石油化工设计 ›› 2018, Vol. 35 ›› Issue (4): 32-34.doi: 10.3969/j.issn.1005-8168.2018.04.009

• 工艺优化 • 上一篇    下一篇

精甲醇生产工艺换热网络的节能优化设计

耿淑远   

  1. 中石化宁波工程有限公司,上海 200030
  • 收稿日期:2018-05-14 接受日期:2018-06-06 出版日期:2018-11-30 发布日期:2019-05-30
  • 通讯作者: 耿淑远,gengshuyuan@126.com E-mail:gengshuyuan@126.com
  • 作者简介:耿淑远,女,毕业于郑州大学化学工程与工艺专业,工程师,主要从事工艺系统设计工作。联系电话: 021-64578225;E-mail: gengshuyuan@126.com

Energy-saving Optimization Design of Heat Transfer Network in Methanol Distillation Process

Geng Shuyuan   

  1. SINOPEC Ningbo Engineering Company Limited, Shanghai, 200030
  • Received:2018-05-14 Accepted:2018-06-06 Online:2018-11-30 Published:2019-05-30
  • Contact: Geng Shuyuan,gengshuyuan@126.com E-mail:gengshuyuan@126.com

摘要: 甲醇精馏是能耗高、水耗高的生产工艺,节能对于提高甲醇工厂经济效益有着重大意义。基于40万t/a的甲醇装置三塔流程,利用精馏过程产生的废热,对入塔物料进行预热。优化后的工艺流程可以降低预塔和加压塔的再沸器热负荷,同时减小加压塔产品冷却器的负荷,从而减少蒸汽和冷却水的用量,实现节能降耗、节省投资的目的。文中数据来源于PROⅡ流程模拟和HTRI换热器计算,对甲醇精馏工艺流程3种不同的换热网络进行比较分析,选出方案3为最佳工艺流程

关键词: 精甲醇生产, 节能, 换热流程优化, 经济效益

Abstract: Methanol distillation process has high energy consumption and water consumption, therefore, energy saving is of vital significance to increasing the economic benefit of methanol plant. This paper, based on a 400kt/a methanol plant consisting of three distillation columns, reuses the waste heat produced in the distillation process to preheat the feed to distillation column. The optimized process can not only reduce the heat load of the bottom reboilers for pre-distillation column and pressurized column, but also reduce the heat load of product cooler in the pressurized column, thus reducing the consumption of steam and cooling water and achieving energy saving, consumption reduction and investment reduction. The data in this paper mainly comes from the simulation software PROⅡ and the heat exchanger calculation software HTRI. A comparative analysis of three different heat transfer networks for methanol distillation process is carried out, and Scheme No. 3 is selected as the best one

Key words: production of refined methanol, energy saving, optimization of heat transfer process, economic benefit