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在海洋中使用浮式平台进行现场直接海水电解,而波浪运动无法控制
Tao Liu1,2,3, Zhiyu Zhao4,5,6, Wenbin Tang7,8
1State Key Laboratory of Intelligent Construction and Healthy Operation and Maintenance of Deep Underground Engineering, Shenzhen University & Sichuan University, Shenzhen, 518060, China. liutao3200023@scu.edu.cn.
Nature communications
|June 21, 2024
概括
这项研究表明,即使在波动的海洋条件下,利用海上风力发电从海水中直接生产稳定,大规模的气,即使在波动的海洋条件下. 试点系统实现了高纯度和高效率的,与陆上方法相美.
科学领域:
- 可持续能源 可持续能源
- 电解技术 电解技术
- 海洋工程是海洋工程.
背景情况:
- 从海水直接生产气提供了一个可持续的能源途径.
- 实验室规模的海水电解已经确立,但在海洋中缺乏大规模的现场演示.
- 波动的海洋条件给稳定的运行带来了重大挑战.
研究的目的:
- 为了证明从海水中利用海上风力发电进行大规模的现场直接气生产的可行性.
- 为了应对在波动的海洋环境中运行电解系统的挑战.
- 为了评估漂浮海水电解系统的性能和稳定性.
主要方法:
- 开发和扩展一个由海上风力驱动的漂浮海水电解系统.
- 在兴华湾集成1.2Nm3h-1试点系统.
- 在模拟和真实波动的海洋条件下 (波浪高度,风速) 长期运行 (超过240小时).
主要成果:
- 在波动环境中,在240多个小时内实现了稳定的电解运行.
- 证明了低电解能耗 (5kWh Nm−3 H2) 和高纯度的 (>99.9%).
- 在动态海洋条件下的电解质中观察到稳定且低度的杂质离子.
结论:
- 在波动的海洋中实现了漂浮海水电解系统的成功扩展和运行.
- 这项技术的性能与陆上水电解的性能相当,表明其可行性.
- 确定了海上气生产的关键技术挑战和未来前景.
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