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在亚临界水中通过电解完全降解橙 G。

Complete degradation of Orange G by electrolysis in sub-critical water.

机构信息

Graduate School of Science and Technology, Kumamoto University, 2-39-1 Kurokami, Kumamoto 860-8555, Japan.

出版信息

J Hazard Mater. 2011 Jun 15;190(1-3):1058-62. doi: 10.1016/j.jhazmat.2011.02.083. Epub 2011 Mar 5.

Abstract

Complete degradation of azo dye Orange G was studied using a 500 mL continuous flow reactor made of SUS 316 stainless steel. In this system, a titanium reactor wall acted as a cathode and a titanium plate-type electrode was used as an anode in a subcritical reaction medium. This hydrothermal electrolysis process provides an environmentally friendly route that does not use any organic solvents or catalysts to remove organic pollutants from wastewater. Reactions were carried out from 30 to 90 min residence times at a pressure of 7 MPa, and at different temperatures of 180-250°C by applying various direct currents ranging from 0.5 to 1A. Removal of dye from the product solution and conversion of TOC increased with increasing current value. Moreover, the effect of salt addition on degradation of Orange G and TOC conversion was investigated, because in real textile wastewater, many salts are also included together with dye. Addition of Na(2)CO(3) resulted in a massive degradation of the dye itself and complete mineralization of TOC, while NaCl and Na(2)SO(4) obstructed the removal of Orange G. Greater than 99% of Orange G was successfully removed from the product solution with a 98% TOC conversion.

摘要

使用 500 毫升连续流动反应器(由 SUS316 不锈钢制成)研究了偶氮染料橙 G 的完全降解。在该系统中,钛反应壁充当阴极,钛板式电极在亚临界反应介质中充当阳极。这种热水电解过程提供了一种环保的途径,无需使用任何有机溶剂或催化剂即可从废水中去除有机污染物。在 7 MPa 的压力下,停留时间为 30-90 分钟,在 180-250°C 的不同温度下,通过施加从 0.5 到 1A 的各种直流电进行反应。去除产物溶液中的染料和 TOC 的转化率随着电流值的增加而增加。此外,还研究了加盐对橙 G 降解和 TOC 转化率的影响,因为在实际的纺织废水中,许多盐也与染料一起存在。添加 Na2CO3 会导致染料本身的大量降解和 TOC 的完全矿化,而 NaCl 和 Na2SO4 则会阻碍橙 G 的去除。产物溶液中橙 G 的去除率超过 99%,TOC 的转化率达到 98%。

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