Department of Environmental Engineering, College of Science and Technology, Korea University, Jochiwon-eup, Yeongi-gun, Chungnam 339-700, Republic of Korea.
Bioresour Technol. 2010 Jun;101(11):3940-6. doi: 10.1016/j.biortech.2010.01.022. Epub 2010 Feb 9.
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 (0.39mg/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.
本研究在实验室规模的填充床反应器(PBR)中通过改变氢气流量和水力停留时间(HRT)来研究氢气的溶解和氢营养型反硝化性能。由于高溶解氢浓度(0.39mg/L)和利用率(79%),增加氢气流量和 HRT 可提高反硝化性能。在本研究中,氢气与水的流量比(Q(g)/Q(w))被发现是一个新的操作因子,代表了氢气流量和 HRT 这两个参数。氢气溶解和反硝化效率分别与 Q(g)/Q(w)呈非线性和线性相关。基于其与反硝化效率的良好线性相关性,Q(g)/Q(w)应大于 2.3,以满足世界卫生组织(WHO)饮用水硝酸盐氮标准。本研究表明,Q(g)/Q(w)是优化氢曝气生物反应器进行氢营养型反硝化的一个简单而有效的因子。