Method for improving decoloration ratio of wastewater from reactive dye printing
A technology of printing wastewater and reactive dyes, applied in the field of textile printing and dyeing, can solve the problems of poor effect and failure to meet the requirements of decolorization treatment, etc.
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Embodiment 1
[0009] Adjust the pH value of reactive red dye printing wastewater to neutral, slowly add 0.5g / L calcium chloride and stir to dissolve it, and then remove the generated solid suspension with a microporous membrane; add 0.5g / L calcium chloride under ultrasonic conditions Isomerize decanol polyoxyethylene ether (epoxy number is 7) and stir evenly for 15 minutes. Finally, the above printing wastewater is subjected to conventional titanium dioxide photocatalytic decolorization. After completion, the decolorization rate of the printing wastewater was determined to be 92%.
Embodiment 2
[0013] Adjust the pH value of reactive yellow dye printing wastewater to neutral, slowly add 1g / L calcium chloride and stir to dissolve it, then remove the generated solid suspension with a microporous membrane; add 0.5g / L isochloride under ultrasonic conditions Construct decanol polyoxyethylene ether (epoxy number is 7) and stir evenly for 15 minutes. Finally, the above printing wastewater is subjected to conventional titanium dioxide photocatalytic decolorization. After completion, the decolorization rate of the printing wastewater was determined to be 90%.
Embodiment 3
[0017] Adjust the pH value of the reactive blue dye printing wastewater to neutral, slowly add 2g / L calcium chloride and stir to dissolve it, and then remove the generated solid suspension with a microporous filter; add 1g / L isomeric Alcohol polyoxyethylene ether (epoxy number is 7) and stirred evenly for 15 minutes, and finally the above printing wastewater was subjected to conventional titanium dioxide photocatalytic decolorization. After completion, the decolorization rate of the printing wastewater was determined to be 88%.
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