Bing Jishuai, Wang Yaoting, Zou Yiming, Zhang Huimin, Chou Zhiling, Cheng Weixiang, Xiao Xin
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.
RSC Adv. 2025 Jan 22;15(3):2106-2114. doi: 10.1039/d4ra07901a. eCollection 2025 Jan 16.
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.
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。