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Start-up of a granular sludge sequencing batch reactor for the treatment of 2,4-dichlorophenol-contaminated wastewater

机译:启动用于处理被2,4-二氯苯酚污染的废水的颗粒污泥测序间歇反应器

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摘要

In this study, a granular sludge sequencing batch reactor (GSBR) was started-up for the biological aerobic treatment of wastewater containing highly toxic 2,4-dichlorophenol (2,4-DCP), in presence of readily biodegradable sodium acetate (NaAc) as the growth substrate. Different influent concentrations of NaAc (420-800 mg/L) and 2,4-DCP (0-20 mg/L), as well as different operating conditions (i.e. cycle length), were tested in order to determine the optimal strategy for successful GSBR start-up:stable granulation and complete 2,4-DCP removal were achieved only when high NaAc influent concentration and volumetric organic loading rates (800 mg/L and 1.9 kgCOD/(m~3·d), respectively), prolonged reaction phase (cycle time of 4 hours) and gradual increase of 2,4-DCP concentration in the influent were applied, thus providing useful information for process optimization in view of future scale-up. Granules were initially colonized by fungi which progressively disappeared during the start-up process, and complete 2,4-DCP removal was mostly due to bacterial activity, in particular Betaproteobacteria, as shown by fluorescence in situ hybridization (FISH).
机译:在这项研究中,启动了颗粒污泥顺序分批反应器(GSBR),用于在含有易于生物降解的乙酸钠(NaAc)的情况下对含有剧毒的2,4-二氯苯酚(2,4-DCP)的废水进行生物好氧处理。作为生长基质。测试了不同进水浓度的NaAc(420-800 mg / L)和2,4-DCP(0-20 mg / L),以及不同的操作条件(即循环长度),以确定用于GSBR成功启动:只有在高的NaAc进水浓度和体积有机负荷率(分别为800 mg / L和1.9 kgCOD /(m〜3·d))延长的情况下,才能稳定地制粒并完全去除2,4-DCP反应阶段(4小时的循环时间)和进水中2,4-DCP浓度的逐渐增加被应用,从而为将来的规模扩大提供了有用的信息,可用于工艺优化。颗粒最初是由真菌定居的,真菌在启动过程中逐渐消失,而完整的2,4-DCP去除主要是由于细菌活性,特别是Betaproteobacteria,如荧光原位杂交(FISH)所示。

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