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凹凸棒石中镧/铜共掺杂催化氧化亚甲基蓝的动力学

Kinetics of Catalytic Oxidation of Methylene Blue with La/Cu Co-Doped in Attapulgite.

作者信息

Shang Jianping, Zhang Wei, Dong Zhengliang, Fan Hua-Jun Shawn

机构信息

College of Chemical Engineering, Sichuan University of Science and Engineering, Zigong 643099, China.

Sichuan Institute of Geological Survey Salt Geology Drilling Team, Chengdu 610059, China.

出版信息

Materials (Basel). 2023 Mar 3;16(5):2087. doi: 10.3390/ma16052087.

Abstract

Methylene blue (MB) is a common pollutant in wastewater from the printing and dyeing industries. In this study, attapulgite (ATP) was modified with La/Cu, using the method of equivolumetric impregnation. The La/Cu -ATP nanocomposites were characterized using X-ray diffraction (XRD) and scanning electron microscopy (SEM). The catalytic properties of the modified ATP and the original ATP were compared. At the same time, the influence of the reaction temperature, concentration of methylene blue and pH on the reaction rate were investigated. The optimal reaction conditions are as follows: MB concentration is 80 mg/L, the dosage of the catalyst is 0.30 g, the dosage of hydrogen peroxide is 2 mL, the pH is 10 and the reaction temperature is 50 °C. Under these conditions, the degradation rate of MB can reach 98%. The recatalysis experiment was carried out reusing the catalyst, and the experimental results showed that the degradation rate could reach 65% after three uses, indicating that the catalyst could be recycled many times and costs could be reduced. Finally, the degradation mechanism of MB was speculated, and the reaction kinetic equation was obtained as follows: -dc/dt = 14,044 exp(-3598.34/T)C(O).

摘要

亚甲基蓝(MB)是印染行业废水中的常见污染物。本研究采用等体积浸渍法用La/Cu对凹凸棒土(ATP)进行改性。利用X射线衍射(XRD)和扫描电子显微镜(SEM)对La/Cu -ATP纳米复合材料进行表征。比较了改性ATP和原始ATP的催化性能。同时,研究了反应温度、亚甲基蓝浓度和pH对反应速率的影响。最佳反应条件如下:MB浓度为80 mg/L,催化剂用量为0.30 g,过氧化氢用量为2 mL,pH为10,反应温度为50℃。在此条件下,MB的降解率可达98%。对催化剂进行重复使用的再催化实验,实验结果表明,三次使用后降解率可达65%,表明该催化剂可多次循环使用,降低成本。最后,推测了MB的降解机理,得到反应动力学方程如下:-dc/dt = 14,044 exp(-3598.34/T)C(O) 。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c570/10003998/912baa3bc06f/materials-16-02087-g001.jpg

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