SCI和EI收录∣中国化工学会会刊

中国化学工程学报 ›› 2025, Vol. 85 ›› Issue (9): 66-75.DOI: 10.1016/j.cjche.2025.03.010

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Study on the desalination efficiency of hydrate phase by a pressure-driven filtration method

Yiwei Wu, Zhenbin Xu, Xiaohui Wang, Jin Cai, Tenghua Zhang, Peng Xiao, Changyu Sun, Guangjin Chen   

  1. State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Beijing 102249, China
  • 收稿日期:2024-12-17 修回日期:2025-03-17 接受日期:2025-03-18 出版日期:2025-09-28 发布日期:2025-04-12
  • 通讯作者: Xiaohui Wang,E-mail:xh.wang@cup.edu.cn
  • 基金资助:
    The financial support from the National Natural Science Foundation of China (22127812, 22278433, 22178379) and the National Key Research and Development Program of China (2021YFC2800902) are gratefully acknowledged.

Study on the desalination efficiency of hydrate phase by a pressure-driven filtration method

Yiwei Wu, Zhenbin Xu, Xiaohui Wang, Jin Cai, Tenghua Zhang, Peng Xiao, Changyu Sun, Guangjin Chen   

  1. State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Beijing 102249, China
  • Received:2024-12-17 Revised:2025-03-17 Accepted:2025-03-18 Online:2025-09-28 Published:2025-04-12
  • Contact: Xiaohui Wang,E-mail:xh.wang@cup.edu.cn
  • Supported by:
    The financial support from the National Natural Science Foundation of China (22127812, 22278433, 22178379) and the National Key Research and Development Program of China (2021YFC2800902) are gratefully acknowledged.

摘要: The mechanism of hydrate-based desalination is that water molecules would transfer to the hydrate phase during gas hydrate formation process, while the salt ions would be conversely concentrated in the unreacted saltwater. However, the salt concentration of hydrate decomposed water and the desalination degree of hydrate phase are still unclear. The biggest challenge is how to effectively separate the hydrate phase and the remaining unreacted salt water, and then decompose the hydrate phase to measure the salt concentration of hydrate melt water. This work developed an apparatus and pressure-driven filtration method to efficiently separate the hydrate phase and the remaining unreacted saltwater. On this basis, the single hydrate phase was obtained, then it was dissociated and the salt concentration of hydrate melt water was measured. The experimental results demonstrate that when the initial salt mass concentration is 0.3% to 8.0%, the salt removal efficiency for NaCl solution is 15.9% to 29.8% by forming CO2 hydrate, while for CaCl2 solution is 28.9% to 45.5%. The solute CaCl2 is easier to be removed than solute NaCl. In addition, the salt removal efficiency for forming CO2 hydrate is higher than that for forming methane hydrate. The multi-stage desalination can continuously decrease the salt concentration of hydrate dissociated water, and the salt removal efficiency per stage is around 20%.

关键词: Desalination, Gas hydrate, Pressure-driven filtration, Salt removal efficiency, Multi-stage

Abstract: The mechanism of hydrate-based desalination is that water molecules would transfer to the hydrate phase during gas hydrate formation process, while the salt ions would be conversely concentrated in the unreacted saltwater. However, the salt concentration of hydrate decomposed water and the desalination degree of hydrate phase are still unclear. The biggest challenge is how to effectively separate the hydrate phase and the remaining unreacted salt water, and then decompose the hydrate phase to measure the salt concentration of hydrate melt water. This work developed an apparatus and pressure-driven filtration method to efficiently separate the hydrate phase and the remaining unreacted saltwater. On this basis, the single hydrate phase was obtained, then it was dissociated and the salt concentration of hydrate melt water was measured. The experimental results demonstrate that when the initial salt mass concentration is 0.3% to 8.0%, the salt removal efficiency for NaCl solution is 15.9% to 29.8% by forming CO2 hydrate, while for CaCl2 solution is 28.9% to 45.5%. The solute CaCl2 is easier to be removed than solute NaCl. In addition, the salt removal efficiency for forming CO2 hydrate is higher than that for forming methane hydrate. The multi-stage desalination can continuously decrease the salt concentration of hydrate dissociated water, and the salt removal efficiency per stage is around 20%.

Key words: Desalination, Gas hydrate, Pressure-driven filtration, Salt removal efficiency, Multi-stage