首页> 外文会议>International Conference on Chemistry, Chemical Process and Engineering >Co(III) As Mediator In Phenol Destruction Using Electrochemical Oxidation
【24h】

Co(III) As Mediator In Phenol Destruction Using Electrochemical Oxidation

机译:CO(III)作为使用电化学氧化苯酚破坏的介质

获取原文

摘要

Mediated electrochemical oxidation is one of the method for oxidation of organic compound by using a mediator. This method has been developed because have several advantages which low cost and efficient, the exhaust gas does not contain toxic materials and hazardous waste and the process take place at a relatively low temperature. Electrochemical oxidation of organic compounds using metal ion mediator is one alternative method that is appropriate for the treatment of organic waste. Co(III) is a strong oxidizing agent used as a mediator has been prepared in Pt electrodes. The concentration of Co(III) formed during oxidation determined by potentiometric titration where Co(III) aliquot was added into Fe(II) excess solution and the remaining Fe(II) which did not react has been titrated with Ce(IV). In optimum condition, Co(III) was then used to oxidize the organic compound into carbon dioxide. The parameters has been studied are the standard oxidation potential of mediator, acid concentration and temperature. The results obtained at potential of 6 Volt, with nitric acid 4 M and temperature of 25°C give result 23.86% where Co (II) is converted to Co (III) within 2 hours. The addition of silver nitrate can increase the concentration of Co(III). At the optimum conditions, the mediator ion Co(III) can destructed to 66.44% of phenol compound oxidized into carbon dioxide.
机译:介导的电化学氧化是通过使用介体氧化有机化合物的方法之一。这种方法已经开发出,因为具有低成本和高效的几个优点,废气不含有毒材料和危险废物,并且该过程在相对较低的温度下进行。使用金属离子介体的有机化合物的电化学氧化是一种适用于治疗有机废物的一种替代方法。 CO(III)是用作介体的强氧化剂已在PT电极中制备。通过电位滴定确定在氧化期间形成的CO(III)的浓度,其中将CO(III)等分试样加入Fe(II)过量溶液中,并用Ce(IV)滴定未反应的剩余Fe(II)。在最佳条件下,然后使用CO(III)将有机化合物氧化成二氧化碳。已经研究参数是介质,酸浓度和温度的标准氧化电位。在6伏的电位下获得的结果,用硝酸4M和25℃的温度得到2小时,其中CO(II)在2小时内转化为CO(III)的结果23.86%。添加硝酸银可以增加CO(III)的浓度。在最佳条件下,介体离子CO(III)可以破坏氧化成二氧化碳的66.44%的苯酚化合物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号