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Study on Remediation of Hexachlorobenzene Contaminated Soil by Mechanochemical Method

机译:机械化学方法研究六氯苯污染土壤的研究

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The mechanochemical method is a potential way to destroy pollutants such as heavy metals and organic compounds due to its advantages such as complete reaction, adaptation of various pollutants and low energy consumption, etc. Research work was conducted to investigate the feasibility of remediating the persistent organic pollutants (POPs) contaminated soil and how the parameters influence the destruction of the pollutants. In the study, hexachlorobenzene (HCB) was used as a presentative of the POPs in soil. Natural minerals such as albite and magnetite were selected as additives to treat HCB contaminated soil with the application of mechanochemical method. The reasonable operation parameters as well as the soil properties on the destruction of HCB were determined. Analysis such as Fourier Transform Infrared Spectroscopy (FTIR), X-ray diffractometer (XRD), X-ray Photoelectron Spectroscopy (XPS) and Raman Spectrometer were conducted for the supplement of mechanism study. A degradation rate of 92.5% for HCB was achieved under the optimal reaction condition. According to the XPS analysis results, the transformed valence state of iron, provided electrons for the destruction of HCB, on the basis of specific structure of albite. The amorphous carbon and graphite carbon were the final products of the destruction of HCB in the process of ball milling. The selected reagents with albite and magnetite would be viable for the damage of other POPs by mechanochemical method.
机译:机械化学方法是破坏污染物如重金属和有机化合物的潜在方法,因为其优点是完全反应,适应各种污染物和低能量消耗等。研究工作,以研究修复持久性有机的可行性污染物(污染物)污染土壤以及参数如何影响污染物的破坏。在该研究中,将六氯苯(HCB)用作土壤中的污染物的介绍。选择自然矿物,如Albite和磁铁矿作为添加剂,以治疗HCB受污染的土壤的应用。确定合理的操作参数以及对HCB破坏的土壤性质。进行诸如傅里叶变换红外光谱(FTIR),X射线衍射仪(XRD),X射线光电子能谱(XPS)和拉曼光谱仪进行分析,用于补充机制研究。在最佳反应条件下实现了HCB的92.5%的降解率。根据XPS分析结果,基于Albite的特定结构,提供了铁的转化价稳定性,为HCB的破坏提供了电子。无定形碳和石墨碳是球磨过程中HCB破坏的最终产物。通过机械化学方法,具有Albite和磁铁矿的选定试剂对于其他Pops的损坏将是可行的。

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