nadar College of Engineering, Chennai - 603110, India.

出版信息

Environ Res. 2022 Nov;214(Pt 1):113857. doi: 10.1016/j.envres.2022.113857. Epub 2022 Jul 12.

Abstract

Biochar is the solid material produced from the carbonization of organic feedstock biomass. This material has several unique characteristics such as greater carbon content, good electrical conductivity, high stability and large surface area, which can be applied in several research areas such as generation of power and wastewater treatment. In connection with this, recently, the investigations on biochar significantly focus on the removal of toxic heavy metals since the biochar material is easily available and environmentally friendly. According to an environmental analytical device, biochar-derived carbonaceous material has been additionally applied to the synthesis of an effective, sensitive, and low-cost electrochemical sensor. Biochar with an assessment of electrochemical properties has engaged with different redox reactions in water. In this survey, electrochemical ways of behaving of biochar in light of the electrochemical structures were analytically compiled as well as the impact from biomass sources and manufacturing process including carbonization strategies, pre-treatment/changed techniques. This review emphasizes the various synthesis methods of biochar form organic feedstock, properties and different modulations of biochar for the bioremediation of heavy metals. This review study emphasizes the utilization of biochar as sensing platform and supercapacitor for electrode fabrication in electrochemical biosensor to enhance the remediation of toxic contaminants from water streams and by switching the less ecological traditional materials. Brief information on the techniques employed for packaging biochar as carbon electrode is summarized. Scope in the aspect of environmental concern of biochar, future challenges and prospects are proposed in detail.

摘要

生物炭是有机生物质原料碳化后产生的固体材料。这种材料具有几个独特的特点,如较高的碳含量、良好的导电性、高稳定性和大表面积,可应用于发电和废水处理等多个研究领域。最近,生物炭的研究主要集中在去除有毒重金属上,因为生物炭材料容易获得且对环境友好。根据环境分析设备,生物炭衍生的碳质材料已被额外应用于合成有效、敏感和低成本的电化学传感器。具有电化学性能评估的生物炭与水中的不同氧化还原反应有关。在这项调查中,生物炭的电化学行为根据电化学结构进行了分析,并分析了生物质来源和制造工艺(包括碳化策略、预处理/改性技术)的影响。本综述强调了生物炭从有机原料的各种合成方法、性质和不同调制方法,用于重金属的生物修复。本综述研究强调了生物炭作为传感平台和超级电容器在电化学生物传感器中电极制造的应用,以增强从水流中修复有毒污染物,并通过切换不太环保的传统材料。简要介绍了用于将生物炭包装为碳电极的技术。详细提出了生物炭在环境方面的关注范围、未来的挑战和前景。

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