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在改进的三段式气升式填充床反应器中微生物降解苯酚。

Microbial degradation of phenol in a modified three-stage airlift packing-bed reactor.

机构信息

Department of Environmental Engineering and Science, Chia-Nan University of Pharmacy and Science, Tainan, Taiwan, PR China.

出版信息

Water Environ Res. 2010 Mar;82(3):249-58. doi: 10.2175/106143009x447885.

Abstract

Phenol degradation was carried out by using a modified three-stage airlift packing-bed bioreactor. A laboratory-scale airlift packing-bed reactor, with hydrodynamic flexible packing material in the three-stage bioreactor, was constructed and operated for phenol removal from synthetic wastewater. The airlift packing-bed reactor successfully degraded phenol and lowered the chemical oxygen demand (COD) of wastewater. High COD removal was observed, and much lower sludge effluent was obtained in this investigation. This airlift bioreactor showed a superior hydrodynamics performance and broad operating conditions for phenolic material removal. Different operating modes were discussed to obtain the optimal condition for phenol degradation (i.e., hydraulic retention time [HRT] and gas flowrate of airlift). The HRT and feed phenol concentration of wastewater dominated the removal efficiency of phenol and COD. In this bioreactor, surface loading up to 2.84 g phenol/ m2 x d, almost 100% phenol removal, and over 90% COD removal was achieved. The lower operating cost combined with higher phenol-removal efficiency and a low sludge effluent concentration can be achieved by using this reactor for phenol wastewater treatment.

摘要

采用改进的三级气升式填充床生物反应器进行苯酚降解。构建并运行了一个实验室规模的气升式填充床生物反应器,在三级生物反应器中使用流体力学灵活的填充材料,用于从合成废水中去除苯酚。气升式填充床反应器成功降解了苯酚并降低了废水的化学需氧量(COD)。在这项研究中观察到高 COD 去除率,并且获得了低得多的污泥流出物。该气升式生物反应器表现出优越的流体动力学性能和广泛的酚类物质去除操作条件。讨论了不同的操作模式,以获得苯酚降解的最佳条件(即水力停留时间(HRT)和气升式气流率)。HRT 和废水进料苯酚浓度主导了苯酚和 COD 的去除效率。在该生物反应器中,实现了高达 2.84 g 苯酚/m2 x d 的表面负荷,几乎 100%的苯酚去除率和超过 90%的 COD 去除率。使用该反应器处理苯酚废水可以实现较低的运行成本,同时具有较高的苯酚去除效率和低浓度的污泥流出物。

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