空间组装的二元碳阳极协同作用定向电子传输和丰富的微生物住宿用于废水处理和能源转换:从模拟到实验
Mengxi Yin1, Boya Fu1, Ting Xu1
1State Key Joint Laboratory of Environment Simulation and Pollution Control, State Environment Protection Key Laboratory of Microorganism Application and Risk Control, School of Environment, Tsinghua University, Beijing 100084, China.
Water research
|January 31, 2024
概括
生物电化学系统 (BES) 中的优化阳极增强了废水处理和能量回收. 空间组装的二元碳阳极提高了功率密度和化学氧气需求的消除,提供了成本有效的解决方案.
科学领域:
- 环境工程 环境工程
- 电化学 电化学 电化学
- 生物技术是生物技术.
背景情况:
- 生物电化学系统 (BES) 对废水能源和资源回收具有前景.
- 阳极设计对于改善BES中的能量转换和废水质量至关重要.
研究的目的:
- 使用多物理模型开发和优化BES的阳极.
- 为了研究空间组装的二元碳阳极的性能.
主要方法:
- 构建了一个多物理模型,将流体流,有机降解和电化学过程结合起来.
- 空间组装的二元碳阳极,结合3D碳网骨架和颗粒活性炭,被制造和测试.
主要成果:
- 优化的复合阳极实现了0.442 kg m-3 d-1的COD去除率和20.6 W m-3.3的最大功率密度.
- 这种性能明显高于仅用碳网或颗粒活性炭制成的阳极.
- 电活性细菌在复合阳极中的丰富增强了微生物的新陈代谢和能量生产.
结论:
- 空间组装的二元碳阳极提供了一种成本高效的方法,可以同时提高BES中的有机降解和发电.
- 多物理模拟为BES阳极设计和优化提供了宝贵的理论支持.
- 优化的阳极设计表明了改善废水处理和能量回收的潜力.
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