He Runtian, Zhang Xiaoyu, Gu Jia-Nan, Li Kan, Guo Mingming, Jin Fangming, Jia Jinping, Sun Tonghua
School of Environmental Science and Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, P.R. China.
ACS Omega. 2024 Jun 26;9(27):29691-29699. doi: 10.1021/acsomega.4c03115. eCollection 2024 Jul 9.
In this work, iron-containing sludge is used to prepare iron-based catalysts for efficient HS selective catalytic oxidation. First, the effect of calcination temperatures on the catalytic activities of HS selective oxidation is carried out and it can be found that S-500 calcined at 500 °C performs excellent catalytic activity. Then, the catalytic performance of the S-500 catalyst is further optimized using alkaline treatment with different concentrations of NaOH solution. The results indicate that S-500(2.0) treated with 2 M NaOH solution has the highest catalytic activity of HS selective oxidation. Next, various characterization methods are used to analyze the structure and physical-chemical of the sludge-based catalysts. N-Brunauer-Emmett-Teller (N-BET) and X-ray photoelectron spectroscopy analyses show that the S-500(2.0) catalyst has the smallest average particle (11.17 nm), the biggest ratio of / (17.98) with bigger external specific surface area (49.09 m·g), a higher proportion of Fe species (50.88%), and surface adsorbed oxygen species (48.07%). Meanwhile, O-TPD and CO-TPD analysis indicates that the S-500(2.0) catalyst has a bigger value of the O/O ratio (50.56%) and (CO) /(CO) ratio of (31.41%), indicating that there are much more oxygen vacancies and weak alkaline sites. As a result, the excellent catalytic performance of HS selective oxidation can be attributed to its outstanding physical-chemical properties.
在这项工作中,含铁污泥被用于制备用于高效HS选择性催化氧化的铁基催化剂。首先,研究了煅烧温度对HS选择性氧化催化活性的影响,发现500℃煅烧的S-500表现出优异的催化活性。然后,使用不同浓度的NaOH溶液进行碱处理,进一步优化S-500催化剂的催化性能。结果表明,用2 M NaOH溶液处理的S-500(2.0)具有最高的HS选择性氧化催化活性。接下来,采用各种表征方法分析基于污泥的催化剂的结构和物理化学性质。N-布鲁诺尔-埃米特-泰勒(N-BET)和X射线光电子能谱分析表明,S-500(2.0)催化剂具有最小的平均粒径(11.17 nm)、最大的/比(17.98)以及更大的外比表面积(49.09 m·g)、更高比例的Fe物种(50.88%)和表面吸附氧物种(48.07%)。同时,O-TPD和CO-TPD分析表明,S-500(2.0)催化剂具有更大的O/O比(50.56%)和(CO) /(CO)比(31.41%),表明存在更多的氧空位和弱碱性位点。因此,HS选择性氧化的优异催化性能可归因于其出色的物理化学性质。