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Strategy for nitrogen removal from piggery waste

机译:从猪场废物中脱氮的策略

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This study was conducted with an influent containing about 20% solids, obtainable from scraper type separation resulting in about 40 g/L TCOD and 5.5 g/L TKN, to find an optimum operating condition for nitrogen removal. Both laboratory scale reactors and a full scale treatment plant removed 80 to 90% nitrogen by biological means up to 35degreesC with 10% by ammonia stripping. The full scale plant however was operated at 35 to 45degreesC, and at 45degreesC, 30% nitrogen was removed by biological means, 50% by ammonia stripping, 14% by chemical coagulation and 6% by activated carbon adsorption, respectively. Struvite formation could not be observed at 30degreesC or higher. Nitrite nitrification and denitrification could save about 35% in tank volume and 50% in carbon requirements at 25degreesC, respectively. For a complete denitrification with a proper temperature, the influent TCOD/TKN ratio must exceed 6 with oxic/total reactor volume ratio of 0.5. The influent TCOD level or organic load should be lower so as not to increase the reactor temperature above 35degreesC and avoid nitrification inhibition. The estimated optimum nitrogen loading rates were 0.15 for summer and 0.23 kgTKN/m(3)/d for winter, respectively. With a cooling facility, the nitrogen loads could be increased to 0.35 kgTKN/m(3)/d equivalent to an organic loading rate of 2.5 kgCOD/m(3)/d. [References: 21]
机译:这项研究是使用含有约20%固体的进水进行的,该进水可通过刮板式分离获得,从而得到约40 g / L TCOD和5.5 g / L TKN,从而找到脱氮的最佳操作条件。实验室规模的反应器和大规模处理厂都可以通过生物手段去除高达80%至90%的氮,最高可达35摄氏度,并通过氨气汽提去除10%的氮。然而,该满规模的设备在35至45℃下操作,并且在45℃下,通过生物方法除去了30%的氮,通过氨汽提除去了50%的氮,通过化学凝结除去了14%的氮以及通过活性炭吸附除去了6%。在30℃以上无法观察到鸟粪石形成。在25摄氏度时,亚硝酸盐的硝化和反硝化分别可节省约35%的储罐容积和50%的碳需求。为了在适当的温度下完成完全脱氮,进水TCOD / TKN之比必须超过6,而氧气/总反应器的体积比为0.5。进水TCOD含量或有机负荷应降低,以免将反应器温度提高到35℃以上,并避免硝化作用。估计的最佳氮负荷率分别为夏季为0.15和冬季为0.23 kgTKN / m(3)/ d。使用冷却设备,氮负荷可以增加到0.35 kgTKN / m(3)/ d,相当于有机负荷率2.5 kgCOD / m(3)/ d。 [参考:21]

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