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Effectiveness of pH as control parameter for Nitrogen removal via SND in a sequencing batch reactor

机译:pH值作为顺序分批反应器中通过SND脱氮的控制参数的有效性

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This study investigates the effect of using pH as aeration control parameter on nitrogen removal via simultaneous nitrification and denitrification( SND) in a 10L acetate-fed SBR. The reactor is operated continuously with quickly terminating the aerobic phase after ammonium depletion, according “ammonia valley” in pH profiles. The results indicate using pH as control parameter on nitrogen removal can save energy and improve nitrogen removal, which allows an increased amount of nitrogen removal via SND from50% to 86%. After two months of continuous operation with controlled aeration, the setting property of the activated sludge has been significantly improved. The sludge volume index (SVI) has been decreased from 115ml/g to 57 ml/g. It is also found that larger sludge flocs have been formed in the SBR. The average diameter of activated sludge flocs is 442μm, which make it easy to form anoxic microzones within activated sludge flocs. Anoxic microzones in the inner of activated sludge flocs can reasonably support nitrogen removal via SND.
机译:本研究调查了在10升醋酸盐喂养的SBR中,通过同时硝化和反硝化(SND)将pH值用作曝气控制参数对脱氮的影响。根据pH曲线中的“氨谷”,连续运行反应器,并在铵耗尽后迅速终止好氧相。结果表明,使用pH作为脱氮的控制参数可以节省能源并改善脱氮,这使得通过SND脱氮的数量从50%增加到86%。经过连续两个月的通气控制运行后,活性污泥的凝结性能得到了显着改善。污泥体积指数(SVI)从115ml / g降低到57ml / g。还发现在SBR中形成了更大的污泥絮凝物。活性污泥絮状物的平均直径为442μm,这使得在活性污泥絮状物中易于形成缺氧微区。活性污泥絮体内部的缺氧微区可以合理地支持通过SND脱氮。

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