School of Environmental Science, Liaoning University, Shenyang, 110036, China; State Key Laboratory of Urban Water Resources and Environments, Harbin Institute of Technology, Harbin, 150090, China.
School of Environmental Science, Liaoning University, Shenyang, 110036, China.
Environ Res. 2020 Jan;180:108863. doi: 10.1016/j.envres.2019.108863. Epub 2019 Oct 31.
In order to enhance the productivity of methane from the waste activated sludge (WAS), a coupled system of microbial electrolysis cell (MEC) and anaerobic digestion (AD) was proposed. In this study, alkali, ultrasound-alkali, high-temperature coupled microaeration (TM) were applied as pretreatment methods to disintegrate the WAS flocs and break bacterial cell. After ultrasound-alkali pretreatment, the maximum accumulated concentration of VFAs and SCOD increased by 6.4 and 13.8 times compared with the initial concentration, which were 2.8 and 2.6 times of alkali pretreatment, and 2.1 and 2.1 times of TM pretreatment. Then, the pretreated sludge was transferred into MEC-AD coupled reactors and control group of AD reactors. The results showed that, methane production rate was enhanced to 0.15 m CH/m reactor/d in the coupled reactors, which was improved by 3 times compared with control AD (0.05 m CH/m reactor/d). The methane yield of MEC-AD coupled reactors achieved 808 ± 8 mL, which were increased by 97.0% ± 1.85% compared to control AD (410 mL). Using MEC can promote the rate of organics degradation and methane yield. The MEC-AD coupled system realized a good performance on the treatment of WAS and improved the efficiency of methane production.
为提高废活性污泥(WAS)中甲烷的产量,提出了微生物电解池(MEC)与厌氧消化(AD)耦合系统。本研究采用碱处理、超声-碱处理、高温耦合微曝气(TM)作为预处理方法,以破坏 WAS 絮体并使细菌细胞破裂。与初始浓度相比,超声-碱预处理后 VFAs 和 SCOD 的最大累积浓度分别增加了 6.4 倍和 13.8 倍,是碱预处理的 2.8 倍和 TM 预处理的 2.1 倍。然后,将预处理后的污泥转移到 MEC-AD 耦合反应器和 AD 对照反应器中。结果表明,在耦合反应器中,甲烷产率提高到 0.15 m CH/m 反应器/d,比对照 AD(0.05 m CH/m 反应器/d)提高了 3 倍。MEC-AD 耦合反应器的甲烷产率达到 808 ± 8 mL,比对照 AD(410 mL)提高了 97.0% ± 1.85%。使用 MEC 可以提高有机物降解速率和甲烷产量。MEC-AD 耦合系统在 WAS 的处理中表现良好,提高了甲烷生产效率。