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The effects of operational parameters and common anions on the reactivity of zero-valent iron in bromate reduction

机译:操作参数和常见阴离子对溴酸盐还原中零价铁反应性的影响

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摘要

Bromate reduction by Fe(0) was investigated under various conditions in batch tests. The bromate was primarily reduced to bromide ions with possible adsorption onto iron. Bromate reduction by Fe(0) can be described by pseudo-first-order kinetics. The differences in surface areas, numbers of reactive sites, impurities, pretreatment methods and numbers of repeated uses of iron affected the rates of bromate reduction through reducing or accumulating a passive oxide film on the iron surface. The reduction of bromate was significantly affected by only the dissolved oxygen content at supersaturated concentrations or by decreasing the pH from 6 to 5. Increasing the temperature increased the bromate reduction rate, which followed the Arrhenius relationship with activation energy of 52.6 kJ mol~(-1) and the reduction rate increased with increased mixing rates. These observations indicate that bromate reduction by iron is a surface-mediated process and diffusion to the surface is essential. Under the test conditions, modest inhibitory effects on bromate reduction by Fe(0) from nitrite, chlorate and bicarbonate were observed and the inhibitory effect from phosphate was relatively larger. Enhanced reactivity of Fe(0) to bromate was observed in the presence of nitrate or sulfate. These findings suggest that bromate reduction by Fe(0) can be an effective method for bromate control.
机译:在分批测试中的各种条件下研究了Fe(0)对溴酸盐的还原作用。溴酸盐主要还原为溴离子,并可能吸附到铁上。 Fe(0)对溴酸盐的还原作用可通过拟一级动力学描述。表面积,反应位点数量,杂质,预处理方法和铁的重复使用次数之间的差异通过减少或在铁表面积聚钝化氧化膜而影响了溴酸盐的还原速率。仅过饱和浓度下的溶解氧含量或通过将pH从6降低至5即可显着影响溴酸盐的还原。升高温度可提高溴酸盐的还原速率,其遵循Arrhenius关系,活化能为52.6 kJ mol〜(- 1),还原速率随混合速率的增加而增加。这些观察结果表明,铁还原溴酸盐是表面介导的过程,扩散到表面是必不可少的。在测试条件下,观察到对亚硝酸盐,氯酸盐和碳酸氢盐中Fe(0)还原溴酸盐的抑制作用适中,而磷酸盐的抑制作用则相对较大。在硝酸盐或硫酸盐存在下,观察到Fe(0)对溴酸盐的反应性增强。这些发现表明通过Fe(0)减少溴酸盐可能是控制溴酸盐的有效方法。

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