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Cross Effects of Organic Loading Rates and Substrate COD/N/P Ratios on Aerobic Granulation

机译:有机负荷率和基质COD / N / P比对好氧制粒的交叉影响

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We have operated sequencing batch reactors at different organic loading rates (OLRs) of 0.5, 1.5 and 4.5 kg COD m-3 d-1 or substrate COD/N/P ratios of 100/5/1 and 100/5/0, respectively. Results showed that granules failed to be cultivated under the OLR of 0.5 kg COD m-3 d-1 for the absence of filamentous bacteria during the full cultivation period. granules remained not detected before Day 38 under the OLR of 1.5 kg COD m-3 d-1 and substrate COD/N/P ratio of 100/5/1. Granules were initially observed on Day 25 under the OLR of 4.5 kg COD m-3 d-1 and COD/N/P ratio of 100/5/1, however, The settleability of these granules began to deteriorate within 10 days after their maturation time. It demonstrated that a certain quantity filamentous bacteria act as the framework of granules, which is the most crucial step to achieve a quick and stable granulation. The higher the OLR and lack of phosphor, the more likely the growth of filamentous bacteria is favored with promoting the granulation by strongly hydraulic shear force. Serious sludge bulking would be more likely to occur resulting in biomass washout and the decrease of COD removal efficiency.
机译:我们已分别在0.5、1.5和4.5 kg COD m-3 d-1或底物COD / N / P比分别为100/5/1和100/5/0的不同有机物加载速率(OLR)下操作了分批反应器。结果表明,在整个培养期间,由于没有丝状细菌的存在,在0.5 kg COD m-3 d-1的OLR下无法培养颗粒。在第38天之前,在1.5 kg COD m-3 d-1的OLR和底物COD / N / P比为100/5/1的情况下,仍未检测到颗粒。最初在第25天观察到颗粒,其OLR为4.5 kg COD m-3 d-1且COD / N / P比为100/5/1,但是,这些颗粒在成熟后10天内开始沉降。时间。结果表明,一定数量的丝状细菌作为颗粒的骨架,这是实现快速,稳定制粒的最关键步骤。 OLR越高且磷光体越少,则丝状细菌的生长越有可能通过强力的水力剪切力促进成粒。严重的污泥膨胀将更可能发生,从而导致生物质被冲出并降低COD去除效率。

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