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Nanoscale Zero Valent Iron Supported by Biomass-Activated Carbon for Highly Efficient Total Chromium Removal from Electroplating Wastewater

机译:纳米级零价铁由生物质活性炭支撑,用于高效的电镀废水中的总铬去除

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摘要

The application potential of nanoscale zero valent iron (nZVI) in wastewater treatment is huge and has attracted a lot of attention. In this study, the composite material BC-nZVI was prepared by emulsion of nZVI and biomass-activated carbon (BC) under the mechanical agitation condition, and was characterized by SEM-EDX, XRD, XPS, and FTIR. The decontamination abilities of BC-nZVI were tested by the removal of total chromium (Cr) from electroplating wastewater. The results showed that the removal efficiencies of Cr in the electroplating wastewater by nZVI particles can be effectively improved when supported with BC, but cannot be improved in its storage capacity. The chemical adsorption process between the Cr and BC-nZVI is the main rate-limiting step in the removal of total Cr from wastewater, and multiple parameters such as dosage, pH, and initial concentration of Cr was found to affect the rate.
机译:纳米尺度零价铁(NZVI)在废水处理中的应用潜力是巨大的,引起了很多关注。在该研究中,通过在机械搅拌条件下通过NZVI和生物质活性炭(BC)的乳液制备复合材料BC-NZVI,其特征在于SEM-EDX,XRD,XPS和FTIR。通过从电镀废水中除去总铬(Cr)来测试BC-NZVI的去污能力。结果表明,当用BC负载时,可以有效地改善了NZVI颗粒的电镀废水中Cr的去除效率,但不能以其存储容量提高。 Cr和BC-NZVI之间的化学吸附过程是从废水中除去总Cr的主要限速步骤,并且发现多种参数如剂量,pH和Cr的初始浓度影响速率。

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