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作 者:代琳琳[1,2,3] 宋英豪[4] 荆降龙 贾立敏[4] 林秀军[1,2,3] 朱民[1,2,3]
机构地区:[1]北京市环境保护科学研究院,北京100037 [2]国家城市环境污染控制工程技术研究中心,北京100037 [3]国家环境保护工业废水污染控制工程技术(北京)中心,北京100037 [4]北京化工大学高新技术研究院,北京100029
出 处:《工业水处理》2014年第8期62-64,共3页Industrial Water Treatment
摘 要:采用臭氧强化混凝的方法对酵母废水二级出水进行深度处理,结果表明,臭氧、三氯化铁投加量分别为120 mg/L、0.5 g/L时,COD去除率为65.0%,与相同投加量下先混凝后臭氧氧化的实验结果相比,COD去除率可提高19.2%,化学污泥产生量可减少50%以上;与单独混凝实验相比,可减少60%以上的混凝剂用量。臭氧强化混凝的吨水处理费用最低,采用氧气源时,吨水处理费为2.5元,分别比先混凝后臭氧氧化和单独混凝减少0.7、1.3元/t。Ozone enhanced coagulation has been used for the advanced treatment of the secondary effluent of yeast wastewater. The results show that when the dosage of 03 is 120 mg/L and FeCl3 0.5 g/L,the COD removing rate is 65.0%. Compared with the experimental results of that having the same dosages, and the process by coagulation first and then ozonation next, 19.2% of COD removing rate can be increased,and 50% or more of chemical sludge yield can be decreased. Compared with the results of the process by coagulation only, more than 60% of coagulant dosage can be reduced. The wastewater treatment cost of ozone enhanced coagulation per ton is the lowest. When oxygen source is used,the treatment cost is CNY2.5/t. Compared with the treatment costs of the processes by coagulation first and ozonation next and by coagulation only, CNY0.7/t and CNY1.3/t can be reduced, respectively
分 类 号:X705[环境科学与工程—环境工程]
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