石油化工
开裂
焦炭
材料科学
烯烃纤维
冶金
工艺工程
环境科学
废物管理
化学
化学工程
作者
Steffen H. Symoens,Natalia Olahova,Andrés E. Muñoz Gandarillas,Hadiseh Karimi,Marko Djokic,Marie-Françoise Reyniers,Guy B. Marin,Kevin Van Geem
标识
DOI:10.1021/acs.iecr.8b03221
摘要
Although steam cracking is a mature technology, mitigation of coke formation remains one of the main challenges in the petrochemical industry. To increase the olefin output of existing plants, coil materials that can withstand higher temperatures are desired. This work reviews material technologies that were developed and tested in the past three decades to minimize the rate of coke deposition and extend the furnace run length. The material not only determines the mechanical properties of the coil but also affects the coking rate substantially. In some cases, differences in coking rates by more than a factor 10 have been observed. SiC materials could be operated at significantly higher temperatures, and this leads to higher olefin selectivity if one includes acetylene hydrogenation; however, the mechanical joints make it currently impossible to take advantage of their superior temperature resistance. On the industrial scale, operational improvements have been reported with advanced reactor surface technol...
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