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Achieving enhanced nitrification in communities of nitrifying bacteria in full-scale wastewater treatment plants via optimal temperature and pH

机译:通过最佳温度和pH在大型污水处理厂的硝化细菌群落中实现增强的硝化作用

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The goal of this study was to investigate the optimal pH and temperature allowing enhanced nitrification in communities of nitrifying bacteria in full-scale wastewater treatment plants (WWTPs). Although maximum nitrification of activated sludge in WWTPs was achieved using similar optimal conditions, nitrification performance was uniquely influenced by simultaneous variations in temperature and pH. These results led to development of different model equations predicting the combined effects of temperature and pH on nitrification rates at WWTPs, reflecting the propensity of nitrifying bacterial communities to flourish under different conditions. Different end products of nitrification resulted not only from certain factors such as pH and temperature, but from differences in proportions of nitrifying bacteria among total bacteria. Therefore, proper adjustment of optimal pH and temperature in nitrifying bacteria communities can provide an implementable approach to improve nitrification performance of WWTPs, incorporating those specific conditions shown to favor the acclimatization of certain nitrifying bacteria.
机译:这项研究的目的是研究最佳的pH和温度,以在大型废水处理厂(WWTP)中增强硝化细菌群落中的硝化作用。尽管使用相似的最佳条件可以实现污水处理厂中活性污泥的最大硝化作用,但硝化性能受到温度和pH值同时变化的唯一影响。这些结果导致开发出不同的模型方程,这些方程可预测温度和pH值对污水处理厂硝化速率的综合影响,反映出硝化细菌群落在不同条件下繁荣的趋势。硝化终产物的不同不仅是由于某些因素(例如pH和温度)引起的,而且还取决于硝化细菌在总细菌中所占比例的差异。因此,适当地调整硝化细菌群落中的最佳pH和温度可以提供一种可行的方法,以提高污水处理厂的硝化性能,并结合显示出的有利于某些硝化细菌适应的特定条件。

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