乙烯裂化装置高压管的结焦及缓解措施

Xinqiang Wu, H. Jing, Yingkui Zheng, Z. Yao, W. Ke
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引用次数: 6

摘要

摘要对乙烷裂解过程中工业高压裂化管内壁沉积的焦炭进行了详细的研究,阐明了该过程的机理。与金属管相邻的矿床外壁由丝状焦炭组成。层状焦炭占据了矿床的中心区域,而内部区域,毗邻反应气体,由焦炭颗粒组成。管壁长丝状焦炭的形成与管材成分密切相关,但片状焦炭和焦粒均为气相反应产物,与管材无关。层状和颗粒状焦炭在形态上的差异归因于焦化过程的变化。减轻或防止管结焦的可能方法包括降低管内壁材料的催化活性和改进乙烯蒸汽裂解工艺。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coking of HP tubes in ethylene steam cracking plant and its mitigation
Abstract Coke deposited on the inner wall of industrial HP cracker tubing during the cracking of ethane has been investigated in detail to elucidate the mechanism of the coking process. The outer wall of the deposit, adjacent to the metal tube, consists of filamentary coke. Lamellar coke occupies the central zone of the deposit, while the inner zone, adjacent to the reaction gases, is comprised of coke particles. The formation of the filamentary coke at the tube wall is closely related to composition of the tube material, but both the lamellar coke and the coke particles are derived from the gas phase reactions so bear no relation to the tube material. The difference in morphology between the lamellar and particulate types of coke is attributed to changes in the coking process. Possible ways to alleviate or prevent coking of the tube include reduction of the catalytic activity of the material at the inner wall of the tube and improvement of the ethylene steam cracking process.
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