Tsipa Argyro, Varnava Constantina K, Nastro Rosa Anna, Ieropoulos Ioannis
Department of Civil and Environmental Engineering, University of Cyprus, Nicosia, Cyprus.
Nireas International Water Research Centre, University of Cyprus, Nicosia, Cyprus.
Adv Biochem Eng Biotechnol. 2025;191:119-149. doi: 10.1007/10_2025_279.
Electro-bioremediation of wastewater is a novel, nature-based solution towards clean water, based on microbial electrochemical technologies (METs). Electro-bioremediation technologies for wastewater treatment, except enhanced bioremediation results and renewable energy generation, offer an unlocked opportunity for harvesting by-products and using them in other applications. This concept contributes to circularity, sustainability, and environmental compatibility, mitigating the impact of climate change. In addition, wastewater valorization and, thus, water resilience are possible thereby leading to protection of water resources. Compounds and metabolites naturally synthesized by the microorganisms involved in the wastewater electro-assisted biodegradation, can result in the enhancement of both extracellular electron transfer (EET) and bioremediation. Such microbial products are added-value, natural, non-toxic and biodegradable such as biosurfactants (BSFs) and polyhydroxyalkanoates (PHAs). In this chapter, the effect of the presence of BSFs and PHAs in MET during electro-bioremediation, as well as when fed with conventional substrates, are exhaustively evaluated. The significance of BSFs even when they are added exogenously is also examined. The major categories of by-products biosynthesis including organic acids, biopolymers, recovered heavy metals and phenazines such as pyocyanin during electro-bioremediation processes are also discussed. Consequently, a future direction in wastewater electro-bioremediation is proposed.
废水的电生物修复是一种基于微生物电化学技术(METs)的新型、基于自然的清洁水解决方案。用于废水处理的电生物修复技术,除了能增强生物修复效果和产生可再生能源外,还为收获副产品并将其用于其他应用提供了一个尚未开发的机会。这一概念有助于循环利用、可持续性和环境兼容性,减轻气候变化的影响。此外,废水增值以及由此实现的水弹性成为可能,从而保护水资源。参与废水电辅助生物降解的微生物自然合成的化合物和代谢产物,可增强细胞外电子转移(EET)和生物修复。这类微生物产物具有附加值、天然、无毒且可生物降解,如生物表面活性剂(BSFs)和聚羟基脂肪酸酯(PHAs)。在本章中,将详尽评估在电生物修复过程中以及用传统底物进料时,MET中BSFs和PHAs的存在所产生的影响。还将研究即使外源添加BSFs的重要性。同时也将讨论电生物修复过程中包括有机酸、生物聚合物、回收重金属以及如绿脓菌素等吩嗪在内的副产品生物合成的主要类别。因此,提出了废水电生物修复的未来方向。