从海水中提取增强的方法:从动力学和热力学角度来看
Sania Shabbir1,2, Nailiang Yang1,2, Dan Wang1,2
1State Key Laboratory of Biochemical Engineering, Key Laboratory of Biopharmaceutical Preparation and Delivery, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, P. R. China. nlyang@ipe.ac.cn.
Nanoscale
|February 16, 2024
概括
从海水中提取 (UES) 提供了一个可持续的能源未来. 吸附是从海洋中提取的主要方法,目前正在进行的研究重点是先进材料和理解吸附过程.
科学领域:
- 化学工程是化学工程的重要组成部分.
- 材料科学 材料科学 材料科学
- 环境科学 环境科学
背景情况:
- 从海水中提取 (UES) 是一个关键的化学分离过程.
- 大洋的储量庞大,为陆地采矿提供了一个可持续的替代方案.
- 全球能源需求的增加预计将增加UES的相关性.
研究的目的:
- 审查最近从海水中提取技术的进展.
- 识别和讨论UES当代挑战.
- 提供关于UES未来的观点.
主要方法:
- 关于UES科学探索的文献综述.
- 吸附作为主要回收过程的分析.
- 检查吸附剂的发展,动力学和热力学.
主要成果:
- 由于可行性,成本和选择性,吸附是从海水中回收的最有效方法.
- 已经开发出了许多具有高容量的吸附剂.
- 了解吸附动力学和热力学是材料设计的关键.
结论:
- 欧元电力是未来能源需求的关键技术.
- 对吸附剂设计和过程理解的持续研究至关重要.
- 欧元矿为采购提供了一个有希望的,可持续的途径.
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