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《Journal of Safety and Environment》 2007-03
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Treating acid brilliant red GR dyeing wastewater by using composite coagulants

ZHANG Yi1,2, WANG Wei1, ZHU Wei1,2, TIAN Jiong1,2, TANG Qiu-ping1,2, CHEN Ze-zhi2(1 Nanjing Institute of Environmental Science, State Environmental Protection Administration of China, Nanjing 210042, China; 2 State Key Laboratory of Pollution Control and Resource Reuse, School of Environment, Nanjing University, Nanjing 210093, China)  
In this paper, we are going to report our analysis of the structure and properties of the acid brilliant scarlet GR in dyeing wastewater with the influence of different coagulants appending quantity discussed. As is known, dyeing wastewater is complicated of its constituents usually due to the various remaining residues of dyes. Dark in its chrome and strong in toxicity, dyeing wastewater is hard to be degraded. Furthermore, since wastewater to be treated is large in quantity with its pH value changing greatly and its concentration being high, lots of problems remain unsolved for its treatment. To solve such problems, the present authors have done a series of filtrating experiments by using all kinds of coagulants, such as FeSO4MgSO4Ca(OH)2PAM. Trying to optimize the operational conditions, we have adopted acid brilliant red GR wastewater in our experiments, which as mentioned above, contains 288.3 mg/L CODCr and 25 000 times color. The results of our experiments have shown that the best combination of the composite coagulant FeSO4MgSO4Ca(OH)2PAM (w/w) is likely to be about 100∶200∶150∶(0.0470.093), with pH value being 10.0, and the CODCr removal rate being as high as 85.3% and the most discoloration rate of 97.5%. When the discoloration rate reaches 90%, the cost of treating a ton of wastewater would be reduced to merely 1.12 yuan. Therefore, the chemical coagulation process here introduced for treating acid brilliant scarlet GR is highly economical in cost, easy in operation and extremely efficient in implementation.
【CateGory Index】: X703
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