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Synthesis and Characterizations of Metal Oxide-Sulfonic Acid Functionalized ZSM-5 for Photocatalytic Degradation and Adsorption of Dimethylarsenic Acid

机译:金属氧化物 - 磺酸官能化ZSM-5用于光催化降解的合成及特写,二甲基胂酸的吸附

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TiO_2 and ZnO were incorporated into ZSM-5 using titanium tetrachloride and zinc nitrate as the precursors respectively. The functional group of ZSM-5 was further modified using mercaptopropyl trimethoxysilane (MPTS). This method was used to produce a two-in-one composite namely TiO_2-ZSM5-SH and ZnO-ZSM5-SH which holds the abilities to degrade organic pollutants as well as to remove them from the environment. Determination of the composition and morphology of all synthesized catalyst complexes were characterized using Fourier Transformed Infrared (FTIR), X-Ray Diffraction (XRD), Scanning Electron Microscopy (SEM) and High Resolution Transmission Electron Microscopy (HR-TEM). Results obtained indicated that the average diameters for TiO_2-ZSM5-SH particles are 2.398μm, slightly larger than the diameter of ZnO-ZSM5-SH particles with an average of 1.8067μm. Both TiO_2-ZSM5-SH and ZnO-ZSM5-SH appeared as sphere-like shape and amorphous since both metal oxides were incorporated into the ZSM-5 pores. The compositions of these complexes were proven by the presence of a strong silica absorption band showing the existence of Si-O stretching vibrations and SiO_2 asymmetric vibrations in the synthesized complexes. For TiO_2-ZSM5-SH, the Ti-O stretching vibration can be seen at 3467.29 cm~(-1) and at 1637.86 cm~(-1) while Zn-O absorption band appeared at 455.52 cm~(-1) in ZnOZSM5-SH. The symmetric and asymmetric vibrations of -CH_2 and -CH_3 indicate the existence of alkyl groups in the ZSM-5. The ability of catalyst complexes synthesized as photocatalyst were applied and tested on the photodegradation of dimethylarsenic acid (DMA) under ultra violet (UV) radiation which showed that these catalyst complexes are proven be able to degrade DMA into less toxic intermediates and are able to adsorb the remaining arsenic species from the aqueous solutions.
机译:的TiO_2和ZnO被纳入ZSM-5中使用四氯化钛和硝酸锌分别作为前体。 ZSM-5的官能团使用巯基丙基三甲氧基硅烷(MPTS)的进一步修饰。使用该方法,以产生两个功能于一个复合的TiO_2即-ZSM5-SH和ZnO-ZSM5-SH,其保持降解有机污染物以及将它们从环境中清除能力。使用傅立叶变换红外(FTIR)中的所有合成的催化剂复合物的组成和形态的测定进行了表征,X射线衍射(XRD),扫描电子显微镜(SEM)和高分辨透射电子显微镜(HR-TEM)。所得到的结果表明,对于的TiO_2-ZSM5-SH颗粒的平均直径为2.398μm,比的ZnO-ZSM5-SH颗粒的直径,平均1.8067μm的稍大。两者的TiO_2-ZSM5-SH和ZnO-ZSM5-SH表现为球状和无定形因为两者的金属氧化物被纳入ZSM5气孔。这些配合物的组合物是通过强大的二氧化硅吸收带的存在表示在合成配合物的Si-O伸缩振动和SiO_2不对称振动的存在证实。对于的TiO_2-ZSM5-SH,使Ti-O伸缩振动可以在3467.29厘米可以看出〜(-1),并在1637.86厘米〜(-1),而Zn-O类的吸收带在455.52厘米〜(-1)在ZnOZSM5出现-SH。的-CH_2和-CH_3的对称和非对称的振动表示在ZSM-5的烷基的存在。合成为光催化剂的催化剂复合物的能力进行了应用和上下紫外(UV)辐射二甲基胂酸(DMA)的这表明这些催化剂络合物已被证明能够降低DMA成毒性较少中间体和能够吸附光降解测试剩余的砷物质从水溶液。

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