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Hydrogenotrophic denitrification in a packed bed reactor: Effects of hydrogen-to-water flow rate ratio

机译:填充床反应器中的氢营养反硝化:氢水流速比的影响

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摘要

Hydrogen dissolution and hydrogenotrophic denitrification performance were investigated in a lab-scale packed bed reactor (PBR) by varying the hydrogen flow rate and hydraulic retention time (HRT). The denitrification performance was enhanced by increasing the hydrogen flow rate and HRT as a result of high dissolved hydrogen concentration (0.39 mg/L) and utilization efficiencies (79%). In this study, the hydrogen-to-water flow rate ratio (Q(g)/Q(w)) was found to be a new operating factor representing the two parameters of hydrogen flow rate and HRT. Hydrogen dissolution and denitrification efficiency were nonlinearly and linearly correlated with the Q(g)/Q(w), respectively. Based on its excellent linear correlation with denitrification efficiency, Q(g)/Q(w) should be greater than 2.3 to meet the WHO's guideline of nitrate nitrogen for drinking water. This study demonstrates that Q(g)/Q(w) is a simple and robust factor to optimize hydrogen-sparged bioreactors for hydrogenotrophic denitrification.
机译:通过改变氢气流速和水力停留时间(HRT),在实验室规模的填充床反应器(PBR)中研究了氢溶解和氢营养反硝化性能。高溶解氢浓度(0.39 mg / L)和利用率(79%)的结果是,通过提高氢气流速和HRT,可以提高反硝化性能。在这项研究中,发现氢气与水的流量比(Q(g)/ Q(w))是代表氢气流量和HRT两个参数的新操作因子。氢溶解和反硝化效率分别与Q(g)/ Q(w)非线性和线性相关。基于其与反硝化效率的极佳线性相关性,Q(g)/ Q(w)应大于2.3,以符合WHO的饮用水硝酸盐氮准则。这项研究表明Q(g)/ Q(w)是优化氢稀疏生物反应器进行氢营养反硝化的一个简单而稳定的因素。

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