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Synthesis of Zeolite Added Clay and Sewage Sludge

机译:沸石合成粘土和污水污泥的合成

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Zeolite has been used as catalyzer, absorbent, ion-exchange matter and dehydrating agent due to its excellent catalytic property and ion-exchange. In recent years, many studies have been conducted to apply zeolite as new materials such as zeolite membranes and zeolite sensor films. To introduce properties of zeolite, it should be examined how zeolite could be reacted other materials. In this study, it is investigated whether zeolite is successfully synthesized or not when clay and/or sewage sludge coexist with zeolite precursor. Zeolite precursor was made of liquid sodium silicate and sodium aluminate. Mixing ratio of caly and/or sewage sludge is 0-10%(wt). To compare two processes, the mixture was synthsized by hydrothermal method and high temperature sintering process. It is synthesized by hydrothermal with sintering at high temperature process. The resulting materials were characterized by XRD and SEM. As a result, various type of zeolite such as zeolite X, zeolite A and zeolite P1 was successfully synthesized by hydrothermal method when clay and/or sewage coexist with zeolite precursor. However, zeolite was rarely synthesized by high temperature sintering process. Therefore, when preperation of zeolite material mixed with other material such as clay and sewage sludge, hydrothermal method is more effective than sintering at high temperature process.
机译:沸石由于其优异的催化性能和离子交换作用而被用作催化剂,吸收剂,离子交换物质和脱水剂。近年来,已经进行了许多研究以将沸石用作诸如沸石膜和沸石传感器膜的新材料。为了介绍沸石的性能,应检查沸石如何与其他材料发生反应。在这项研究中,研究了当粘土和/或污水污泥与沸石前体共存时是否成功合成了沸石。沸石前体由液体硅酸钠和铝酸钠制成。矿渣和/或污水污泥的混合比为0-10%(wt)。为了比较这两个过程,通过水热法和高温烧结法合成了该混合物。它是通过高温热液烧结法合成的。所得材料通过XRD和SEM表征。结果,当粘土和/或污水与沸石前体共存时,通过水热法成功地合成了各种类型的沸石,例如沸石X,沸石A和沸石P1。然而,沸石很少通过高温烧结过程合成。因此,当将沸石材料与诸如粘土和污水污泥的其他材料混合进行预浸处理时,水热法比高温过程中的烧结更有效。

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