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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Effects of synthesis conditions on the characteristics and reactivity of nano scale zero valent iron
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Effects of synthesis conditions on the characteristics and reactivity of nano scale zero valent iron

机译:合成条件对纳米零价铁特性和反应性的影响

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摘要

Application of nano zero valent iron (NZVI) is an innovative technology for water treatment and soil/groundwater remediation. Among various NZVI synthesis methods, chemical reduction is widely used due to its simplicity and chemical homogeneity. However, the synthesis procedure had not yet been clearly standardized. In this study, the effects of reaction conditions such as reaction time and NZVI concentration on NZVI characteristics and reactivity were investigated. Nanocluster and whisker structures were obtained under fast reduction conditions. The particle size was dramatically decreased from 87.4 nm to 9.5 nm under short reaction time and high reductant concentration. Simultaneously, the BET surface area was increased from 8.4m~2/g to 45.4m~2/g. The reactivity of NZVI was evaluated by a nitrate reduction test. The experimental data were interpreted by pseudo first order kinetics with first order deactivation. The reactivity was increased in the direction of high reductant concentration and fast synthesis, although deactivation increased in the same direction. Among the 4 reaction steps for NZVI synthesis, the nuclei formation step was determined to be the key step in determining NZVI characteristics. Therefore, it is important to control the reaction time and concentration in order to maximize the efficiency of NZVI.
机译:纳米零价铁(NZVI)的应用是水处理和土壤/地下水修复的创新技术。在各种NZVI合成方法中,化学还原由于其简单性和化学均一性而被广泛使用。但是,合成程序尚未明确标准化。在这项研究中,研究了反应条件如反应时间和NZVI浓度对NZVI特性和反应性的影响。在快速还原条件下获得了纳米团簇和晶须结构。在短的反应时间和高的还原剂浓度下,粒径从87.4 nm急剧减小到9.5 nm。同时,BET表面积从8.4m〜2 / g增加到45.4m〜2 / g。 NZVI的反应性通过硝酸盐还原试验评估。用伪一级动力学和一级失活解释了实验数据。反应性在高还原剂浓度和快速合成的方向上增加,尽管失活在相同方向上增加。在NZVI合成的四个反应步骤中,核形成步骤被确定为确定NZVI特性的关键步骤。因此,重要的是控制反应时间和浓度以最大化NZVI的效率。

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