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首页> 外文期刊>International Biodeterioration & Biodegradation >Characterization and quantification of anammox start-up in UASB reactors seeded with conventional activated sludge
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Characterization and quantification of anammox start-up in UASB reactors seeded with conventional activated sludge

机译:常规活性污泥播种的UASB反应器中厌氧氨氧化启动的表征和定量

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摘要

The start-up of anammox process inoculated with anaerobic granular sludge and nitritation sludge were carefully investigated in two upflow anaerobic sludge blanket (UASB) reactors. Three major bioprocesses related in anammox start-up i.e. anammox, denitrification and cell lysis, were quantified in both reaction and microbial growth aspects in the four consecutive phases namely cell lysis phase, lag phase, activity elevation phase and stationary phase. The results showed that anammox was negligible when cell lysis was predominant in the reactors; however, the density of anammox bacteria objectively increased in this phase due to the biomass reduction caused by hydrolysis. During lag phase, poor anammox was detected; while denitrification and cell lysis were the two leading reactions. Anammox performance of the reactors was significantly enhanced in activity elevation phase. Denitrification continuously weakened in stationary phase and anammox gradually became the dominant reaction. Nevertheless, heterotrophic denitrification still predominated throughout the start-up course due to the extremely low growth rate of anammox bacteria. Results also suggested that the inoculation strategy using nitritation sludge as the main inoculum commixing with anaerobic granular sludge could contribute to the relatively shorter start-up time and better reactor performance. Such an alternative may prove effective strategy for full-scale application of anammox process
机译:在两个上流式厌氧污泥床(UASB)反应器中,仔细研究了厌氧颗粒污泥和硝化污泥接种的厌氧氨氧化工艺的启动。在厌氧菌启动的三个主要生物过程中,即厌氧菌,反硝化和细胞裂解,在细胞裂解阶段,滞后阶段,活性升高阶段和固定阶段这四个连续阶段的反应和微生物生长方面进行了定量。结果表明,当细胞裂解在反应器中占优势时,厌氧氨可忽略不计。然而,由于水解引起的生物量减少,该阶段的厌氧菌的密度客观上增加了。在滞后阶段,检测到不良的厌氧氨氧化;反硝化和细胞裂解是两个主要反应。在活性提高阶段,反应器的厌氧氨氧化性能显着增强。在固定相中反硝化作用持续减弱,厌氧氨氧化逐渐成为主要反应。然而,由于厌氧菌的极低生长速度,在整个启动过程中,异养型反硝化仍占主导地位。结果还表明,以硝化污泥为主要接种物与厌氧颗粒污泥混合的接种策略可有助于相对较短的启动时间和更好的反应器​​性能。这样的选择可能证明是厌氧氨氧化工艺大规模应用的有效策略

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