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Synthesis of silica-supported nanoiron for Cr(VI) removal: applicationudof Box-Behnken Statistical Design (BBD)

机译:用于去除Cr(VI)的二氧化硅负载的纳米铁的合成:应用 udBox-Behnken统计设计学院(BBD)

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摘要

This study aimed to optimize the condition of silica-supported nanoscale zero valent iron (NZVI/SiO2) synthesis by colloidal impregnation method. Box-Behnken design (BBD) was used as a tool to create and analyze the 17 synthesized conditions of NZVI/SiO2 samples. The independent variables included ethanol concentration (0-100 vol%), amount of silica (0.025-0.125 g) and agitation speed (100-400 rpm). In addition, analysis of variance (ANOVA) for a response surface quadratic model was used to approximate statistical relationship of independent variables. The reducing performance of the synthesized NZVI/SiO2 was examined through removal of Cr(VI) contaminated in water. The optimum of NZVI/SiO2 synthesis was validated with 100 vol% of ethanol concentration, 0.075 g of silica amount, and 100 rpm of agitation speed. The materials were characterized using X-ray diffraction (XRD), scanning electron microscopy with energy dispersive X-ray spectroscopy (SEM-EDX), and nitrogen adsorption/desorption which showed the existence of NZVI phase, composition, and morphology. The Cr(VI) removal efficiency of the NZVI/SiO2 was tested further at the solution pH 4, 7 and 10 in comparison with that by pristine NZVI and silica-unsupported NZVI (NZVI + SiO2). Among the three materials, NZVI/SiO2 presented the highest Cr(VI) removal, especially at pH 7 and 10 with 98 and 94.41%, within 60 min. This was due to the adsorption of Cr(OH)3 and Fe(OH)3 precipitates over SiO2 resulting in availibilty of NZVI/SiO2’s active sites. The proposed mechanism of Cr(VI) removal by NZVI/SiO2 was also described.
机译:本研究旨在优化胶体浸渍法合成二氧化硅负载的纳米零价铁(NZVI / SiO2)的条件。 Box-Behnken设计(BBD)被用作创建和分析NZVI / SiO2样品的17种合成条件的工具。自变量包括乙醇浓度(0-100vol%),二氧化硅量(0.025-0.125g)和搅拌速度(100-400rpm)。另外,使用响应面二次模型的方差分析(ANOVA)来近似自变量的统计关系。通过去除水中的Cr(VI)来检查合成的NZVI / SiO2的还原性能。 NZVI / SiO2的最佳合成条件是,乙醇浓度为100%(体积),二氧化硅含量为0.075g,搅拌速度为100rpm。使用X射线衍射(XRD),具有能量色散X射线能谱的扫描电子显微镜(SEM-EDX)和氮吸附/脱附对材料进行了表征,这表明存在NZVI相,组成和形态。与原始NZVI和未负载二氧化硅的NZVI(NZVI + SiO2)相比,在溶液pH 4、7和10下进一步测试了NZVI / SiO2的Cr(VI)去除效率。在这三种材料中,NZVI / SiO2表现出最高的Cr(VI)去除率,尤其是在60分钟内在pH 7和10时,其98和94.41%的去除率最高。这是由于Cr(OH)3的吸附和Fe(OH)3沉淀物在SiO2上方的吸附,导致NZVI / SiO2活性位的可用性。还介绍了通过NZVI / SiO2去除Cr(VI)的机理。

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