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Reduction of Hexavalent Chromium in Water Using Iron-Aluminum Bimetallic Particles

机译:使用铁 - 铝双金属颗粒还原水中六价铬

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Metal finishing wastewater containing chromium was conventionally treated by chemical precipitation and ion exchange techniques. Zero-valent metals such as iron, aluminum, zinc that possess high reduction potentials are frequently employed to remediate and process the contaminated groundwater. Iron-aluminum bimetallic metal (Fe-Al) is developed to improve the reduction capacity of Fe, Al is regarded as the electron supplier to prevent the precipitates formed on the surface of Fe. The aim of this research is to study the performance of Fe-Al on the reduction of hexavalent chromium ion (Cr~(6+)) in water under several operation parameters including initial pH value, dosage of Fe-Al to Cr6+ ratio (Fe-Al/Cr~(+6)), and Fe contents of Fe-Al particles. The results indicated that the sizes and specific surface area of Fe-Al particles increased with higher Fe content. The metal species on the surface of Fe-Al particles were identified by an X-ray diffraction spectrometer (XRD). Reduction of Cr~(6+) with Fe-Al particles consumes the H~+ in water resulting in the increase of pH value with the reaction time. The study showed that the reduction potentials of Fe-Al on Cr~(6+) are promoted under acidic state and with higher dosage of Fe-Al/Cr~(+6).
机译:含有铬的金属整理废水通常通过化学沉淀和离子交换技术处理。零价金属如铁,铝,具有高减速电位的锌,经常用于修复和处理受污染的地下水。制定铁铝双金属金属(FE-A1)以提高FE的减少能力,AL被视为电子供应商,以防止在Fe的表面上形成的沉淀物。本研究的目的是研究Fe-A1在包括初始pH值的几个操作参数下的水中六价铬离子(Cr〜(6+))的性能,Fe-A1至Cr6 +比例(Fe -Al / Cr〜(+6))和Fe-Al颗粒的Fe含量。结果表明,Fe-Al颗粒的尺寸和比表面积随更高的Fe含量增加。通过X射线衍射光谱仪(XRD)鉴定Fe-Al颗粒表面上的金属物质。用Fe-Al颗粒还原Cr〜(6+)消耗水中的H〜+,导致对反应时间的pH值的增加。该研究表明,在Cr〜(6+)上的Fe-Al的还原电位在酸性状态下促进,较高剂量的Fe-Al / Cr〜(+6)。

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