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首页> 外文期刊>Journal of Hazardous Materials >Biochar-supported nanoscale zero-valent iron as an efficient catalyst for organic degradation in groundwater
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Biochar-supported nanoscale zero-valent iron as an efficient catalyst for organic degradation in groundwater

机译:生物炭负载的纳米零价铁作为地下水中有机降解的有效催化剂

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摘要

High-efficiency and cost-effective catalysts are critical to completely mineralization of organic contaminants for in-situ groundwater remediation via advanced oxidation processes (AOPs). The engineered biochar is a promising method for waste biomass utilization and sustainable remediation. This study engineers maize stalk (S)and maize cob (C)-derived biochars (i.e., SB300, SB600, CB300, and CB600, respectively) with oxygen-containing functional groups as a carbon-based support for nanoscale zero-valent iron (nZVI). Morphological and physiochemical characterization showed that nZVI could be impregnated within the framework of the synthesized Fe-CB600 composite, which exhibited the largest surface area, pore volume, iron loading capacity, and Fe-0 proportion. Superior degradation efficiency (100% removal in 20 min) of trichloroethylene (TCE, 0.1 mM) and fast pseudo-first-order kinetics (k(obs) =22.0 ( -1)) were achieved via peroxymonosulfate (PMS, 5 mM) activation by the Fe-CB600 (1 g L-1) under groundwater condition (bicarbonate buffer solution at pH = 8.2). Superoxide radical and singlet oxygen mediated by Fe-0 and oxygen-containing group (i.e., C=O) were demonstrated as the major reactive oxygen species (ROSs) responsible for TCE dechlorination. The effectiveness and mechanism of the Fe/C composites for rectifying organic-contaminated groundwater were depicted in this study.
机译:高效和具有成本效益的催化剂对于通过高级氧化工艺(AOP)进行原位地下水修复的有机污染物的完全矿化至关重要。工程生物炭是一种有前途的废物生物质利用和可持续修复方法。这项研究工程师设计了带有秸秆的玉米秸秆和玉米芯(C)的生物炭(即分别为SB300,SB600,CB300和CB600),它们具有含氧官能团作为纳米级零价铁的碳基支持物( nZVI)。形态和理化特性表明,nZVI可以浸渍在合成的Fe-CB600复合材料的框架内,该复合材料具有最大的表面积,孔体积,铁负载量和Fe-0比例。通过过氧一硫酸盐(PMS,5 mM)活化获得了三氯乙烯(TCE,0.1 mM)优异的降解效率(20分钟内100%去除)和快速的拟一级动力学(k(obs)= 22.0(-1))由Fe-CB600(1 g L-1)在地下水条件下(pH = 8.2的碳酸氢盐缓冲溶液)制成。由Fe-0和含氧基团(即C = O)介导的超氧自由基和单线态氧被证明是负责TCE脱氯的主要活性氧(ROSs)。本研究描述了Fe / C复合材料对有机污染地下水的精馏效果和机理。

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