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Effect of Property Changes of Iron Nanoparticles on Final Product Distribution in an Autotrophic Denitrification System from Groundwater

机译:铁纳米粒子的性能变化对地下水自肌肤脱氮系统中的最终产物分布的影响

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The iron particles extracted from biological and abiotic reactors were used to be characterized and compared with each other. TEM, SEM, XRD and XPS were utilized to observe and quantify the particle morphology and oxidized iron precipitates. Unlike the Fe3O4 and Fe2O3 coating of nanoscale zero-valent iron (NZVI) particles in the abiotic reactors, the major component of the coating of the activated particles from biological reactors was testified to be non-crystal FeOOH, which was the corrosive product in the reaction between iron and water. Furthermore, comparisons of different electron donors, including NZVI particles, corrosive particles and acid-washed Fe(0) powder, were carried out to evaluate the effect of this FeOOH coating. The results showed that application of corrosive particles could result in a lower nitrate reduction rate but a smaller proportion of ammonia relative to that in other two kinds of reactors. It indicated that the FeOOH coating might play an important role in the inhibition of ammonia generation.
机译:从生物和非生物反应器中提取的铁颗粒用于彼此特征和比较。使用TEM,SEM,XRD和XPS来观察和量化颗粒形态和氧化铁沉淀物。与非生物反应器中的纳米级零价铁(NZVI)颗粒的Fe3O4和Fe2O3涂层不同,从生物反应器中涂覆活化颗粒的主要成分被证实是非晶体FeOOH,这是腐蚀性产品铁和水之间的反应。此外,进行了不同电子给体,包括NZVI颗粒,腐蚀性颗粒和酸洗Fe(0)粉末的比较,以评估该FeOOH涂层的效果。结果表明,腐蚀性颗粒的施加可能导致较低的硝酸盐还原率,但氨相对于其他两种反应器相对于该反应器较少。表明FeOOH涂层可能在抑制氨生成中发挥重要作用。

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