Study on Treatment of Printing and Dyeing Wastewater by Magnetic Seed Coagulation--High Gradient Magnetic Separation

Chen Wen-song, Lin Hua-shi, Zhang Shuo-feng
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引用次数: 4

Abstract

Treatment of printing and dyeing wastewater by the device of high gradient magnetic separation (HGMS)developed by author was tested. The results showed that printing and dyeing wastewater contained varied chemical composition and whose initial concentration of chromaticity and COD were 800 and 565mg/L respectively can be well cleaned by Fenton oxidation¡ªmagnetic seed coagulation¡ªHGMS. The removal rate of chromaticity and COD was up to92.6% and 79.5% respectively. The effluent can meet the national drainage criterion. The optimum technological parameters are as follows: pH=6, [FeSO4¡¤7H2O]=250mg/L, [H2O2]=1.3ml/L, [PAM]=0.75 mg/L, dose of magnetic particle W=150mg/L, current intensity I=8A, current velocity U=2.420L/min, packing density of stainless steel wire R=1.00%-1.43%. Recovery rate of magnetic particle was up to90% by regenerated technique of chemistry in combination with physics.
磁种子混凝—高梯度磁分离处理印染废水的研究
对自行研制的高梯度磁分离装置处理印染废水进行了试验研究。结果表明:不同化学成分的印染废水,初始色度和COD分别为800 mg/L和565mg/L时,Fenton氧化—磁种絮凝—HGMS处理效果良好。色度去除率达92.6%,COD去除率达79.5%。出水达到国家排水标准。最佳工艺参数为:pH=6, [FeSO4·7H2O]=250mg/L, [H2O2]=1.3ml/L, [PAM]=0.75 mg/L,磁粉剂量W=150mg/L,电流强度I=8A,电流速度U=2.420L/min,不锈钢丝填料密度R=1.00% ~ 1.43%。采用化学与物理相结合的再生技术,磁性颗粒的回收率可达90%以上。
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