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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Operation of pilot-scale nitrification-anammox reactors for the treatment of reject-water produced from the anaerobic digestion of thermal hydrolysis-treated sludge
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Operation of pilot-scale nitrification-anammox reactors for the treatment of reject-water produced from the anaerobic digestion of thermal hydrolysis-treated sludge

机译:试验型硝化 - 厌氧反应器的操作,用于治疗厌氧消化热水解污泥的废水

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Two-stage pilot-scale partial nitrification (PN)-anammox reactors were successfully operated for the treatment of reject-water (record as TRW) produced from the anaerobic digestion of thermal hydrolysis-treated sludge (THPAD). The PN reactor was operated stalely and Nitrosomonas was the major ammonia-oxidizing bacteria. In the anammox reactor, anammox activity doubled from day 3 to day 53 demonstrating that anammox adapted to the PN effluent. After acid shock at pH 4 for approximately 1 h, anammox was seriously inhibited and required approximately 60 days for recovery. This provided a reference for handling similar accidents. In the next 166 days, the load reached 0.40-0.51 kg N/(m(3).d) in the presence of high concentration COD (798-1313 mg/L), suggesting anammox can be used in high concentration organic wastewater. Under the combined action of anammox and denitrification, 94.7% nitrogen was removed. These results demonstrated TRW can be treated using PN-anammox technology which was conducive to the popularization of THPAD.
机译:两阶段先导级硝化硝化(PN)-Anammox反应器成功地用于处理由厌氧消化热水解处理的污泥(THPD)产生的废水(作为TRW)的处理。 PN反应器雄然气运作,硝基胺是主要的氨氧化细菌。在厌氧反应器中,厌氧活性从第3天和第53天增加一倍,证明厌氧渗透润适于PN流出物。在pH4的酸休克约1小时后,严重抑制并要求约60天进行厌氧毒素。这为处理类似事故提供了参考。在接下来的166天中,在高浓度COD(798-1313mg / L)存在下,负荷达到0.40-0.51 kg n /(m(3).d),表明厌氧可用于高浓度有机废水。在厌氧和反硝化的组合作用下,除去94.7%的氮。这些结果可以使用PN-anammox技术对TRW进行处理,这有利于THPAD的普及。

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