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生物絮凝在校园生活污水处理中的应用研究   总被引:2,自引:0,他引:2  
将高效生物絮凝剂产生茵V3,V11,V13应用于校园生活污水处理中,可有效提高水处理絮凝效果。试验结果表明:当SBR反应器曝气时间3h,投菌量50g/L,温度28—30℃,V3对OD550,NH3-N,COD,浊度去除率分别达91.5%.82%,91.3%,93.5%,V11对OD550,COD,浊度去除率分别达89.1%,91.5%,95.1%,对NH3-N去除率较低;V13对OD550,COD,浊度去除率分别达90.7%,93.3%,92.1%,对NH3-N几乎没有去除;3株菌混合培养,3株菌形成一种互生关系.应用于水处理中当SBR曝气时间3h,投菌量50g/L,温度28~30℃,对OD550,NH3-N,COD,浊度去除率分别达93.3%,86.7%。93.5%,96%,同时能有效的改变污泥沉降性能.  相似文献   
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Flocculation is an essential phenomenon in industrial wastewater treatment. Inorganic coagulants (salts of multivalent metals) are being commonly used due to its low cost and ease of use. However, their application is constrained with low flocculating efficiency and the presence of residue metal concentration in the treated water. Organic polymeric flocculants are widely used nowadays due to its remarkable ability to flocculate efficiently with low dosage. However, its application is associated with lack of biodegradability and dispersion of monomers residue in water that may represent a health hazard. Therefore, biopolymers based flocculants have been attracting wide interest of researchers because they have the advantages of biodegradability and environmental friendly. But, natural flocculants are needed in large dosage due to its moderate flocculating efficiency and shorter shelf life. Thus, in order to combine the best properties of both, synthetic polymers are grafted onto the backbone of natural polymers to obtain tailor-made grafted flocculants. This paper gives an overview of the development of different types of flocculants that were being investigated for treatment of industrial wastewater. Furthermore, their flocculation performance will be reviewed and the flocculation mechanism will be discussed.  相似文献   
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