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Removal of high concentration of ammonia gas in a hybrid biofilter

机译:在杂交生物滤器中除去高浓度的氨气

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A new biofiltration technique based on biofilter and trickle-bed air biofilter (TBAB) was introduced to remove high concentration of ammonia gas. The start-up of the hybrid biofilter was studied, and the hybrid biofilter performance of ammonia removal under different conditions, such as air flow rates and inlet ammonia concentrations are varied, was evaluated. A visible biomass growth was obtained within 15 days. During the operation, the removal efficiency (RE) did not show a distinct difference between gas flow rate of 0.3m{sup}3/h and of 0.9m{sup}3/h. But in fact air flow rate had effect on biological removal efficiency. When ammonia loading rate was kept at 25gN/m{sup}3/h and air flow rate was kept at 0.7m{sup}3/h, the maximum elimination capacity (EC) was 56gN/m{sup}3/h. The biofilm was examined microscopically under different ammonia loading rates to determine the potential indicator value of protozoa and metozoa for control of biofilterI.
机译:引入了一种新的基于生物滤平和滴流空气生物过滤器(TBAB)的生物滤光技术,以除去高浓度的氨气。研究了混合生物过滤器的启动,并评价了不同条件下的氨除去的杂交生物过滤性能,例如空气流速和入口氨浓度。在15天内获得可见的生物质生长。在操作期间,去除效率(RE)没有显示出0.3m {sup} 3 / h的气体流速与0.9m {sup} 3 / h之间的不同差异。但实际上空气流速对生物去除效率产生了影响。当氨加载速率以25gn / m {sup} 3 / h保持3 / h并且空气流速保持在0.7m {sup} 3 / h时,最大消除容量(Ec)为56gn / m {sup} 3 / h。在不同的氨加载速率下进行显微镜检查生物膜,以确定原生动物和麦隙酶控制生物膜的潜在指示值。

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