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Nitrogen utilization in a vapor-phase biofilter

机译:气相生物滤池中的氮利用

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The effect of media nitrogen levels on biofilter performance was investigated in a lab-scale biofilter treating toluene and p-xylene. Nitrogen utilization rates and the quantity of nitrogen recycled to meet microbial demand in the biofilm were estimated using a nitrogen balance approach. Experimental data imply that overall biofilter performance was a strong function of normalized nitrogen levels in the synthetic media. The biodegradation of p-xylene was found to be more sensitive to media nitrogen levels than was the degradation of toluene. However, increasing the nitrogen supply improved both toluene (> 99%) and p-xylene removal efficiencies (> 90%). Nitrogen balance calculations indicate that substantial recycling of nitrogen occurred in the biofilm even under nitrogen-rich conditions. The fraction of nitrogen demand met by recycling nitrogen increased when the external supply of nitrogen was terminated, and the biofilm became nitrogen limited. However, to avoid severe nitrogen limitation conditions, an external nitrogen source must be provided to sustain high pollutant removals in the biofilter.
机译:在实验室规模的处理甲苯和对二甲苯的生物滤池中研究了介质氮水平对生物滤池性能的影响。使用氮平衡法估算氮利用率和为满足生物膜中微生物需求而循环利用的氮量。实验数据表明,生物滤池的总体性能是合成培养基中归一化氮水平的重要函数。发现对二甲苯的生物降解比甲苯的降解对介质氮含量更敏感。但是,增加氮气供应量可以提高甲苯(> 99%)和对二甲苯的去除效率(> 90%)。氮平衡计算表明,即使在富氮条件下,生物膜中也会发生氮的大量再循环。当氮的外部供给终止时,通过循环利用氮满足的氮需求比例增加,并且生物膜变成了氮受限的状态。但是,为避免严重的氮限制条件,必须提供外部氮源以维持生物滤池中较高的污染物去除率。

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