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Optimum conditions for the formation of Al_(13) polymer and active chlorine in electrolysis process with Ti/RuO_2-TiO_2 anodes

Optimum conditions for the formation of Al_(13) polymer and active chlorine in electrolysis process with Ti/RuO_2-TiO_2 anodes
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摘要 A polyaluminum containing a high concentration of Al13 polymer and active chlorine(PACC) was successfully synthesized by a new electrochemical reactor using Ti/RuO2-TiO2 anodes.PACC can potentially be used as a dual-function chemical reagent for water treatment.The obtained results indicated that the formation of Al13 polymer and active chlorine,were the most active components in PACC responsible for coagulation and disinfection respectively.These components were significantly influenced by electrolyte temperature,current density,and stirring rate.It was observed that high electrolyte temperature favored the formation of Al13.Increasing current density and stirring rate resulted in high current efficiency of chlorine evolution,thus favoring the generation of Al13 and active chlorine in PACC.When the PACC(AlT = 0.5 mol/L,basicity = 2.3) was prepared at the optimum conditions by electrolysis process,the Al13 polymer and active chlorine in product reached above 70% of AlT and 4000 mg/L,respectively.In the pilot scale experiment with raw polyaluminum chloride used as an electrolyte,PACC was successfully prepared and produced a high content of Al13 and active chlorine products.The pilot scale experiment demonstrated a potential industrial approach of PACC preparation. A polyaluminum containing a high concentration of Al13 polymer and active chlorine(PACC) was successfully synthesized by a new electrochemical reactor using Ti/RuO2-TiO2 anodes.PACC can potentially be used as a dual-function chemical reagent for water treatment.The obtained results indicated that the formation of Al13 polymer and active chlorine,were the most active components in PACC responsible for coagulation and disinfection respectively.These components were significantly influenced by electrolyte temperature,current density,and stirring rate.It was observed that high electrolyte temperature favored the formation of Al13.Increasing current density and stirring rate resulted in high current efficiency of chlorine evolution,thus favoring the generation of Al13 and active chlorine in PACC.When the PACC(AlT = 0.5 mol/L,basicity = 2.3) was prepared at the optimum conditions by electrolysis process,the Al13 polymer and active chlorine in product reached above 70% of AlT and 4000 mg/L,respectively.In the pilot scale experiment with raw polyaluminum chloride used as an electrolyte,PACC was successfully prepared and produced a high content of Al13 and active chlorine products.The pilot scale experiment demonstrated a potential industrial approach of PACC preparation.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2012年第2期297-302,共6页 环境科学学报(英文版)
基金 supported by the Creative Research Groupsof China (No. 50921064) the National High-Tech Research and Development Program (863) of China (No.2009AA06Z303)
关键词 Al13 polymer COAGULATION PRE-OXIDATION ELECTROLYSIS water treatment Al13 polymer coagulation pre-oxidation electrolysis water treatment
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  • 1Al-Degs Y, Khraisheh M A M, Tutunji M F, 2001. Sorption of lead ions on diatomite and manganese oxides modified diatomite. Water Research, 35(15): 3724-3728.
  • 2Chang Y, Li C W, Benjamin M M, 1997. Iron oxide-coated media for NOM sorption and particulate filtration. Journal of American Water Works Association, 89(5): 100-113.
  • 3Colthurst J M, Singer P C, 1982. Removing trihalomethane precursors by permanganate oxidation and manganese dioxide adsorption. Journal of American Water Works Association, 74: 78-83.
  • 4Chena J J, Yehb H H, 2005. The mechanisms of potassium permanganate on algae removal. Water Research, 39(18): 4420-4428.
  • 5Driehuaus W G, Remer S, Martin J, 1995. Oxidation of arsenic(Ⅲ) with manganese oxide in water Veatment. Water Research, 29(1): 297- 305.
  • 6Edmond L E, Dhanpat R, 1987. Kinetics of chromium(Ⅲ) oxidation to chromium(VI) by reaction with manganese dioxide. Environment Science and Technology, 21:1187-1193.
  • 7El-Rehaili A M, Weber W J, 1987. Correlation of humic substance trihalomethane formation potential and adsorption behavior to molecular weight distribution in raw and chemically treated waters. Water Research, 21: 573-582.
  • 8Edwards M E, Benjamin M M, Ryan J N, 1996. Role of organic acidity in sorption of natural organic matter to oxide surfaces. Colloids and Surfaces A, 107: 297-307.
  • 9Gu B, Schmitt J, Chen Z, 1994. Adsorption and desorption of natural organic matter on iron oxide: Mechanisms and models. Environment Science and Technology, 28: 38--46.
  • 10Lai C H, Chen C Y, Wei B H, 2002. Cadmium adsorption on goethitecoated sand in the presence of humic acid. Water Research, 36(20): 4943-4950.

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