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热解碳质物质对有机化合物的活性和反应性。

Activity and Reactivity of Pyrogenic Carbonaceous Matter toward Organic Compounds.

机构信息

Department of Environmental Sciences, The Connecticut Agricultural Experiment Station , New Haven, Connecticut 06504-1106, United States.

Department of Civil and Environmental Engineering, Stanford University , 473 Via Ortega, Stanford, California 94305, United States.

出版信息

Environ Sci Technol. 2017 Aug 15;51(16):8893-8908. doi: 10.1021/acs.est.7b01088. Epub 2017 Jul 28.

Abstract

Pyrogenic carbonaceous matter (PCM) includes environmental black carbon (fossil fuel soot, biomass char), engineered carbons (biochar, activated carbon), and related materials like graphene and nanotubes. These materials contact organic pollutants due to their widespread presence in the environment or through their use in various engineering applications. This review covers recent advances in our understanding of adsorption and chemical reactions mediated by PCM and the links between these processes. It also covers adsorptive processes previously receiving little attention and ignored in models such as steric constraints, physicochemical effects of confinement in nanopores, π interactions of aromatic compounds with polyaromatic surfaces, and very strong hydrogen bonding of ionizable compounds with surface functional groups. Although previous research has regarded carbons merely as passive sorbents, recent studies show that PCM can promote chemical reactions of sorbed contaminants at ordinary temperature, including long-range electron conduction between molecules and between microbes and molecules, local redox reactions between molecules, and hydrolysis. PCM may itself contain redox-active functional groups that are capable of oxidizing or reducing organic compounds and of generating reactive oxygen species (ROS) from oxygen, peroxides, or ozone. Amorphous carbons contain persistent free radicals that may play a role in observed redox reactions and ROS generation. Reactions mediated by PCM can impact the biogeochemical fate of pollutants and lead to useful strategies for remediation.

摘要

热解碳质物质(Pyrogenic carbonaceous matter,PCM)包括环境黑碳(化石燃料烟尘、生物质炭)、工程碳(生物炭、活性炭)以及相关材料如石墨烯和纳米管。这些材料由于在环境中的广泛存在或在各种工程应用中的使用而接触有机污染物。本综述涵盖了我们对 PCM 介导的吸附和化学反应的理解的最新进展以及这些过程之间的联系。它还涵盖了以前很少受到关注的吸附过程,这些过程在模型中被忽略了,如空间位阻、纳米孔内的物理化学限制效应、芳香族化合物与多环芳烃表面的π相互作用以及可离解化合物与表面官能团的非常强的氢键。尽管先前的研究仅将碳视为被动吸附剂,但最近的研究表明,PCM 可以在常温下促进吸附污染物的化学反应,包括分子间和微生物与分子间的长程电子传导、分子间的局部氧化还原反应以及水解。PCM 本身可能含有氧化还原活性官能团,能够氧化或还原有机化合物,并从氧气、过氧化物或臭氧中生成活性氧物质(ROS)。无定形碳含有持久自由基,可能在观察到的氧化还原反应和 ROS 生成中发挥作用。PCM 介导的反应会影响污染物的生物地球化学命运,并为修复提供有用的策略。

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