Zhao Shunzheng, Yi Honghong, Tang Xiaolong, Jiang Shanxue, Gao Fengyu, Zhang Bowen, Zuo Yanran, Wang Zhixiang
Department of Environmental Engineering, College of Civil and Environmental Engineering, University of Science and Technology Beijing, Beijing 100083, China.
ScientificWorldJournal. 2013 Jul 15;2013:739501. doi: 10.1155/2013/739501. eCollection 2013.
Catalytic hydrolysis technology of carbonyl sulfide (COS) at low temperature was reviewed, including the development of catalysts, reaction kinetics, and reaction mechanism of COS hydrolysis. It was indicated that the catalysts are mainly involved metal oxide and activated carbon. The active ingredients which can load on COS hydrolysis catalyst include alkali metal, alkaline earth metal, transition metal oxides, rare earth metal oxides, mixed metal oxides, and nanometal oxides. The catalytic hydrolysis of COS is a first-order reaction with respect to carbonyl sulfide, while the reaction order of water changes as the reaction conditions change. The controlling steps are also different because the reaction conditions such as concentration of carbonyl sulfide, reaction temperature, water-air ratio, and reaction atmosphere are different. The hydrolysis of carbonyl sulfide is base-catalyzed reaction, and the force of the base site has an important effect on the hydrolysis of carbonyl sulfide.
综述了低温羰基硫(COS)催化水解技术,包括催化剂的发展、反应动力学以及COS水解的反应机理。结果表明,催化剂主要涉及金属氧化物和活性炭。可负载于COS水解催化剂上的活性成分包括碱金属、碱土金属、过渡金属氧化物、稀土金属氧化物、混合金属氧化物和纳米金属氧化物。COS的催化水解对羰基硫而言是一级反应,而水的反应级数随反应条件的变化而改变。由于羰基硫浓度、反应温度、水-气比和反应气氛等反应条件不同,控制步骤也不同。羰基硫的水解是碱催化反应,碱位的作用力对羰基硫的水解有重要影响。