School of Environment, Tsinghua University, Beijing, 100084, China.
School of Environment, Tsinghua University, Beijing, 100084, China.
Water Res. 2020 Jun 15;177:115768. doi: 10.1016/j.watres.2020.115768. Epub 2020 Apr 3.
Proper granular activated carbon (GAC) selection could improve the performance of biological activated carbon (BAC) filters through a combination of adsorption and biodegradation, while the GACs used in BAC filters are now mainly selected according to adsorption function, ignoring biodegradation. In this study, sand filter effluent obtained from a drinking water treatment plant was fed into continuous-flow bench-scale BAC columns operated in parallel over 245 days to examine the effects of GAC pore-size distribution on BAC filter performance, in terms of the dissolved organic carbon (DOC) and disinfection byproduct (DBP) precursors. A metagenomic analysis indicated that bacterial community structure played an important role in BAC filter performance. A significant correlation was found between metabolism-related proteins and the volume of micro-level macropores based on metaproteomic analysis. It is suggested that the adsorption saturation was dynamic and that adsorption played a role in the performance of the BAC filters throughout the 245-day operating period. Renewed adsorption capacity, or bioregeneration, was driven by bacterial metabolic activity. Such activity largely depended on the organic matter adsorbed by the GAC, in which micro-level macropores, especially those with diameters of 0.2-10 μm, played an important but previously unrecognized role. The results suggest that more attention should be paid to well-developed pores and pore-size distribution in the production and selection of GAC used for full-scale drinking water biofilters.
适当的颗粒活性炭(GAC)选择可以通过吸附和生物降解的结合来提高生物活性炭(BAC)过滤器的性能,而 BAC 过滤器中使用的 GAC 现在主要根据吸附功能进行选择,而忽略了生物降解。在这项研究中,从饮用水处理厂获得的砂滤出水被送入连续流动的平行中试规模 BAC 柱中,在 245 天内进行运行,以研究 GAC 孔径分布对 BAC 过滤器性能的影响,特别是对溶解性有机碳(DOC)和消毒副产物(DBP)前体的影响。宏基因组分析表明,细菌群落结构在 BAC 过滤器性能中起着重要作用。基于宏蛋白质组学分析,发现代谢相关蛋白与微尺度大孔体积之间存在显著相关性。这表明吸附饱和是动态的,并且在 245 天的运行期间,吸附在 BAC 过滤器的性能中起作用。再生吸附能力或生物再生是由细菌代谢活性驱动的。这种活性在很大程度上取决于 GAC 吸附的有机物,其中微尺度大孔,特别是直径为 0.2-10μm 的大孔,起着重要但以前未被认识到的作用。研究结果表明,在生产和选择用于大规模饮用水生物滤池的 GAC 时,应更加注意发达的孔和孔径分布。