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Electrochemical degradation of acidified reed pulp black liquor with three-dimensional electrode reactor

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【作者】 赵静叶晟王云燕尤翔宇柴立元舒余德

【Author】 ZHAO Jing;YE Sheng;WANG Yun-yan;YOU Xiang-yu;CHAI Li-yuan;SHU Yu-de;Jiangsu Transportation Institute Co., Ltd.;School of Metallurgy and Environment, Central South University;Jiangsu Sentay Environmental Science and Technology Co., Ltd.;

【机构】 Jiangsu Transportation Institute Co., Ltd.School of Metallurgy and Environment, Central South UniversityJiangsu Sentay Environmental Science and Technology Co., Ltd.

【摘要】 The electrochemical degradation of reed pulp black liquor containing lignin pretreated by acidification method was investigated using a three-dimensional electrode reactor. Using activated carbon as particle electrode, the effects of p H value, reaction temperature, electrolysis time and current on residual concentration of total organic carbon(TOC) were discussed in detail. The optimal conditions were obtained: pH 2.5, influent flow rate of 200 mL/min, 25 °C, 300 mA and 2h of electrolysis time, and the removal efficiency of TOC maintains at 35.57 %. The results of the electrochemical method indicate that ·OH radicals are produced in activated carbon anode in the electrolysis process and then adsorbed on the activated carbon surface. Microcell consists of ·OH radicals and the absorbed lignin. With the microcell reaction, the lignin is degraded, while the anodic polarized curve illustrates that the lignin is obviously oxidized in the anode. The contributions of direct and indirect electrolyses to the TOC removal ratio are about 50%, respectively.

【Abstract】 The electrochemical degradation of reed pulp black liquor containing lignin pretreated by acidification method was investigated using a three-dimensional electrode reactor. Using activated carbon as particle electrode, the effects of p H value, reaction temperature, electrolysis time and current on residual concentration of total organic carbon(TOC) were discussed in detail. The optimal conditions were obtained: pH 2.5, influent flow rate of 200 mL/min, 25 °C, 300 mA and 2h of electrolysis time, and the removal efficiency of TOC maintains at 35.57 %. The results of the electrochemical method indicate that ·OH radicals are produced in activated carbon anode in the electrolysis process and then adsorbed on the activated carbon surface. Microcell consists of ·OH radicals and the absorbed lignin. With the microcell reaction, the lignin is degraded, while the anodic polarized curve illustrates that the lignin is obviously oxidized in the anode. The contributions of direct and indirect electrolyses to the TOC removal ratio are about 50%, respectively.

【基金】 Project(50925417)supported by the National Natureal Science Foundation for Distinguished Young Scholar of China;Project(51074191)supported by the National Natural Science Foundation of China
  • 【文献出处】 Journal of Central South University ,中南大学学报(英文版) , 编辑部邮箱 ,2015年08期
  • 【分类号】O646;TS71
  • 【被引频次】5
  • 【下载频次】67
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