College of Biological and Environmental Engineering, Zhejiang University of Technology, Hangzhou 310032, China.
J Hazard Mater. 2011 Sep 15;192(3):1650-8. doi: 10.1016/j.jhazmat.2011.06.092. Epub 2011 Jul 6.
Biofiltration of hydrophobic and/or recalcitrant volatile pollutants is intrinsically limited. In the present study, a combined ultraviolet-biotrickling filter (UV-BTF) was developed to improve the removal of these compounds, and a single BTF as the control was operated under the same conditions. The experimental results showed that the UV-BTF provided higher removal efficiencies than the single BTF at an inlet concentration range of 600-1500 mg m(-3) under shorter residence times. The maximum elimination capacities (ECs) obtained were 94.2 mg m(-3)h(-1) and 44 mg m(-3)h(-1) in the combined UV-BTF and single BTF, respectively. The mass ratio of carbon dioxide produced to α-pinene removed in the UV-BTF was approximately 2.74, which was much higher than that of the single BTF (1.99). Polymerase chain reaction-denaturing gradient gel electrophoresis (PCR-DGGE) analysis indicated that there was more complicated microbial community in the UV-BTF than that in the single BTF. In addition, we investigated the effect of starvation or stagnation on re-acclimation and removal performance from an engineering standpoint. The results showed that the combined UV-BTF could deal with fluctuating conditions or periods without any flow (air or liquid) supply much better than the single BTF.
生物过滤对疏水性和/或难降解挥发性污染物的去除能力有限。本研究采用组合式紫外-生物滴滤器(UV-BTF)来提高这些化合物的去除率,同时以单一生物滴滤器(BTF)作为对照在相同条件下运行。实验结果表明,在入口浓度范围为 600-1500mg m(-3)、停留时间较短的情况下,UV-BTF 的去除效率高于单一 BTF。在组合式 UV-BTF 和单一 BTF 中分别获得的最大去除容量(EC)分别为 94.2mg m(-3)h(-1)和 44mg m(-3)h(-1)。UV-BTF 中产生的二氧化碳与α-蒎烯去除量的质量比约为 2.74,远高于单一 BTF(1.99)。聚合酶链式反应-变性梯度凝胶电泳(PCR-DGGE)分析表明,UV-BTF 中的微生物群落比单一 BTF 更为复杂。此外,从工程角度研究了饥饿或停滞对再驯化和去除性能的影响。结果表明,与单一 BTF 相比,组合式 UV-BTF 能够更好地应对波动条件或无任何(空气或液体)流动的时期。