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首页> 外文期刊>Journal of Hydrology >Variations in AOC and microbial diversity in an advanced water treatment plant
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Variations in AOC and microbial diversity in an advanced water treatment plant

机译:先进水处理厂中AOC的变化和微生物多样性

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摘要

The objective of this study was to evaluate the variations in assimilable organic carbon (AOC) and microbial diversities in an advanced water treatment plant. The efficiency of biofiltration on AOC removal using anthracite and granular activated carbon (GAC) as the media was also evaluated through a pilot-scale column experiment. Effects of hydrological factors (seasonal effects and river flow) on AOC concentrations in raw water samples and hydraulic retention time (HRT) of biofiltration on AOC treatment were also evaluated. Results show that AOC concentrations in raw water and clear water of the plant were about 138 and 27 μg acetate-C/L, respectively. Higher AOC concentrations were observed in wet seasons probably due to the resuspension of organic-contained sediments and discharges of non-point source (NPS) pollutants from the upper catchment. This reveals that seasonal effect played an important role in the variations in influent AOC concentrations. Approximately 82% and 70% of AOC removal efficiencies were observed in GAC and anthracite columns, respectively. Results from column experiment reveal that the applied treatment processes in the plant and biofiltration system were able to remove AOC effectively. Microbial colonization on GAC and anthracite were detected via the observation of scanning electron microscopic (SEM) images. Results of polymerase chain reaction (PCR), denaturing gradient gel electrophoresis (DGGE), and nucleotide sequence analysis reveal significant decrease in microbial diversities after the ozonation process. Higher HRT caused higher microbial contact time, and thus, more microbial colonies and higher microbial diversity were observed in the latter part of the biofilters. Some of the dominant microbial species in the biofiltration columns belonged to the beta-proteobacterium, which might contribute to the AOC degradation. Results of this study provide us insight into the variations in AOC and microbial diversity in the advanced water treatment processes.
机译:这项研究的目的是评估先进水处理厂中可吸收有机碳(AOC)和微生物多样性的变化。还通过中试规模的柱实验评估了使用无烟煤和颗粒状活性炭(GAC)作为介质的生物滤除AOC的效率。还评估了水文因素(季节影响和河流流量)对原水样品中AOC浓度的影响以及生物滤过对AOC处理的水力停留时间(HRT)。结果表明,植物原水和清水中的AOC浓度分别约为138和27μg醋酸盐C / L。在雨季观察到较高的AOC浓度,这可能是由于有机物沉积物的重悬以及上游流域的非点源(NPS)污染物的排放。这表明季节性影响在进水AOC浓度变化中起重要作用。在GAC和无烟煤色谱柱中,分别观察到约82%和70%的AOC去除效率。柱实验的结果表明,在植物和生物过滤系统中应用的处理过程能够有效去除AOC。通过扫描电子显微镜(SEM)图像的观察来检测GAC和无烟煤上的微生物定植。聚合酶链反应(PCR),变性梯度凝胶电泳(DGGE)和核苷酸序列分析的结果表明,臭氧处理后微生物多样性显着降低。较高的HRT导致较高的微生物接触时间,因此,在生物滤池的后半部观察到更多的微生物菌落和较高的微生物多样性。生物过滤柱中的一些优势微生物物种属于β-变形杆菌,这可能有助于AOC降解。这项研究的结果使我们深入了解了高级水处理过程中AOC和微生物多样性的变化。

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