Xu Xiaonan, Zhao Zhijie, Song Chunfeng, Xu Li, Zhang Wen
Tianjin Key Laboratory of Indoor Air Environmental Quality Control, School of Environmental Science and Technology, Tianjin University, Tianjin 300350, China.
State Key Laboratory of Chemical Engineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300350, China.
Membranes (Basel). 2025 Feb 11;15(2):60. doi: 10.3390/membranes15020060.
The production of green hydrogen requires renewable electricity and a supply of sustainable water. Due to global water scarcity, using seawater to produce green hydrogen is particularly important in areas where freshwater resources are scarce. This study establishes a system model to simulate and optimize the integrated technology of seawater desalination by membrane distillation and hydrogen production by alkaline water electrolysis. Technical economics is also performed to evaluate the key factors affecting the economic benefits of the coupling system. The results show that an increase in electrolyzer power and energy efficiency will reduce the amount of pure water. An increase in the heat transfer efficiency of the membrane distillation can cause the breaking of water consumption and production equilibrium, requiring a higher electrolyzer power to consume the water produced by membrane distillation. The levelized costs of pure water and hydrogen are US$1.28 per tonne and $1.37/kg H, respectively. The most important factors affecting the production costs of pure water and hydrogen are electrolyzer power and energy efficiency. When the price of hydrogen rises, the project's revenue increases significantly. The integrated system offers excellent energy efficiency compared to conventional desalination and hydrogen production processes, and advantages in terms of environmental protection and resource conservation.
绿色氢气的生产需要可再生电力和可持续的水源供应。由于全球水资源短缺,在淡水资源稀缺的地区利用海水生产绿色氢气尤为重要。本研究建立了一个系统模型,以模拟和优化膜蒸馏海水淡化与碱性水电解制氢的集成技术。还进行了技术经济分析,以评估影响耦合系统经济效益的关键因素。结果表明,电解槽功率和能源效率的提高将减少纯水产量。膜蒸馏传热效率的提高会导致耗水与产水平衡的打破,需要更高的电解槽功率来消耗膜蒸馏产生的水。纯水和氢气的平准化成本分别为每吨1.28美元和每千克氢气1.37美元。影响纯水和氢气生产成本的最重要因素是电解槽功率和能源效率。当氢气价格上涨时,项目收益显著增加。与传统的海水淡化和制氢工艺相比,该集成系统具有出色的能源效率,以及在环境保护和资源节约方面的优势。