Study on Desulfurization of Crude Benzene with Microcrystalline Adsorbent

IF 0.4 Q4 ENGINEERING, CHEMICAL
Zichun Guo, Shijie Wang, Hongming Fang, Huining Wei, Hui Li, Jiaqi Yan
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Abstract

An increasing number of coking enterprises are challenged by excessive sulfur content in their crude benzene products, which hinders sales and revenue. In this work, microcrystalline adsorbent was used to remove carbon disulfide and thiophene in crude benzene. BET, XRD, XRF and SEM characterization showed that the microcrystalline adsorbent has a large specific surface area, high crystallinity morphology, Si/Al ratio and regeneration stability. By investigating the effects of adsorption time, temperature, adsorbent dosage and regeneration times on the desulfurization performance of microcrystalline adsorbent W1, it was found that the desulfurization effect was mainly affected by time and temperature. When the experimental conditions at 20°C, 7 h, the amount of adsorbent was 4.5 g, the volume of crude benzene was 10 mL, resulting in desulfurization rate of 67% for thiophene, 52% for carbon disulfide, and 62% for total desulfurization, approximately 26% for crude benzene loss rate. The overall desulfurization rate remained stable around 55% after three regenerations, while the rate for rude benzene loss increased to roughly 30%. The results indicate that the microcrystalline adsorbent exhibits significant potential for desulfurization of crude benzene, providing valuable guidance and reference for coking enterprises.

Abstract Image

微晶吸附剂对粗苯脱硫的研究
越来越多的焦化企业面临粗苯产品含硫量超标的挑战,影响了企业的销售和收入。采用微晶吸附剂去除粗苯中的二硫化碳和噻吩。BET、XRD、XRF和SEM表征表明,该微晶吸附剂具有比表面积大、结晶度高、Si/Al比高、再生稳定性好等特点。通过考察吸附时间、温度、吸附剂用量和再生次数对微晶吸附剂W1脱硫性能的影响,发现脱硫效果主要受时间和温度的影响。当实验条件为20℃,7 h,吸附剂用量为4.5 g,粗苯体积为10 mL时,噻吩脱硫率为67%,二硫化碳脱硫率为52%,总脱硫率为62%,粗苯损失率约为26%。三次再生后,总脱硫率稳定在55%左右,粗苯损失率提高到30%左右。结果表明,该微晶吸附剂对粗苯具有显著的脱硫潜力,可为焦化企业提供有价值的指导和参考。
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来源期刊
Coke and Chemistry
Coke and Chemistry ENGINEERING, CHEMICAL-
CiteScore
0.70
自引率
50.00%
发文量
36
期刊介绍: The journal publishes scientific developments and applications in the field of coal beneficiation and preparation for coking, coking processes, design of coking ovens and equipment, by-product recovery, automation of technological processes, ecology and economics. It also presents indispensable information on the scientific events devoted to thermal rectification, use of smokeless coal as an energy source, and manufacture of different liquid and solid chemical products.
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