Abstract:Purpose
In this study, the oxidative degradation performance of indigo wastewater based on electrochemical systems was explored. The decolourization degrees, removal rate of chemical oxygen demand and biochemical oxygen demand of the indigo wastewater after degradation were evaluated and optimized treatment conditions being obtained.
Design/methodology/approach
The single factor method was first used to select the electrolyte system and electrode materials. Then the response surface analysis based on Box–Beh… Show more
“…Also the deeper the color, the more signicant the factor. [28][29][30] In Fig. 4(1), the three-dimensional response surface plots showed that with the increase of initiator concentration and the mass ratio of total monomer to chitosan, the graing rate increased rst and then decreased.…”
In view of the diversification of pollutants in current sewage, further improving the application efficiency of water treatment agents and realizing multi-functionalization are important directions for the research of water treatment agents.
“…Also the deeper the color, the more signicant the factor. [28][29][30] In Fig. 4(1), the three-dimensional response surface plots showed that with the increase of initiator concentration and the mass ratio of total monomer to chitosan, the graing rate increased rst and then decreased.…”
In view of the diversification of pollutants in current sewage, further improving the application efficiency of water treatment agents and realizing multi-functionalization are important directions for the research of water treatment agents.
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