National-Local Joint Engineering Research Center of Biomass Refining and High-Quality Utilization, Changzhou Key Laboratory of Biomass Green- Safe & High Value Utilization Technology, Institute of Urban and Rural Mining, Changzhou University, Jiangsu, 213164, China.
School of Management and Economics, North China University of Water Resources and Electric Power, Zhengzhou, 450046, China.
J Environ Manage. 2023 Nov 1;345:118661. doi: 10.1016/j.jenvman.2023.118661. Epub 2023 Jul 27.
Volatile organic compounds (VOCs) evolved from biomass gasification plays a positive role in the formation of PM and odor pollution. In order to improve the removal rate of various VOCs produced by biomass gasification, a nickel-based supported HZSM-5 cataly st (Ni/HZSM-5 and Ni-Ca-Co/HZSM-5) was prepared by different auxiliary methods, Ni loadings, and pyrolysis temperatures. The catalytic cracking performance of Ni/HZSM-5 catalysts for different VOCs model compounds such as toluene, phenol, furan, acetic acid and cyclohexane were studied in a fixed-bed reactor. The catalysts were further characterized and analyzed by XRD, SEM, XPS and BET. The results showed that the Ni/HZSM--C-Co5 catalyst prepared by ultrasonic-assisted excess impregnation method with Ni loading of 8 wt%, Ca loading of 4 wt%, Co loading of 0.1 wt% had strong catalytic activity for VOCs degradation. With the increase of the cracking temperature, the conversion rate and gas yield of from model compound cracking improved significantly. At 800 °C, the conversion of each model compound was more than 90%, accompanied by the generation of cracking gases such as H and CH. The selectivity of H and CH from toluene cracking reached 93%, and cyclohexane reached 98%. The models with higher oxygen content and lower bond energy were more likely to undergo reforming reaction to form small molecular gas. Model compounds with large molecular weight and high carbon content provided more carbon sources. Under the conversion degree towards the gas direction was high. This study provides a new idea on the removal of VOCs for the efficient utilization of biomass resources.
挥发性有机化合物(VOCs)源自生物质气化,对 PM 和恶臭污染的形成有积极作用。为提高生物质气化过程中产生的各类 VOCs 的去除率,采用不同辅助方法、Ni 负载量和热解温度制备了负载型 HZSM-5 催化剂(Ni/HZSM-5 和 Ni-Ca-Co/HZSM-5)。采用固定床反应器,研究了 Ni/HZSM-5 催化剂对甲苯、苯酚、呋喃、乙酸和环己烷等不同 VOCs 模型化合物的催化裂解性能。进一步采用 XRD、SEM、XPS 和 BET 对催化剂进行了表征和分析。结果表明,采用超声辅助过量浸渍法制备的 Ni 负载量为 8wt%、Ca 负载量为 4wt%、Co 负载量为 0.1wt%的 Ni/HZSM-5-Ca-Co5 催化剂对 VOCs 降解具有较强的催化活性。随着裂解温度的升高,模型化合物裂解的转化率和气体产率显著提高。在 800℃时,各模型化合物的转化率均大于 90%,伴有 H 和 CH 等裂解气生成。甲苯裂解生成 H 和 CH 的选择性达到 93%,环己烷达到 98%。含氧量高、键能低的模型化合物更容易发生重整反应,生成小分子气体。而分子量较大、碳含量较高的模型化合物则提供了更多的碳源。在高转化率的情况下,有利于向气体方向转化。该研究为生物质资源的高效利用提供了去除 VOCs 的新思路。