Publisher DOI: | 10.1038/s41467-024-52237-1 | Title: | Hydrogen storage with gravel and pipes in lakes and reservoirs | Language: | English | Authors: | Hunt, Julian David Nascimento, Andreas Romero, Oldrich Joel Zakeri, Behnam Jurasz, Jakub Dąbek, Paweł B. Strzyżewski, Tomasz Đurin, Bojan Leal Filho, Walter ![]() Freitas, Marcos Aurélio Vasconcelos Wada, Yoshihide |
Issue Date: | 4-Sep-2024 | Publisher: | Nature Publishing Group | Journal or Series Name: | Nature Communications | Volume: | 15 | Issue: | 1 | Abstract: | Climate change is projected to have substantial economic, social, and environmental impacts worldwide. Currently, the leading solutions for hydrogen storage are in salt caverns, and depleted natural gas reservoirs. However, the required geological formations are limited to certain regions. To increase alternatives for hydrogen storage, this paper proposes storing hydrogen in pipes filled with gravel in lakes, hydropower, and pumped hydro storage reservoirs. Hydrogen is insoluble in water, non-toxic, and does not threaten aquatic life. Results show the levelized cost of hydrogen storage to be 0.17 USD kg−1 at 200 m depth, which is competitive with other large scale hydrogen storage options. Storing hydrogen in lakes, hydropower, and pumped hydro storage reservoirs increases the alternatives for storing hydrogen and might support the development of a hydrogen economy in the future. The global potential for hydrogen storage in reservoirs and lakes is 3 and 12 PWh, respectively. Hydrogen storage in lakes and reservoirs can support the development of a hydrogen economy in the future by providing abundant and cheap hydrogen storage. |
URI: | https://hdl.handle.net/20.500.12738/16976 | ISSN: | 2041-1723 | Review status: | This version was peer reviewed (peer review) | Institute: | Department Gesundheitswissenschaften Fakultät Life Sciences |
Type: | Article | Additional note: | article number: 7723 (2024) |
Appears in Collections: | Publications without full text |
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