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Comparative Analysis of Hydrogenotrophic Denitrification in up and down Flow Reactors

机译:向下流动反应器中氢脱硝化的比较分析

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Use of ground water containing ammonical nitrogen has been increasing in Kathmandu valley. The use of locally and cheaply fitted Hydrogenotrophic Denitrification (HD) has been taken as an effective way to remove the nitrates in this study. Comparative analysis of HD reactors had been studied for the determination of the effective flow direction of water as Up Flow or Down Flow. The result reviled that flow direction as Down Flow HD reactor performed slightly better than Up Flow HD reactor. The maximum NOsub3/sub-N conversion reached 100% for Down Flow and 98.65% for Up Flow reactor with maximum of total inorganic nitrogen (TIN) removed were 41.11% and 33.89% for Down Flow and Up Flow reactor respectively. The difference in NOsub3/sub-N conversion and TIN removal were observed. As the NOsub2/sub-N was accumulated, suggesting NOsub3/sub conversion is higher than NOsub2/sub conversion thus, and majorly incomplete denitrification existed. The NOsub2/sub-N in water reached to maximum of 78.89 mg/l and 72.55 mg/l for Down Flow and Up Flow rector.
机译:在加德满都谷的使用含有氨氮的地面水已经增加。局部和廉价的抗脱氢脱氮(HD)已被认为是除去本研究中硝酸盐的有效方法。研究了HD反应器的比较分析,用于确定水的有效流动方向的流动或下流流动。结果旋转的流程方向为下流动HD反应器略好于流动HD反应器进行。下载流量的最大NO 3 -N转化率为100%,除了总无机氮气(TiN)的向上流动反应器的98.65%为下降和向上流动反应器的41.11%和33.89%分别。观察到No 3 -n转化和锡去除的差异。由于累积了No 2 -n,表明NO 3 转换高于NO 2 转换,因此存在主要不完全脱氮。水中的NO 2 -n达到最大值为78.89mg / l和72.55 mg / l,用于下流和上流校长。

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