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微环境监管策略促进高效的CO2电解在零间隙双极膜电解仪中
Pengtao Yue1,2, Qian Fu1,2, Jun Li1,2
1Key Laboratory of Low-grade Energy Utilization Technologies and Systems, Ministry of Education, Chongqing University, Chongqing 400044, China.
ACS applied materials & interfaces
|November 13, 2023
概括
研究人员使用双极膜 (BPM) 电解仪改进了CO2电解中的碳利用. 通过控制催化剂层的特性,他们实现了高效的二氧化碳减排到二氧化碳,提高碳利用率.
科学领域:
- 电化学 电化学 电化学
- 催化剂是一种催化剂.
- 化学工程是化学工程的重要组成部分.
背景情况:
- 在性/中性零间隙电解器中,电催化 CO2 降解为 CO 的过程中,由于同质反应,碳利用率低于 50%.
- 双极膜 (BPM) 电解剂抑制了二氧化碳的损失,但在催化剂层 (CLs) 中面临高H+度的挑战,阻碍了二氧化碳的减少.
研究的目的:
- 开发BPM电解器中催化剂层的微环境调节策略.
- 为了提高二氧化碳的运输和控制CL内部的局部pH值,以改善二氧化碳的减少.
主要方法:
- 控制催化剂层厚度和离子分子含量.
- 在CL中研究了当地的CO2运输和pH值.
- 使用双极膜 (BPM) 电解系统.
主要成果:
- 在没有缓冲层的情况下,在400 mA/cm2的CO生产中实现了80%的法拉达效率.
- 在400 mA/cm2时,证明了63.6%的碳利用效率.
- 性能优于使用缓冲层的最先进的催化剂.
结论:
- 对于BPM系统中有效的二氧化碳减排,CL的微环境监管至关重要.
- 优化的CL特性显著提高了CO2利用率和选择性.
- 这一战略为克服当前二氧化碳电解技术的局限性提供了一条途径.
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