Mou Anqi, Yu Najiaowa, Yang Xinya, Liu Yang
Department of Civil and Environmental Engineering, University of Alberta, Edmonton, Alberta T6G 1H9, Canada.
Department of Civil and Environmental Engineering, University of Alberta, Edmonton, Alberta T6G 1H9, Canada; School of Civil & Environmental Engineering, Queensland University of Technology, Brisbane, Queensland, Australia.
Sci Total Environ. 2024 Jan 1;906:167609. doi: 10.1016/j.scitotenv.2023.167609. Epub 2023 Oct 5.
Anaerobic digestion of high solid-content wastewater is hindered by high organic loading rates (OLRs). Granular activated carbon (GAC) was reported to promote direct interspecies electron transfer (DIET) and enhance reactor performance. In this study, three up-flow anaerobic sludge blanket (UASB) reactors were supplied with GAC in different locations: bottom (R1), top (R2), and bottom+top (R3). The performances of three reactors at different OLRs treating high solid-content wastewater were evaluated. At a low OLR, the highest methane yield (74 ± 4 %, g CH-COD/g TCOD) was detected when GAC was supplied at top of the UASB (R2). When a high OLR was applied, the UASB supplemented with GAC at both bottom and top (R3) achieved the highest methane yield (66 ± 2 %, g CH-COD/g TCOD), whereas the UASB supplemented with GAC at the top (R2) failed. Further studies on spatial distributions of sludge stability, specific methanogenic activities (SMAs), and microbial communities demonstrated the different impacts of GAC location on reactor performance and sludge characteristics under different OLRs. This study highlights the significance of considering organic loading capacity treating high solid-content wastewater when choosing GAC-based UASB systems.
高固体含量废水的厌氧消化受到高有机负荷率(OLR)的阻碍。据报道,颗粒活性炭(GAC)可促进种间直接电子转移(DIET)并提高反应器性能。在本研究中,三个上流式厌氧污泥床(UASB)反应器在不同位置添加了GAC:底部(R1)、顶部(R2)和底部+顶部(R3)。评估了三个反应器在不同OLR下处理高固体含量废水的性能。在低OLR下,当在UASB顶部(R2)添加GAC时,检测到最高的甲烷产率(74±4%,g CH-COD/g TCOD)。当应用高OLR时,底部和顶部都添加GAC的UASB(R3)实现了最高的甲烷产率(66±2%,g CH-COD/g TCOD),而顶部添加GAC的UASB(R2)则失败了。对污泥稳定性、比产甲烷活性(SMA)和微生物群落空间分布的进一步研究表明,在不同OLR下,GAC位置对反应器性能和污泥特性有不同影响。本研究强调了在选择基于GAC的UASB系统时考虑处理高固体含量废水的有机负荷能力具有重要意义。