School of Environmental and Chemical Engineering, Shanghai University, No.99 Shangda Road, Shanghai 200444, China; Center of Green Urban Mining & Industry Ecology, Shanghai University, No.99 Shangda Road, Shanghai 200444, China.
Department of Civil and Environmental Engineering, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China.
Bioresour Technol. 2019 Jun;281:457-468. doi: 10.1016/j.biortech.2019.02.105. Epub 2019 Feb 23.
Due to abundant biomass and eco-friendliness, biochar is exemplified as one of the most promising candidates to mediate the degradation of environmental contaminants. Recently, environmentally persistent free radicals (EPFRs) have been detected in biochars, which can activate SO or HO to generate reactive oxygen species for effective degradation of organic and inorganic contaminants. Comprehending the formation mechanisms of EPFRs in biochars and their interactions with contaminants is indispensable to further develop their environmental applications, e.g., direct and indirect EPFR-mediated removal of organics/inorganics by biochars. With reference to the information of EPFRs in environmental matrices, this article critically reviews the formation mechanisms, characteristics, interactions, and environmental applications of EPFRs in biochars. Synthesis conditions and loading of metals/organics are considered as key parameters controlling their concentrations, types, and activities. This review provides new and important insights into the fate and emerging applications of surface-bound EPFRs in biochars.
由于生物质丰富且生态友好,生物炭被认为是最有前途的候选材料之一,可以用来介导环境污染物的降解。最近,在生物炭中检测到了环境持久性自由基(EPFRs),它们可以激活 SO 或 HO 来生成活性氧物种,从而有效降解有机和无机污染物。理解生物炭中 EPFRs 的形成机制及其与污染物的相互作用对于进一步开发其环境应用至关重要,例如通过生物炭直接和间接 EPFR 介导的有机物/无机物去除。本文参考环境基质中 EPFRs 的信息,批判性地综述了生物炭中 EPFRs 的形成机制、特性、相互作用和环境应用。合成条件和金属/有机物的负载被认为是控制其浓度、类型和活性的关键参数。这篇综述为生物炭中表面结合的 EPFRs 的命运和新兴应用提供了新的重要见解。