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Thermodynamic and kinetic investigation of anaerobic bioprocesses on ANAMMOX under high organic conditions

机译:高有机条件下厌氧氨氧化厌氧生物过程的热力学和动力学研究

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The long-term effects and mechanism of organic matter on ANAMMOX process was comparatively investigated by operating two SBRs. SBR1 was operated under inorganic conditions with an efficient and stable ANAMMOX performance. The autotrophic nitrogen removal performance of SBR2 gradually deteriorated and finally disappeared when influent COD concentration was progressively increased to 800 mg/L during the 220 cycles' operation. After dosing organic matter, the ANAMMOX activity of SBR2 biomass decreased to 1/4 of that of SBR1 sludge. Intensive denitrification and sulfate reduction were observed under the long-term exposure to organic matter. The denitrification and sulfate-reduction activities of SBR2 sludge finally developed to 4 and 16 times of the values of SBR1 biomass, respectively. Thermodynamic and kinetic analyses showed that both denitrification and sulfate reduction were enhanced under the high organic conditions. ANAMMOX bacteria could be eliminated from the SBR system due to preferential metabolization of nitrite by denitrification and, thus causing starvation of ANAMMOX bacteria.
机译:通过操作两种SBR,比较研究了有机物对ANAMMOX工艺的长期影响和机理。 SBR1在无机条件下以高效且稳定的ANAMMOX性能运行。在220个循环的操作过程中,当进水COD浓度逐渐增加到800 mg / L时,SBR2的自养氮去除性能逐渐下降,最终消失。计量加入有机物后,SBR2生物量的ANAMMOX活性降低到SBR1污泥的1/4。在长期接触有机物的条件下,观察到强烈的反硝化作用和硫酸盐还原作用。最终,SBR2污泥的反硝化和硫酸盐还原活性分别达到SBR1生物量的4倍和16倍。热力学和动力学分析表明,在高有机条件下,反硝化作用和硫酸盐还原作用均得到增强。由于亚硝酸盐通过反硝化作用优先代谢,因此可以从SBR系统中消除ANAMMOX细菌,从而导致ANAMMOX细菌饥饿。

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