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Ti-MCM-41在水中对邻苯二甲酸二甲酯的催化臭氧化

Catalytic ozonation of dimethyl phthalate by Ti-MCM-41 in water.

作者信息

Bing Jishuai, Wang Yaoting, Zou Yiming, Zhang Huimin, Chou Zhiling, Cheng Weixiang, Xiao Xin

机构信息

Jiangsu Key Laboratory of Marine Biological Resources and Environment, Jiangsu Ocean University Lianyungang 222005 China

Co-innovation Center of Jiangsu Marine Bio-Industry Technology, Jiangsu Ocean University Lianyungang 222005 China.

出版信息

RSC Adv. 2025 Jan 22;15(3):2106-2114. doi: 10.1039/d4ra07901a. eCollection 2025 Jan 16.

Abstract

A Ti-MCM-41 mesoporous molecular sieve catalyst was prepared by a hydrothermal method. Nitrogen adsorption desorption, XRD, TEM and SEM characterization results showed that the catalyst had a large specific surface area, a regular hexagonal pore structure, and titanium doping was uniformly dispersed in MCM-41 molecular sieves. The amount of titanium doping, reaction temperature, and the initial solution pH had important effects on the catalytic ozonation of dimethyl phthalate (DMP) by Ti-MCM-41. In comparison to ozonation alone and MCM-41/O, Ti-MCM-41/O exhibited the most effective degradation and mineralization of DMP, with a Si/Ti ratio of 80, a reaction temperature of 25 °C, and an initial solution pH of 5.4. Ozonation alone, MCM-41/O, and Ti-MCM-41/O removed 94%, 96%, and 100% of DMP after 15 min of reaction. At 60 min of reaction, the TOC removal rate of the Ti-MCM-41/O process reached 36%, which was 2.4 times that of the O process and 1.9 times that of the MCM-41/O process. The experimental results of initial solution pH and hydroxyl radical capture showed that Ti-MCM-41 had the highest catalytic activity near the zero-charge point, and hydroxyl radicals were active oxygen species. Ti-MCM-41 catalytic ozonation of DMP had synergistic effects and is a promising environmental catalytic material.

摘要

采用水热法制备了Ti-MCM-41介孔分子筛催化剂。氮气吸附脱附、XRD、TEM和SEM表征结果表明,该催化剂具有较大的比表面积、规则的六边形孔结构,且钛掺杂均匀分散在MCM-41分子筛中。钛掺杂量、反应温度和初始溶液pH值对Ti-MCM-41催化臭氧化邻苯二甲酸二甲酯(DMP)有重要影响。与单独臭氧化和MCM-41/O相比,Ti-MCM-41/O在Si/Ti比为80、反应温度为25℃、初始溶液pH值为5.4时,对DMP的降解和矿化效果最为显著。单独臭氧化、MCM-41/O和Ti-MCM-41/O在反应15分钟后分别去除了94%、96%和100%的DMP。在反应60分钟时,Ti-MCM-41/O工艺的TOC去除率达到36%,是单独臭氧化工艺的2.4倍,是MCM-41/O工艺的1.9倍。初始溶液pH值和羟基自由基捕获的实验结果表明,Ti-MCM-41在零电荷点附近具有最高的催化活性,且羟基自由基是活性氧物种。Ti-MCM-41催化臭氧化DMP具有协同效应,是一种有前景的环境催化材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6e1/11753080/3c6ab94774e7/d4ra07901a-f1.jpg

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