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Degradation of perchlorate using green method: Mechanism and kinetic process

机译:绿色方法降解高氯酸盐的机理和动力学过程

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This work analyzes the degradation of toxic perchlorate from wastewater and its conversion to non-toxic chloride ion through nano-scale zero valent iron (nZVI) coating. To prevent its agglomeration and to provide the required stabilization and more removal efficiency, it was coated with various coating agents which are co-friendly (green agents) and inexpensive. At first, nZVI was synthesized using green method. Thereafter, it was used for the removal of perchlorate. NZVI was characterized by X-ray diffraction (XRD), dynamic light scattering (DLS) and transmission electron microscopy (TEM) techniques. Data show that nZVI coated with starch had the size range of 20 to 60 nm and spherical morphology and thickness of about 60 nm. Analysis results of UV-Spectrophotometry and ion chromatography showed that perchlorate was removed with more efficiency (up over 90%) under optimal conditions, and for one week, it was coated with nZVI using starch. Also, the parameters of the removal efficiency include temperature, time reaction, pH and amount of nZVI. Activation energy (Ea) of 16.77 kJ mol-1 and constant rate (k) of 0.0242 min-1 were obtained from the removal of perchlorate under optimal conditions. The study shows that the obtained results improved more than previously.
机译:这项工作分析了废水中有毒高氯酸盐的降解及其通过纳米级零价铁(nZVI)涂层转化为无毒氯离子的过程。为了防止其结块并提供所需的稳定性和更高的去除效率,在其上涂了各种涂层剂,这些涂层剂是友好的(绿色涂层剂)且价格便宜。首先,使用绿色方法合成nZVI。此后,将其用于除去高氯酸盐。 NZVI的特征在于X射线衍射(XRD),动态光散射(DLS)和透射电子显微镜(TEM)技术。数据显示,用淀粉包被的nZVI具有20至60nm的尺寸范围,球形形态和约60nm的厚度。紫外分光光度法和离子色谱法的分析结果表明,在最佳条件下,高氯酸盐的去除效率更高(高达90%以上),并用淀粉在nZVI上涂覆了一周。另外,去除效率的参数包括温度,时间反应,pH和nZVI的量。通过在最佳条件下去除高氯酸盐,可获得16.77 kJ mol-1的活化能(Ea)和0.0242 min-1的恒定速率(k)。研究表明,获得的结果比以前有更多的改进。

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