修复氯代烃污染的生物炭负载纳米零价铁制备条件优化实验

    Optimization of Preparation Conditions for Biochar-Loaded Nano-Zero-Valent Iron With Chlorinated Hydrocarbons

    • 摘要: 通过液相还原法制备花生壳生物炭负载纳米零价铁材料(nZVI/BC),并采用元素分析、比表面积和扫描电镜等多种表征方法以获得其结构性质,研究了nZVI/BC材料对3种常见的氯代有机污染物(三氯甲烷、氯苯、三氯乙烯)混合配制的模拟地下水中污染物的去除效果。结果表明,300℃热解的花生壳生物炭(BC)收益率最高,为44.07%,结构上相对而言保存较完整;纳米零价铁(nZVI)在花生壳BC表面负载较均匀,没有出现大的团聚,呈现链状结构。投加量相同时,炭铁质量比为2:1的复合材料对混合污染物的整体去除效果较好,对三氯甲烷的去除率为66.59%,三氯乙烯为72.40%,氯苯为74.85%。

       

      Abstract: The peanut shell biochar-loaded nano-zero-valent iron material (nZVI/BC) was prepared by liquid phase reduction method. The structural properties of the material were obtained by elemental analysis, specific surface area and scanning electron microscopy. The effect of nZVI/BC materials on the removal of pollutants in simulated groundwater prepared by mixing three common chlorinated organic pollutants (chloroform, chlorobenzene, trichloroethylene) was studied. The results show that the BC yield of 300℃ pyrolysis is up to 44.07%, and the structure is relatively intact. The nZVI has a uniform load on the surface of the peanut shell BC, and there is no large agglomeration, showing a chain structure. When the dosage is the same, the composite with carbon to iron ratio of 2:1 has better effect on the overall removal of mixed pollutants. The removal rate of chloroform is 66.59%, trichloroethylene is 72.40%, and chlorobenzene is 74.85%.

       

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