工业生物技术中的生物电化学工艺

V. Beschkov, E. Razkazova-Velkova
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引用次数: 0

摘要

工业发酵和生物废水处理通常是基于氧化还原过程发生在活细胞和酶的过程。这些氧化还原过程的实际应用通常与微生物燃料电池的发电或微生物电解电池的工艺增强有关。微生物燃料电池方法可以直接处理废水,减少能源需求。这些工艺的其他优点是直接去除各种污染物,避免在处理产生的废物中添加化学剂,因为它与传统的化学方法相似。在实践中使用生物电化学过程的另一种选择是微生物电解细胞的方法。电场在发酵或微生物废水处理过程中的应用可能会导致不同的方面:要么是电极上的纯电化学过程,要么是活细胞中酶活性的不同类型的生物电化学刺激。这些应用与酶活性与电化学过程相结合,在不添加其他化学物质的情况下,在高浓度下快速产生或去除某些化合物。在本章中,两种方法(微生物燃料电池和微生物电解电池)提出并讨论。并给出了在恒电场作用下电化学氧化还原过程的一些实际应用和实验实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioelectrochemical Processes in Industrial Biotechnology
Industrial fermentation and biological wastewater treatment are usually based on redox processes taking place in living cells and on enzyme processes. The practical application of these redox processes is usually associated with electricity generation in microbial fuel cells or process enhancement in microbial electrolysis cells. The microbial fuel cell approach leads to straightforward wastewater treatment with less energy demand. Additional advantages of these processes are the direct removal of various pollutants and the avoidance of addition of chemical agents with the resulting waste products of treatment as it is familiar with the traditional chemical methods. Another option for the use of bioelectrochemical processes in practice is the approach of microbial electrolysis cells. The application of electric field on fermentation or microbial wastewater treatment processes might result in different aspects: either in purely electrochemical processes on the electrodes or in different types of bioelectrochemical stimulation of enzyme activity in the living cells. These applications are associated with the combination of enzyme activity with electrochemical processes to produce or remove certain compounds rapidly at high concentrations with no additions of other chemicals. In the present chapter, both approaches (microbial fuel cells and microbial electrolysis cells) are presented and discussed. Some practical applications and experimental examples of such bioelectrochemical redox processes stimulated by constant electric field are demonstrated.
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