College of Environmental Science and Engineering, Hunan University, Hunan 410082, China.
J Environ Sci (China). 2011;23(8):1325-33. doi: 10.1016/s1001-0742(10)60565-7.
Two identical bench-scale biotrickling filters (BTFs), BTF 1 and BTF 2, were evaluated for toluene removal at various gas empty bed contact times (EBCTs) and organic loadings. BTF 1 and BTF 2 were packed with structured and cubic synthetic polyurethane sponges, respectively. At a constant toluene loading of 16 g/(m3.hr), toluene removal efficiencies decreased from 98.8% to 64.3% for BTF 1 and from 98.4% to 74.1% for BTF 2 as gas EBCT decreased from 30 to 5 sec. When the toluene loading increased from 35 to 140 g/(m3.hr) at a gas EBCT of 30 sec, the removal efficiencies decreased from 99.1% to 77.4% for BTF 1 and from 99.0% to 81.5% for BTF 2. The pressure drop for both BTFs increased with increased air flow rate, and did not significantly vary while the toluene loading was increased under similar operation conditions. BTF 1 and BTF 2 could start up successfully within 19 and 27 days, respectively, when packed with fresh sponge media, and the performances could be restored in 3-7 days after biomass was removed and wasted from the media. BTF 2 displayed higher removal efficiency even under shorter EBCT or higher loading rate than BTF1 when other operation conditions were similar, while it showed lower pressure drop than BTF 1 during the whole period of operation. These results demonstrated that both BTFs could treat waste gas containing toluene effectively.
两个相同的 bench-scale 生物滴滤塔(BTF),BTF1 和 BTF2,分别在不同的气体空床接触时间(EBCT)和有机负荷下进行甲苯去除的评估。BTF1 和 BTF2 分别用结构和立方型合成聚氨酯海绵填充。在甲苯负荷为 16 g/(m3.hr)的恒定条件下,当气体 EBCT 从 30 秒降低到 5 秒时,BTF1 的甲苯去除效率从 98.8%下降到 64.3%,BTF2 从 98.4%下降到 74.1%。当气体 EBCT 为 30 秒,甲苯负荷从 35 g/(m3.hr)增加到 140 g/(m3.hr)时,BTF1 的去除效率从 99.1%下降到 77.4%,BTF2 从 99.0%下降到 81.5%。在相似的操作条件下,当甲苯负荷增加时,两个 BTF 的压降都随空气流量的增加而增加,且不会明显变化。当用新鲜海绵介质填充时,BTF1 和 BTF2 分别在 19 天和 27 天内成功启动,在生物量从介质中去除和浪费后,3-7 天内性能即可恢复。当其他操作条件相似时,BTF2 甚至在较短的 EBCT 或更高的负荷率下,也比 BTF1 具有更高的去除效率,但在整个操作期间,它的压降比 BTF1 低。这些结果表明,两个 BTF 都可以有效地处理含有甲苯的废气。