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开采非传统水源以构建分布式氢能经济。

Mining Nontraditional Water Sources for a Distributed Hydrogen Economy.

机构信息

Department of Chemical and Environmental Engineering, Yale University, New Haven, Connecticut 06520-8286, United States.

出版信息

Environ Sci Technol. 2022 Aug 2;56(15):10577-10585. doi: 10.1021/acs.est.2c02439. Epub 2022 Jul 13.

Abstract

Securing decarbonized economies for energy and commodities will require abundant and widely available green H. Ubiquitous wastewaters and nontraditional water sources could potentially feed water electrolyzers to produce this green hydrogen without competing with drinking water sources. Herein, we show that the energy and costs of treating nontraditional water sources such as municipal wastewater, industrial and resource extraction wastewater, and seawater are negligible with respect to those for water electrolysis. We also illustrate that the potential hydrogen energy that could be mined from these sources is vast. Based on these findings, we evaluate the implications of small-scale, distributed water electrolysis using disperse nontraditional water sources. Techno-economic analysis and life cycle analysis reveal that the significant contribution of H transportation to costs and CO emissions results in an optimal levelized cost of hydrogen at small- to moderate-scale water electrolyzer size. The implications of utilizing nontraditional water sources and decentralized or stranded renewable energy for distributed water electrolysis are highlighted for several hydrogen energy storage and chemical feedstock applications. Finally, we discuss challenges and opportunities for mining H from nontraditional water sources to achieve resilient and sustainable economies for water and energy.

摘要

为能源和大宗商品实现去碳化经济,需要丰富且广泛可得的绿色氢气。无处不在的废水和非传统水源有可能为水电解槽提供原料,从而生产这种绿色氢气,而不会与饮用水源竞争。在此,我们表明,相对于水电解而言,处理非传统水源(如城市污水、工业和资源开采废水以及海水)的能源和成本可忽略不计。我们还说明,从这些水源中可以开采的潜在氢能是巨大的。基于这些发现,我们评估了利用分散的非传统水源进行小规模分布式水电解的意义。技术经济分析和生命周期分析表明,H 运输对成本和 CO 排放的重大贡献导致小规模至中等规模水电解器尺寸的氢气平准化成本达到最优水平。利用非传统水源和分散或搁浅可再生能源进行分布式水电解对几种氢能储存和化学原料应用的意义得到了强调。最后,我们讨论了从非传统水源中提取 H 以实现水和能源弹性和可持续经济的挑战和机遇。

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