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Feasibility of using a novel algal-bacterial biofilm reactor for efficient domestic wastewater treatment

机译:使用新型藻细菌生物膜反应器进行高效生活污水处理的可行性

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Current algal-bacterial consortia require high hydraulic retention times (HRTs, 2-10 days) to efficiently remove pollutants from domestic wastewaters. A novel algal-bacterial biofilm reactor was developed for a much lower HRT. The results showed that an HRT of 12 h ensured 90% removal of organic matter and ammonium, and phosphate removal was approximately 30%. Decreasing the HRT to 8 h significantly deteriorated the reactor's pollutant removal efficiencies and increasing the HRT to 24 h did not improve these efficiencies. Illumination, which was light source for algae, was provided by a LED light. Activity tests showed that organic matter and ammonium removal rates resulting from illumination were 70% and 50%, respectively, of the rates when dissolved oxygen concentration was maintained at 2 mg/L. Chemical oxygen demand (COD) removal rates resulted from illumination and aeration were 18.63 and 25.38 mg COD/L.h, respectively. The phosphate removal rate was 0.26 and 0.43 mg/L.h when illumination and aeration were applied, respectively. The ammonium removal rates were approximately 10,390 and 5000 mg when the reactor was aerated or illuminated, respectively. These two rates were significantly higher than reported nitrification rates. Moreover, the percentage of Oscillatoria sp. increased from below 10% to over 90% under the applied organic load and temperature, while the percentage of fast growing algae, Chlorella, chroococcus sp and Scenedesmus sp., decreased from over 90% to below 10%. These results showed that an algal-bacterial biofilm reactor with a low reactor footprint was developed.[GRAPHICS].
机译:当前的藻类细菌联盟需要较长的水力停留时间(HRT,2-10天)才能有效地去除生活污水中的污染物。开发了一种新型的藻细菌生物膜反应器,以降低HRT。结果表明,HRT为12 h可确保有机物和铵的去除率达到90%,而磷酸盐的去除率约为30%。将HRT降低到8小时会大大降低反应堆的污染物去除效率,而将HRT升高到24小时并不能提高这些效率。照明是藻类的光源,由LED灯提供。活性测试表明,光照使有机物和铵的去除率分别为溶解氧浓度保持在2 mg / L时的去除率的70%和50%。光照和曝气导致的化学需氧量(COD)去除率分别为18.63和25.38 mg COD / L.h。当施加照明和曝气时,磷酸盐去除率分别为0.26和0.43 mg / L.h。当反应器充气或照明时,铵的去除率分别约为10,390和5000 mg。这两个比率显着高于报道的硝化速度。此外,Oscillatoria sp。的百分比。在施加的有机负荷和温度下,藻类的比例从低于10%增至90%以上,而快速生长的藻类,小球藻,绿球菌和Scenedesmus sp。的比例则从90%以上降至10%以下。这些结果表明,已开发出具有低反应器占地面积的藻类细菌生物膜反应器。[GRAPHICS]。

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