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- W2367712510 abstract "The present paper aims to introduce the authors' investigation of methylthionine chloride watery solution with the COD value(2 000) mg/L disposed by CWAO technology by using Cu(NO_3)_2 as a catalyst.As is known,catalyst dosage,reaction temperature,pressure,and inflow water pH value all influence water sample COD removing rate,color removal rate and outflow water pH value.The results show that the oxidation efficiency of methylthionine chloride can be enhanced with the increase of the catalyst dosage,reactive temperature and pressure.However,when oxidation efficiency,reagent expense,equipment cost and energy consume can be taken into integrated account,the experiments ascertain that Cu(NO_3)_2 dosage is 150 mg/L(according to Cu~(2+)),reactive temperature is 200 ℃, and pressure is 2.0 MPa.However,on the condition of acidity inflow water,COD removal rate may increase with the decrease of inflow water pH value.Whereas at the conditions of alkalescence inflow water,COD removing rate increase with the increase of inflow water pH value,pH value are arranged in COD removal rate high-low order: 3.87,11.23,5.50,7.25,9.47,and the experiments indicate that the best inflow water pH value is 3.87.At the best operation conditions,150 minutes of experiment later,the water sample COD removal rate would reach 97.4%,the color removal rate can reach 99.97%,and the outflow water pH value is 3.63." @default.
- W2367712510 created "2016-06-24" @default.
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- W2367712510 date "2005-01-01" @default.
- W2367712510 modified "2023-09-23" @default.
- W2367712510 title "Application of Cu(NO_3)_2 in course of WAO disposing methylthionine chloride" @default.
- W2367712510 hasPublicationYear "2005" @default.
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