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Effects of Carbon Sources on Filamentous Bulking under Alternating Oxic-Anoxic Model

机译:交替缺氧-缺氧模型下碳源对丝状膨大的影响

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In this study, the effect of different carbon sources on realizing shortcut nitrification-denitrification was investigated. Two lab-scale sequencing batch reactors (SBRs) were operated by using artificial wastewater under alternating oxic-anoxic model. SBR A used starch as carbon source and glucose was used for SBR B. The results showed that the average removal rates of ammonia nitrogen and COD in SBR A and SBR B were 90.23% and 92.85%, 76.22% and 83.44%. Both reactors realized shortcut nitrification-denitrification in the end of test, and the NAR could be above 80%. However, the NOB elutriation ratio of SBR B was faster than SBR A even though that the nitrite accumulation produced in SBR A earlier. SBR A got sludge bulking with the increase of the sludge volume index (SVI), and the systemic removal efficiency of total nitrogen and organic matter reduced. As time went on, the microorganisms in the sludge adapted to the carbon source and the SVI was approximate 300ml/g steadily.
机译:在这项研究中,研究了不同碳源对实现快速硝化-反硝化的影响。在交替的有氧-缺氧模型下,使用人工废水运行了两个实验室规模的顺序批处理反应器(SBR)。结果表明,丁苯橡胶以淀粉为碳源,葡萄糖为糖。结果表明,丁苯橡胶和丁苯橡胶中氨氮和COD的平均去除率分别为90.23%和92.85%,76.22%和83.44%。在试验结束时,两个反应器均实现了短程硝化-反硝化作用,并且NAR可能超过80%。但是,即使在SBR A中较早产生亚硝酸盐积累,SBR B的NOB淘析率也比SBR A快。随着污泥体积指数(SVI)的增加,污泥体积增大,总氮和有机质的系统去除效率降低。随着时间的流逝,污泥中的微生物适应碳源和SVI的稳定值约为300ml / g。

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