膜电容去离子和微生物电容脱盐电池研究进展
发布时间:2018-08-22 13:13
【摘要】:介绍了膜电容去离子(MCDI)的脱盐性能和再生性能、膜的材料和形式、恒压操作和恒流操作的对比以及微生物脱盐电池(MCDC)的原理和优势。指出如何降低MCDI的内阻、提高MCDI脱盐效率将成为未来MCDI的主要研究方向之一;进一步优化MCDC反应器,保证长期稳定运行将成为未来MCDC的主要发展方向。
[Abstract]:The desalination and regeneration properties of membrane capacitor deionized (MCDI), the material and form of membrane, the comparison between constant voltage operation and constant current operation, and the principle and advantages of microbial desalting battery (MCDC) are introduced. It is pointed out that how to reduce the internal resistance of MCDI and improve the efficiency of MCDI desalination will be one of the main research directions of MCDI in the future, and further optimizing the MCDC reactor to ensure long-term stable operation will become the main developing direction of MCDC in the future.
【作者单位】: 湖南大学土木工程学院水工程与科学系;美国科罗拉多大学土木环境与建筑系;
【分类号】:TM911.45;TQ085.4
本文编号:2197199
[Abstract]:The desalination and regeneration properties of membrane capacitor deionized (MCDI), the material and form of membrane, the comparison between constant voltage operation and constant current operation, and the principle and advantages of microbial desalting battery (MCDC) are introduced. It is pointed out that how to reduce the internal resistance of MCDI and improve the efficiency of MCDI desalination will be one of the main research directions of MCDI in the future, and further optimizing the MCDC reactor to ensure long-term stable operation will become the main developing direction of MCDC in the future.
【作者单位】: 湖南大学土木工程学院水工程与科学系;美国科罗拉多大学土木环境与建筑系;
【分类号】:TM911.45;TQ085.4
【相似文献】
相关硕士学位论文 前1条
1 朱育民;基于网络分析器AD5933的细胞膜电容测量方法研究[D];华中科技大学;2008年
,本文编号:2197199
本文链接:https://www.wllwen.com/kejilunwen/dianlilw/2197199.html