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Nanostructure Design and Catalytic Performance of Mo/ZnAl-LDH in Cationic Orchid X-BL Removal

机译:阳离子兰花X-BL去除中MO / ZNAL-LDH的纳米结构设计和催化性能

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摘要

The nanostructure of ZnAl-layered double hydroxide (ZnAl-LDH) was designed to promote the catalytic performance of Mo-based ZnAl-LDH (Mo/ZnAl-LDH) catalysts, in a catalytic wet air oxidation (CWAO) process, under room temperature and pressure, in degradation of dye wastewater. Four most commonly used preparation methods, traditional precipitation (TP), hydrothermal synthesis (HS), sol-gel (SG), and urea co-precipitation (UC) were employed to prepare the ZnAl-LDH. The resulting Mo/ZnAl-LDH samples were contrasted through surface area, crystal structure, chemical state, and morphology. The degradation of cationic orchid X-BL, under room temperature and pressure, was developed to determine the catalytic activity of these Mo/ZnAl-LDH samples. The results showed that the nanostructure of ZnAl-LDH, prepared by HS, enhanced the adhesion of the catalytic active component, thus Mo/ZnAl-LDH had the highest catalytic activity of 84.2% color removal efficiency and 73.9% total organic carbon removal efficiency. Specific Mo species, such as Na2Mo2O7, Mo dispersion, and O2− ions were proved to be related with catalytic performance. These findings preliminarily clarified that LDHs preparation methods make a difference in the performance of Mo/LDHs.
机译:的ZnAl-层状双氢氧化物(的ZnAl-LDH)的纳米结构被设计为促进Mo基的ZnAl-LDH的催化性能(钼/的ZnAl-LDH)催化剂,在催化湿式氧化(CWAO)处理,室温下和压力下,在染料废水的降解。四个最常用的制备方法,传统的沉淀(TP),水热合成(HS),溶胶 - 凝胶(SG)和尿素共沉淀(UC)被用来制备的ZnAl-LDH。将所得的Mo /的ZnAl-LDH样品通过表面积,晶体结构,化学状态,和形态对比。阳离子兰X-BL的降解,室温和压力下,被开发来确定这些沫/的ZnAl-LDH样品的催化活性。结果表明的ZnAl-LDH的纳米结构,由HS制备,提高了催化剂活性成分的粘附性,从而沫/的ZnAl-LDH具有84.2%颜色去除效率和73.9%的总的有机碳的去除效率最高的催化活性。具体Mo物种,如Na2Mo2O7,沫分散体,和O2-的离子被证明具有催化性能有关。这些研究结果初步明确了水滑石的制备方法使钼/水滑石的性能差异。

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