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首页> 外文期刊>Journal of environmental sciences >Inhibition factors and Kinetic model for ammonium inhibition on the anammox process of the SNAD biofilm
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Inhibition factors and Kinetic model for ammonium inhibition on the anammox process of the SNAD biofilm

机译:抑制因子和动力学模型在沙子生物膜厌氧过程中的抑制作用

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The aim of the present work was to evaluate the anaerobic ammonium oxidation (anammox) activity of simultaneous partial nitrification, anammox and denitrification (SNAD) biofilm with different substrate concentrations and pH values. Kaldnes rings taken from the SNAD biofilm reactor were incubated in batch tests to determine the anammox activity. Haldane model was applied to investigate the ammonium inhibition on anammox process. As for nitrite inhibition, the NH4+-N removal rate of anammox process remained 87.4% of the maximum rate with the NO2--N concentration of 100 mg/L. Based on the results of Haldane model, no obvious difference in kinetic coefficients was observed under high or low free ammonia (FA) conditions, indicating that ammonium rather than FA was the true inhibitor for anammox process of SNAD biofilm. With the pH value of 7.0, the r(max), Ks and K-I of ammonium were 0.209 kg NO2--N/kg VSS/day, 9.5 mg/L and 422 mg/L, respectively. The suitable pH ranges for anammox process were 5.0 to 9.0. These results indicate that the SNAD biofilm performs excellent tolerance to adverse conditions. (C) 2016 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:本作本作作品的目的是评估具有不同底物浓度和pH值的同时部分硝化,厌氧毒素和反硝化(SnAD)生物膜的厌氧铵氧化(厌氧毒剂)活性。从SnaD Biofilm反应器中取出的Kaldnes环在分批测试中孵育以确定厌氧活性。卤代模型用于研究抑制厌氧过程的铵抑制作用。对于亚硝酸盐抑制,厌氧过程的NH 4 + -N除去速率占最大速率的87.4%,NO 2 - N浓度为100mg / L.基于卤代模型的结果,在高或低自由氨(Fa)条件下观察到动力系数的明显差异,表明铵而不是Fa是鼻塞生物膜的厌氧过程的真正抑制剂。具有7.0的pH值,铵的R(MAX),Ks和K-I分别为0.209kg NO 2 - N / kg V​​SS /天,9.5mg / L和422mg / L.厌氧过程的合适的pH范围为5.0至9.0。这些结果表明,斯纳德生物膜对不利条件的耐受性具有卓越的耐受性。 (c)2016中国科学院生态环境科学研究中心。 elsevier b.v出版。

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