Chowdhury Nabin, Nakhla George, Zhu Jesse
Department of Civil and Environmental Engineering, The University of Western Ontario, London, Ontario, Canada N6A 5B8.
Chemosphere. 2008 Mar;71(5):807-15. doi: 10.1016/j.chemosphere.2007.11.070. Epub 2008 Feb 8.
A novel liquid-solid circulating fluidized bed bioreactor (LSCFB) configured with anoxic and aerobic columns and lava rock as the biofilm carrier was used to treat synthetic municipal wastewater. Four different empty bed contact times (EBCTs) of 0.82, 0.65, 0.55, and 0.44 h were examined to optimize nutrient removal capability of the system. The LSCFB demonstrated tertiary effluent quality organic and nitrogen removal efficiencies. Effluent characteristics of the LSCFB were soluble biological oxygen demand (SBOD)10 mg l(-1) and total nitrogen (TN)<10 mg l(-1) at organic loading rate (OLR) of 5.3 kg m(-3)d(-1) and nitrogen loading rate of 0.54 kg Nm(-3)d(-1). Remarkably low yields of 0.14, 0.17, 0.19, and 0.21 g VSS g(-1)COD were observed at OLR of 2.6, 3.2, 4.1 and 5.3 kg COD m(-3)d(-1), where increment of biomass growth and detachment rate were also experienced with increasing OLR. However the system demonstrated only 30% phosphorus removal, and mass balances along the anoxic and aerobic columns showed biological phosphorus removal in the system. Organic mass balance showed that approximately 40% of the influent COD was utilized in the anoxic column and the remaining COD was oxidized in the aerobic column. The system is very efficient in nitrification-denitrification, with more than 90% nitrification of ammonium and overall nitrogen removal in the LSCFB was 70+/-11% even at an EBCT of 0.44 h.
一种新型的液固循环流化床生物反应器(LSCFB),配置有缺氧柱和好氧柱,并以熔岩作为生物膜载体,用于处理模拟城市污水。研究了0.82、0.65、0.55和0.44小时这四种不同的空床接触时间(EBCT),以优化该系统的营养物去除能力。LSCFB展现出了三级出水水质的有机物和氮去除效率。在有机负荷率(OLR)为5.3 kg m(-3)d(-1)和氮负荷率为0.54 kg Nm(-3)d(-1)时,LSCFB的出水特性为可溶性生物需氧量(SBOD)10 mg l(-1),总氮(TN)<10 mg l(-1)。在OLR为2.6、3.2、4.1和5.3 kg COD m(-3)d(-1)时,观察到产率极低,分别为0.14、0.17、0.19和0.21 g VSS g(-1)COD,随着OLR的增加,生物量增长和脱落率也随之增加。然而,该系统仅实现了30%的磷去除,并且沿缺氧柱和好氧柱的质量平衡显示系统中存在生物除磷。有机物质量平衡表明,大约40%的进水COD在缺氧柱中被利用,其余的COD在好氧柱中被氧化。该系统在硝化反硝化方面非常高效,即使在EBCT为0.44小时时,氨氮的硝化率仍超过90%,LSCFB的总氮去除率为70±11%。