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Assessment of effluent turbidity in mesophilic and thermophilic activated sludge reactors – origin of effluent colloidal material

机译:中温和嗜热活性污泥反应器中污水浊度的评估–污水胶体材料的来源

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Two lab-scale plug flow activated sludge reactors were run in parallel for 4 months at 30 and 55°C. Research focussed on: (1) COD (chemical oxygen demand) removal, (2) effluent turbidity at both temperatures, (3) the origin of effluent colloidal material and (4) the possible role of protozoa on turbidity levels. Total COD removal percentages over the whole experimental period were 66±7% at 30°C and 53±11% at 55°C. Differences in total COD removal between both systems were due to less removal of soluble and colloidal COD at 55°C compared to the reference system. Thermophilic effluent turbidity was caused by a combination of influent colloidal particles that were not effectively retained in the sludge flocs, and erosion of the thermophilic activated sludge itself, as shown by denaturing gradient gel electrophoresis (DGGE) profiles. DGGE analysis of PCR-amplified 16S rDNA fragments from mesophilic and thermophilic sludge differed, indicating that different microbial communities were present in the two reactor systems. The effects of protozoal grazing on the effluent turbidity of both reactors was negligible and thus could not account for the large turbidity differences observed.
机译:两个实验室规模的活塞流活化污泥反应器在30和55°C下平行运行4个月。研究重点在于:(1)去除化学需氧量;(2)两种温度下的废水混浊;(3)废水胶体物质的来源;(4)原生动物在浊度水平上的可能作用。在整个实验期间,总COD去除百分比在30°C下为66±7%,在55°C下为53±11%。两个系统之间总COD去除量的差异是由于与参考系统相比,在55°C下可溶和胶体COD的去除量更少。如变性梯度凝胶电泳(DGGE)所示,嗜热流出物混浊是由未有效保留在污泥絮状物中的流入胶体颗粒和嗜热活化污泥本身的侵蚀共同造成的。从嗜温和嗜热污泥中PCR扩增的16S rDNA片段的DGGE分析有所不同,表明两个反应器系统中存在不同的微生物群落。原生动物放牧对两个反应器出水浊度的影响可以忽略不计,因此不能解释观察到的大浊度差异。

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  • 来源
    《Applied Microbiology and Biotechnology》 |2002年第1期|105-111|共7页
  • 作者单位

    Sub-department of Environmental Technology Wageningen University P.O.Box 8129/6700 EV Wageningen The Netherlands;

    Sub-department of Environmental Technology Wageningen University P.O.Box 8129/6700 EV Wageningen The Netherlands;

    Sub-department of Environmental Technology Wageningen University P.O.Box 8129/6700 EV Wageningen The Netherlands;

    Laboratory of Microbiology Wageningen University Hesselink van Suchtelenweg 4 6703 CT Wageningen The Netherlands;

    Sub-department of Environmental Technology Wageningen University P.O.Box 8129/6700 EV Wageningen The Netherlands;

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