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Metabolic activity of an anammox population affected by major environmental factors

机译:受主要环境因素影响的厌氧人口的代谢活性

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Anammox is known as a cost-effective approach to nitrogen removal from ammonium-rich wastewater. However, the eco-physiological characteristics of anammox population have not well been understood so far, which has obstructed the practical application of anammox process. In the present research work, an enrichment culture of anammox population was collected from an expanded granular sludge bed (EGSB) reactor, and the anammox activity was evaluated by various pH, temperature and reactant density, progressively. The results showed that the optimal ecological amplitude of pH and temperature for the anammox population was ranged from 7.0-7.5 and 30°C-35°C, respectively. To make anammox process more efficient, the density of NH_(4)~(+)-N and NO_(2)~(?)-N should be around 10.0 and 4.0 mmol·L~(?1), respectively. It was found that anammox population was more sensitive to NO_(2)~(?)-N density than NH_(4)~(+)-N density, and then NO_(2)~(?)-N density was proposed as a key indicator to practicing anammox process in engineering. With the findings, the present research will be significant in practicing annamox process.
机译:厌氧被称为从富含铵的废水中除去的经济有效的氮化方法。然而,到目前为止,厌氧群的生态生理特征还未理解,这阻碍了厌氧过程的实际应用。在本研究工作中,从膨胀的粒状污泥床(EGSB)反应器中收集厌氧群的富集培养,并通过各种pH,温度和反应物密度来评价厌氧菌活性。结果表明,厌氧群的最佳生态幅度和厌氧群的温度分别为7.0-7.5和30°C-35℃。为了使Anammox Process更有效,NH_(4)〜(+) - n和NO_(2)〜(?) - n的密度分别为约10.0和4.0mmol·L〜(?1)。发现厌氧群对NO_(2)〜(α) - n密度比NH_(4)〜(+) - n密度更敏感,然后建议NO_(2)〜(?) - n密度工程中实践anammox过程的关键指标。通过调查结果,目前的研究在练习Annamox过程中将是显着的。

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