双金属改性Fenton法快速环保降解污染土壤中的叔丁基硫醇

P. Roohi, E. Fatehifar
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引用次数: 1

摘要

本文研究了在汽油存在下,采用Fe2+/Fe3+/Fe0/Cu2+双金属Fenton处理土壤中叔丁基硫醇的快速修复。中心复合设计(CCD)方差分析和Pareto分析结果表明,H2O2、CuSO4、Fe3O4纳米颗粒、纳米零价铁(nZVI)和汽油初始浓度作为二次污染物对叔丁基硫醇去除率的影响分别为2.09%、13.38%、1.92%、2.01%和39.73%。H2O2/nZVI、H2O2/nFe3O4、H2O2/CuSO4、nZVI/nFe3O4和nZVI/CuSO4的相互作用对去除率有正向影响,而nFe3O4/CuSO4对去除率有负向影响。令人惊讶的是,在将nZVI和nFe3O4加入反应器之前,将它们混合并没有影响去除效率。结果表明,汽油初始浓度最低(2.5% w/w)、CuSO4最高浓度(0.12% w/w)、H2O2、纳米zvi和纳米fe3o4的最佳浓度(分别为8.92% w/v、0.1194 %w/w和0.0898 %w/w)是提高叔丁基硫醇去除率的最佳条件。在不调整pH和温度的情况下,在20分钟内叔丁基硫醇的去除率达到99.27%。
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Fast and environmental-friendly degradation of tert-butyl mercaptan from contaminated soil using bimetallic-modified Fenton process
In this work, the fast remediation of tert-butyl mercaptan from the polluted soil via a bimetallic Fenton treatment that included Fe2+/Fe3+/Fe0/Cu2+ in the presence of gasoline was studied. The analysis of variance and the Pareto analysis resulting from the central composite design (CCD) showed that the H2O2, CuSO4, Fe3O4 nanoparticles, nano zerovalent iron (nZVI), and gasoline initial concentrations as a secondary contaminant were influential factors on the removal efficiency of tert-butyl mercaptan (with an effectiveness of 2.09%, 13.38%, 1.92%, 2.01%, and 39.73% respectively). Moreover, the interaction of H2O2/nZVI, H2O2/nFe3O4, H2O2/CuSO4, nZVI/nFe3O4, and nZVI/CuSO4 had a positive effect on removal efficiency, while nFe3O4/CuSO4 had a negative one. Surprisingly, the mixing of nZVI and nFe3O4 before adding them to the reactor did not affect the removal efficiency. The optimum conditions suggested for the maximum removal efficiency of tert-butyl mercaptan were the minimum levels of the initial gasoline concentration (2.5 %w/w), a maximum level of CuSO4 (0.12 %w/w), and an optimum concentration of H2O2, nano-ZVI, and nano-Fe3O4 (8.92 %w/v, 0.1194 %w/w and 0.0898 %w/w, respectively) in the studied intervals. This condition led to a 99.27% efficiency removal of tert-butyl mercaptan removal in 20 minutes without pH and temperature adjustments.
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