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Structural characteristic and ammonium and manganese catalytic activity of two types of filter media in groundwater treatment

机译:地下水处理中两种过滤介质的结构特征和铵催化活性

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Two types of filter media in groundwater treatment were conducted for a comparative study of surface structure and catalytic performance. Natural filter media was adopted from a conventional aeration-filtration groundwater treatment plant, and active filter media as a novel and promising filter media was also adopted. The physicochemical properties of these two kinds of filter media were characterized using numerous analytical techniques, such as X-Ray diffraction (XRD), scanning electron microscope (SEM), energy dispersive X-ray (EDX), X-ray photoelectron spectroscopy (XPS) and Zeta potential. The catalytic activities of these filter media were evaluated for ammonium and manganese oxidation. XRD data showed that both active filter media and natural filter media belonged to birnessite family. A new manganese dioxide (MnO2) phase (PDF#72-1982) was found in the structure of natural filter media. The SEM micrograph of natural filter media showed honeycomb structures and the active filter media presented plate structures and consisted of stacked particle. These natural filter media presented lower level of some trace elements such as calcium and magnesium, lower degree of crystallinity, lower Mn(III) content and lattice oxygen content than that of active filter media, which were associated with its poor ammonium and manganese catalytic activities. In addition, some gamma-Fe2O3 and MnCO3 were found in the coating which may hinder the ammonium and manganese catalytic oxidation. This study provides a thorough and comprehensive understanding about the most commonly used filter media in water treatment, which can provide a theoretical guide to practical applications. (C) 2018 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:对地下水处理中的两种类型的过滤介质进行了表面结构和催化性能的比较研究。通过传统的曝气过滤地下水处理厂采用天然过滤介质,还采用了活性过滤介质作为新颖和有前途的过滤介质。使用许多分析技术,例如X射线衍射(XRD),扫描电子显微镜(SEM),能量分散X射线(EDX),X射线光电子能谱(XPS )和Zeta潜力。评价这些过滤介质的催化活性用于铵和锰氧化。 XRD数据显示,有源过滤介质和自然过滤介质都属于Birnernyite系列。在天然过滤介质的结构中发现了一种新的二氧化锰(MNO2)相(PDF#72-1982)。自然过滤介质的SEM显微照片显示蜂窝结构,并且有源过滤介质呈现板结构并由堆叠颗粒组成。这些天然过滤介质呈现出一些微量元素的较低水平,例如钙和镁,较低的结晶度,下部Mn(III)含量和晶格氧含量,而不是活性过滤介质,与其贫铵和锰催化活性相关。此外,在涂层中发现了一些γ-Fe 2 O 3和MnCO 3,其可能阻碍铵和锰催化氧化。本研究提供了对水处理中最常用的过滤介质的全面和全面的了解,可以为实际应用提供理论指南。 (c)2018中国科学院生态环境科学研究中心。 elsevier b.v出版。

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