炼油技术与工程 ›› 2023, Vol. 53 ›› Issue (4): 13-16.

• 加工工艺 • 上一篇    下一篇

连续重整装置反应器操作条件优化研究

毛玲娟1, 代恩东1, 钟湘生1, 刘亭亭1, 刘俊贤2, 胡健2, 李森1   

  1. 1.浙江石油化工有限公司; 2.广东辛孚科技有限公司杭州分公司
  • 收稿日期:2022-12-12 出版日期:2023-04-15 发布日期:2023-04-23
  • 作者简介:毛玲娟,工程师,本科,从事装置智能优化工作。;*刘亭亭,高级工程师,从事智能炼化建设、智能优化工作。联系电话:15117974008,E-mail:zsh_liutingt@rong-sheng.com。;
  • 基金资助:
    浙江省科技计划项目(2022C01176);浙江省舟山市科技计划项目(2021C11004);浙江石油化工有限公司科学研究与技术开发项目(ZSH-RD-21-051;ZSH-RD-20-010);

Study on optimization of reactor operating conditions in continuous catalytic reforming unit

Mao Lingjuan1, Dai Endong1, Zhong Xiangsheng1, Liu Tingting1, Liu Junxian2, Hu Jian2, Li Sen1   

  1. 1.Zhejiang Petroleum & Chemical Co.,Ltd.; 2.Hangzhou branch office,Guangdong Syspetro Technology Co.,Ltd.
  • Received:2022-12-12 Online:2023-04-15 Published:2023-04-23

摘要:

连续重整装置的原料性质和重整反应器操作条件对C+6重整生成油的芳烃产率和溴指数等性质有较大影响。为了提高连续重整装置目标产物收率和产品质量,基于SP-Reform流程模拟软件建立的某3 800 kt/a连续重整装置的反应机理模型,重点研究了重整反应器操作条件(装置加工负荷和反应器入口温度)对目标产物收率和产品质量的影响。研究发现:重整装置加工负荷每提高10百分点,产品的芳烃产率下降0.9百分点左右,溴指数提高0.59 mgBr/100 g左右;尽量提高第一和第二反应器入口温度,同时降低第四和第五反应器入口温度至540℃以下,有助于保持较高的芳烃产率,同时溴指数满足不大于5.0 mgBr/100 g的工艺指标;第五反应器入口温度每下降5℃,溴指数下降0.3 mgBr/100 g左右。

关键词: 连续重整装置, 反应器, SP-Reform软件, 加工负荷, 入口温度, 产物收率, 芳烃, 溴指数

Abstract:

The feedstock properties of the continuous catalytic reforming(CCR) unit and the operating conditions of the reforming reactor have a great impact on the aromatics yield and bromine index of the C+6 reforming product. In order to improve the yield and product quality of the target product from the CCR unit, a reaction mechanism model of a 3.8 MM TPY continuous reforming unit was established based on SP-Reform process simulation software. The effects of reforming reactor operating conditions(unit processing capacity and reactor inlet temperature) on the target product yield and product quality were emphatically studied. It is found that the aromatics yield in the product will decrease by about 0.9 percentage points and the bromine index will increase by about 0.59 mgBr/100g when the reforming unit load increases by 10 percentage points; Increasing the inlet temperature of the first reactor and the second reactor as much as possible, and reducing the inlet temperature of the fourth reactor and the fifth reactor to below 540 ℃, helps to maintain high aromatics yield, while the bromine index meets the process index of not more than 5.0 mgBr/100g. When the inlet temperature of the fifth reactor decreases by 5 ℃, the bromine index decreases by about 0.3 mgBr/100g.

Key words: CCR unit, reactor, SP-Reform software, processing capacity, inlet temperature, product yield, aromatic hydrocarbon, bromine index;