CIESC Journal ›› 2025, Vol. 76 ›› Issue (5): 2251-2261.DOI: 10.11949/0438-1157.20240772

• Separation engineering • Previous Articles     Next Articles

Optimal design of integration process for helium extraction from helium-poor pipeline natural gas with diversified products

Minggang GUO1,2(), Xiaohang YANG2, Yan DAI2, Panpan MI2, Shixin MA3, Gaohong HE1,2(), Wu XIAO1, Fujun CUI2   

  1. 1.State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian 116024, Liaoning, China
    2.Panjin Institute of Industrial Technology, Dalian University of Technology, Panjin 124221, Liaoning, China
    3.College of Chemical Engineering, Shenyang University of Chemical Technology, Shenyang 110142, Liaoning, China
  • Received:2024-07-10 Revised:2024-10-31 Online:2025-06-13 Published:2025-05-25
  • Contact: Gaohong HE

贫氦管输天然气提氦多元化产品耦合工艺优化设计

郭明钢1,2(), 杨晓航2, 代岩2, 米盼盼2, 马世鑫3, 贺高红1,2(), 肖武1, 崔福军2   

  1. 1.大连理工大学精细化工国家重点实验室,辽宁 大连 116024
    2.大连理工大学盘锦产业技术研究院,辽宁 盘锦 124221
    3.沈阳化工大学化学工程学院,辽宁 沈阳 110142
  • 通讯作者: 贺高红
  • 作者简介:郭明钢(1988—),男,博士研究生,高级工程师,guomg@dlut.edu.cn
  • 基金资助:
    国家自然科学基金项目(22141001);国家自然科学基金创新群体项目(22021005);营口市企业博士双创计划项目(YKSCJH2023-011)

Abstract:

At present, there are some problems in the helium extraction process, such as excessive dependence on the helium-rich tail gas from liquefied natural gas production process, the introduction of new impurities by catalytic oxidation destructive dehydrogenation and high energy consumption. Therefore, a multi-stage membrane-electrochemical hydrogen pump-adsorption helium extraction integration process based on a wide range of resources for helium-poor pipeline natural gas was proposed to produce diversified products of He, H2, and CO2 by utilizing the pressure of the pipeline natural gas and a multi-technology gradient productization strategy of removing impurities and extracting helium, so as to realize the economic helium extraction from helium-poor pipeline natural gas. Aspen HYSYS software was used to simulate and optimize the helium extraction integration process for 1.00×105 m3/h helium-poor pipeline natural gas, and the effects of the recovery, membrane performance, and helium concentration on the process economy were investigated. The simulation results show that, at a typical pipeline natural gas pressure of 4.0 MPa and 0.04%(vol) He, the helium extraction integration process for helium-poor pipeline natural gas is more economical with the medium-permeable and medium-selective gas separation membrane, and the helium recovery rate is 50%—70%, the break-even price of helium is 115.5—123.2 CNY/m3, and the break-even price gradually decreases as the helium concentration increases, providing a technological route with great industrial prospects for the economic utilization of helium-poor resources.

Key words: natural gas, optimal design, membranes, helium, electrochemical hydrogen pump, process intensification

摘要:

目前氦气提取过程,存在过度依赖于液化天然气生产过程的富氦尾气、催化氧化破坏式脱氢引入新杂质和高能耗的问题。因此,提出基于资源广泛的贫氦管输天然气的多级膜-电化学氢泵-吸附耦合提氦工艺,利用管输天然气压力和多技术梯度产品化除杂提氦策略,生产氦气、燃料电池氢和二氧化碳多元化产品,实现贫氦管输天然气经济性提氦。运用Aspen HYSYS软件对1.00×105 m3/h贫氦管输天然气耦合提氦工艺模拟优化,考察了回收率、膜性能和氦气浓度对工艺经济性的影响,模拟结果表明:在典型管输压力4.0 MPa和0.04%(体积分数)He时,采用中渗透性中选择性气体分离膜,且氦气回收率为50%~70%时,贫氦管输天然气提氦耦合工艺经济性较好,氦气盈亏平衡价格为115.5~123.2 CNY/m3,且随着氦气浓度增加盈亏平衡价格逐渐减小,为贫氦资源经济性利用提供极具工业前景技术路线。

关键词: 天然气, 优化设计, 膜, 氦气, 电化学氢泵, 过程强化

CLC Number: