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Simultaneous nitritation-denitritation for the treatment of high-strength nitrogen in hypersaline wastewater by aerobic granular sludge

机译:好氧颗粒污泥同时硝化反硝化处理高盐废水中的高氮

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Fish processing industries produce wastewater containing high amounts of salt, organic matter and nitrogen. Biological treatment of such wastewaters could be problematic due to inhibitory effects exerted by high salinity levels. In detail, high salt concentrations lead to the accumulation of nitrite due to the inhibition of nitrite-oxidizing bacteria. The feasibility of performing simultaneous nitritation and denitritation in the treatment of fish canning wastewater by aerobic granular sludge was evaluated, and simultaneous nitritation-denitritation was successfully sustained at salinities up to 50 gNaCl L-1, with a yield of over 90%. The total nitrogen concentration in the effluent was less than 10 mg L-1 at salinities up to 50 gNaCl L-1. Nitritation collapsed above 50 gNaCl L-1, and then, the only nitrogen removal mechanism was represented by heterotrophic synthesis. In contrast, organic matter removal was not affected by salinity but was instead affected by the organic loading rate (OLR). Both COD and BOD removal efficiencies were over 90%. The COD fractionation analysis indicated that aerobic granules were able to remove more than 95% of the particulate organic matter. Finally, results obtained in this work noted that aerobic granular sludge had an excellent ability to adapt under adverse environmental conditions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:鱼品加工业产生的废水中含有大量的盐,有机质和氮。由于高盐度产生的抑制作用,对此类废水进行生物处理可能会出现问题。详细地,由于抑制亚硝酸盐氧化细菌,高盐浓度导致亚硝酸盐的积累。评估了在需氧颗粒污泥处理鱼罐头废水中同时进行硝化和反硝化的可行性,并成功地在盐分高达50 gNaCl L-1的条件下成功进行了同时硝化-反硝化,产率超过90%。盐分高达50 gNaCl L-1时,废水中的总氮浓度小于10 mg L-1。亚硝化作用在50 gNaCl L-1以上崩溃,然后,唯一的氮去除机理是异养合成。相反,去除有机物不受盐度的影响,而是受有机物负载率(OLR)的影响。 COD和BOD去除效率均超过90%。 COD分馏分析表明,好氧颗粒能够去除95%以上的颗粒有机物。最后,这项工作获得的结果表明,好氧颗粒污泥在恶劣的环境条件下具有出色的适应能力。 (C)2015 Elsevier Ltd.保留所有权利。

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