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⵵/ȣ 1997 / ȣ: V.9,no.6,Dec
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2(Ÿ) Treatment of Dye-Processing Wastewater by Chemical Precipitation
() Han, Myung-Ho (Dept. of Industrial Chem. Kyungil University, Kyungsan, Korea) Huh, Man-Woo (Dept. of Textile Eng. Kyungil University, Kyungsan, Korea) Kim, Jeong-Mog (Dept. of Environmental Planning, Taekyeong College, Kyungsan, Korea) Lee, Jin-Sik (Dept.
(Ÿ) Han, Myung-Ho (Dept. of Industrial Chem. Kyungil University, Kyungsan, Korea) Huh, Man-Woo (Dept. of Textile Eng. Kyungil University, Kyungsan, Korea) Kim, Jeong-Mog (Dept. of Environmental Planning, Taekyeong College, Kyungsan, Korea) Lee, Jin-Sik (Dept.
Ҽ() Han, Myung-Ho (Dept. of Industrial Chem. Kyungil University, Kyungsan, Korea) Huh, Man-Woo (Dept. of
Ҽ(Ÿ) Han, Myung-Ho (Dept. of Industrial Chem. Kyungil University, Kyungsan, Korea) Huh, Man-Woo (Dept. of
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ʷ In order to remove the pollutants effectively in the dye-processing wastewater by chemical precipitation, coagulation and flocculation test was carried out using several coagulants on various reaction conditions. It was found that the Ferric sulfate was best coagulant for the treatment of mixed dye-processing wastewater. When the Ferric sulfate dosage was 1,100mg/, the COD removal rate was very high(50%), and the color was removed very effectively. The COD was decreased relatively well up to 40%, when Alum was dosed as coagulant. But it was difficult to remove the color effectively. Test results about COD removal for the Ferrous sulfate and the Ferric chloride used were mostly same as those of the Alum used. However, the color removal by the Ferrous sulfate was much better than the case of the Alum or the Ferric chloride. It was found that the COD removal was increased and the sludge yield was decreased by pH control before polymer flocculant addition, during the jar test for the Ferrous sulfate and the Ferric sulfate as a coagulant.
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