Petroleum Refinery Engineering ›› 2021, Vol. 51 ›› Issue (12): 29-33.
• PROCESSING • Previous Articles Next Articles
Guo Wei,Bai Rui,Yang Jinhua,Liu Hongwei,Bao Jicai,Liu Liqiang
Online:
Published:
郭伟,白锐,杨进华,刘宏伟,鲍积才,刘丽强
作者简介:
Abstract: The RFCC unit of SINOPEC Hainan Refining & Chemical Co., Ltd. increases the production of propylene in LPG in the environment polluted by high content iron. The first stage is blank calibration stage, and the second stage adopts CMT catalyst system. The volume fraction of propylene in LPG increases by about 1.0% by recycling gasoline at different positions of riser. In the third stage, by changing the operating conditions and controlling the catalyst activity, the volume fraction of propylene in LPG increases by 3%~4% under the same amount of recycled gasoline, and the crude gasoline is finally refined and enters the lower nozzle of the riser. Combined with increasing the ratio of agent to oil in the device, the yield of propylene can reach more than 8%, achieving the purpose of decreasing oil and increasing chemical.
Key words: RFCC, propylene, iron content, iron resistant catalyst, recycling gasoline, increasing the ratio of agent to oil
摘要: 中国石化海南炼油化工有限公司重油催化裂化装置在原料铁含量高的环境下增产液化石油气、丙烯。第一阶段为空白标定阶段。第二阶段采用CMT催化剂体系,在相同操作条件下,通过在提升管不同位置回炼汽油,液化石油气中丙烯体积分数增长约1.0百分点。在第三阶段,通过改变操作条件、控制催化剂活性,在相同汽油回炼量下,液化石油气中的丙烯体积分数增长3~4百分点,最终得到回炼粗汽油,且进入提升管靠下的喷嘴,结合增加装置剂油比,丙烯收率可达8%以上,达到降油增化目的。
关键词: 重油催化裂化装置, 丙烯, 铁含量, 抗铁性催化剂, 回炼汽油, 增加剂油比
Guo Wei, Bai Rui, Yang Jinhua, Liu Hongwei, Bao Jicai, Liu Liqiang. Effect of iron in feedstock on propylene production of heavy oil catalytic cracking unit[J]. Petroleum Refinery Engineering, 2021, 51(12): 29-33.
郭伟, 白锐, 杨进华, 刘宏伟, 鲍积才, 刘丽强. 原料中铁对重油催化裂化装置增产丙烯的影响分析[J]. 炼油技术与工程, 2021, 51(12): 29-33.
0 / / Recommend
Add to citation manager EndNote|Ris|BibTeX
URL: https://journal01.magtechjournal.com/lyjsygc/EN/
https://journal01.magtechjournal.com/lyjsygc/EN/Y2021/V51/I12/29
[1]陈永利,陈浩,郭振宇.丙烯产业发展现状及趋势分析[J].炼油技术与工程,2019,49(12):1-2.
[2]李宁,任飞,刘守军,等.CMT-1HN催化剂在高含量铁污染条件下的工业应用[J].石油炼制与化工,2019,50(2):63.
[3]陈俊武,许友好.催化裂化工艺与工程[M].3版.北京:中国石化出版社,2015:563.
[4]许友好,李宁,华仲炯.催化裂化工艺技术手册[M].北京:中国石化出版社,2018:227.
[5]李宁,汪加民,张琰彬.催化裂化装置加工常三线直馏柴油的工业实践[J].炼油技术与工程,2016,46(2):79.
[6]张秋剑.利用正十二烷研究催化裂化中的氢转移指数[J].石油炼制与化工,2013,44(6):6.