School of Energy and Environmental Engineering, University of Science and Technology Beijing, Beijing, 100083, China.
School of Energy and Environmental Engineering, University of Science and Technology Beijing, Beijing, 100083, China; Tianjin College, University of Science and Technology Beijing, Tianjin, 301811, China.
Environ Res. 2024 Mar 1;244:117422. doi: 10.1016/j.envres.2023.117422. Epub 2023 Oct 20.
The current methods of treating organic waste suffer from limited resource usage and low product value. Research and development of value-added products emerges as an unavoidable trend for future growth. Electro-fermentation (EF) is a technique employed to stimulate cell proliferation, expedite microbial metabolism, and enhance the production of value-added products by administering minute voltages or currents in the fermentation system. This method represents a novel research direction lying at the crossroads of electrochemistry and biology. This article documents the current progress of EF for a range of value-added products, including gaseous fuels, organic acids, and other organics. It also presents novel value-added products, such as 1,3-propanediol, 3-hydroxypropionic acid, succinic acid, acrylic acid, and lysine. The latest research trends suggest a focus on EF for cogeneration of value-added products, studying microbial community structure and electroactive bacteria, exploring electron transfer mechanisms in EF systems, developing effective methods for nutrient recovery of nitrogen and phosphorus, optimizing EF conditions, and utilizing biosensors and artificial neural networks in this area. In this paper, an analysis is conducted on the challenges that currently exist regarding the selection of conductive materials, optimization of electrode materials, and development of bioelectrochemical system (BES) coupling processes in EF systems. The aim is to provide a reference for the development of more efficient, advanced, and value-added EF technologies. Overall, this paper aims to provide references and ideas for the development of more efficient and advanced EF technology.
目前处理有机废物的方法存在资源利用率有限和产品附加值低的问题。因此,研发附加值产品成为未来增长的必然趋势。电发酵(EF)是一种通过在发酵系统中施加微小的电压或电流来刺激细胞增殖、加速微生物代谢并提高增值产品产量的技术。该方法是电化学和生物学交叉领域的一个新兴研究方向。本文记录了 EF 在各种增值产品(包括气态燃料、有机酸和其他有机物)方面的最新进展。此外,还介绍了新型增值产品,如 1,3-丙二醇、3-羟基丙酸、琥珀酸、丙烯酸和赖氨酸。最新的研究趋势表明,EF 研究的重点是增值产品的联产,研究微生物群落结构和电活性细菌,探索 EF 系统中的电子转移机制,开发有效的氮磷养分回收方法,优化 EF 条件,并在该领域利用生物传感器和人工神经网络。本文分析了 EF 系统中导电材料选择、电极材料优化和生物电化学系统(BES)耦合工艺开发方面存在的挑战。旨在为开发更高效、先进和增值的 EF 技术提供参考。总的来说,本文旨在为开发更高效、先进的 EF 技术提供参考和思路。