School of Environmental Science and Engineering, Suzhou University of Science and Technology, Suzhou 215009, PR China; Jiangsu Collaborative Innovation Center of Technology and Material of Water Treatment, Suzhou University of Science and Technology, Suzhou 215009, PR China.
College of Geography and Environmental Science, Zhejiang Normal University, Jinhua, 321004, PR China.
Sci Total Environ. 2023 Nov 20;900:165805. doi: 10.1016/j.scitotenv.2023.165805. Epub 2023 Jul 26.
Currently, little information is available on relative contributions among biochar (BC), activated carbon (AC), magnetic BC (MBC), and magnetic AC (MAC) to enhance the effectiveness of a microbial electrolytic cells coupled with anaerobic digestion (MEC-AD) system and the impact of carbon-based materials on microbial community. In this study, six anaerobic reactors were constructed to demonstrate the effects of different carbon-based materials on organic matter elimination in the MEC-AD system. Remarkably, the reactor containing MBC exhibited a significant increase in organic removal, achieving 95.0 % chemical oxygen demand (COD) eradication. Additionally, the MBC-added MEC-AD reactor yields acetic acid at a rate 2.9 times higher than that of the BC-added reactor. Electrical stimulation enriched electro-producing bacteria such as Pseudomonas (18.1 %) and Gordonia (6.8 %), which were further promoted by the addition of MBC, indicating that the microbial communities cultivated with the MBC could provide the necessary microbiome for the MEC.
目前,关于生物炭(BC)、活性炭(AC)、磁性 BC(MBC)和磁性 AC(MAC)在增强微生物电解池与厌氧消化(MEC-AD)系统有效性方面的相对贡献,以及碳素材料对微生物群落的影响的信息较少。本研究构建了六个厌氧反应器,以证明不同碳素材料对 MEC-AD 系统中有机物去除的影响。值得注意的是,含有 MBC 的反应器表现出显著提高的有机物去除效果,实现了 95.0%化学需氧量(COD)的消除。此外,添加 MBC 的 MEC-AD 反应器产生的乙酸速率比添加 BC 的反应器高 2.9 倍。电刺激富集了电产生菌,如假单胞菌(18.1%)和戈登氏菌(6.8%),而添加 MBC 进一步促进了它们的生长,这表明使用 MBC 培养的微生物群落可以为 MEC 提供必要的微生物组。