Department of Environmental Engineering, Building 113, Technical University of Denmark, DK-2800 Lyngby, Denmark.
Department of Environmental Engineering, Building 113, Technical University of Denmark, DK-2800 Lyngby, Denmark.
Water Res. 2015 Sep 15;81:188-95. doi: 10.1016/j.watres.2015.05.058. Epub 2015 Jun 3.
Volatile fatty acids (VFA) are organic compounds of great importance for various industries and environmental processes. Fermentation and anaerobic digestion of organic wastes are promising alternative technologies for VFA production. However, one of the major challenges is development of sustainable downstream technologies for VFA recovery. In this study, an innovative microbial bipolar electrodialysis cell (MBEDC) was developed to meet the challenge of waste-derived VFA recovery, produce hydrogen and alkali, and potentially treat wastewater. The MBEDC was operated in fed-batch mode. At an applied voltage of 1.2 V, a VFA recovery efficiency of 98.3%, H2 of 18.4 mL and alkali production presented as pH of 12.64 were obtained using synthetic fermentation broth. The applied voltage, initial VFA concentrations and composition were affecting the VFA recovery. The energy balance revealed that net energy (5.20-6.86 kWh/kg-VFA recovered) was produced at all the applied voltages (0.8-1.4 V). The coexistence of other anionic species had no negative effect on VFA transportation. The VFA concentration was increased 2.96 times after three consecutive batches. Furthermore, the applicability of MBEDC was successfully verified with digestate. These results demonstrate for the first time the possibility of a new method for waste-derived VFA recovery and valuable products production that uses wastewater as fuel and bacteria as catalyst.
挥发性脂肪酸(VFA)是对各种工业和环境过程具有重要意义的有机化合物。有机废物的发酵和厌氧消化是生产 VFA 的很有前途的替代技术。然而,主要挑战之一是开发可持续的下游技术以回收 VFA。在这项研究中,开发了一种创新的微生物双极电渗析电池(MBEDC),以应对废物衍生 VFA 回收、生产氢气和碱以及潜在处理废水的挑战。MBEDC 以分批进料模式运行。在 1.2 V 的应用电压下,使用合成发酵液获得 98.3%的 VFA 回收率、18.4 mL 的 H2 和 12.64 pH 的碱产量。应用电压、初始 VFA 浓度和组成影响 VFA 的回收。能量平衡表明,在所有应用电压(0.8-1.4 V)下均产生净能量(5.20-6.86 kWh/kg-VFA 回收)。其他阴离子物质的共存对 VFA 运输没有负面影响。经过三个连续批次,VFA 浓度增加了 2.96 倍。此外,MBEDC 的适用性已成功用消化物验证。这些结果首次证明了使用废水作为燃料和细菌作为催化剂从废物中回收 VFA 和生产有价值产品的新方法的可能性。