首页> 外文期刊>Journal of Hazardous Materials >Electrochemical treatment of the effluent of a fine chemical manufacturing plant
【24h】

Electrochemical treatment of the effluent of a fine chemical manufacturing plant

机译:精细化工生产厂废水的电化学处理

获取原文
获取原文并翻译 | 示例
           

摘要

In this work, the electrochemical oxidation of an actual industrial wastewater with conductive-diamond anodes has been studied. The wastewater is the effluent of a fine chemicals plant. This effluent consists of an aqueous solution of solvents (ketones and alcohols) with a high concentration of aromatic compounds coming from the raw materials, intermediates and products of the different processes of the plant and its COD is around 6000 mg dm~(-3). The electrolyses were carried out in a discontinuous operation mode under galvanostatic conditions, using a bench-scale plant equipped with a single compartment electrochemical flow cell. The conductive-diamond electrochemical oxidation (CDEO) allowed achieving the complete mineralization of the waste with high current efficiencies. These efficiencies seem to strongly depend on the concentration, pH and temperature but not on the current density (in the range studied). This confirms that besides the hydroxyl radicals mediated oxidation, CDEO combines other important oxidation processes such as the direct electrooxidation on the diamond surface and the oxidation mediated by other electrochemically formed compounds generated on this electrode. Other two advanced oxidation processes (ozonation and Fenton oxidation) have been also studied in this work for comparison purposes. Both technologies were able to treat the wastes, but they obtained very different results in terms of efficiency and mineralization. The efficiency of ozonation and electrochemical oxidation were very similar (especially during the first stages), although the energy consumption required by the electrochemical process to remove at fixed percentage of COD or TOC was significantly smaller than that of ozonation. The possible accumulation of carboxylic acid as final products excludes the use of Fenton oxidation as a sole treatment technology.
机译:在这项工作中,已经研究了使用导电金刚石阳极对实际工业废水的电化学氧化。废水是精细化工厂的废水。该废水由具有高浓度芳香化合物的溶剂(酮和醇)水溶液组成,这些芳香化合物来自工厂不同过程的原料,中间体和产品,其化学需氧量约为6000 mg dm〜(-3)。 。使用装有单室电化学流动池的台式规模的装置,在恒电流条件下以不连续操作模式进行电解。导电金刚石电化学氧化(CDEO)可以实现高电流效率的废物完全矿化。这些效率似乎在很大程度上取决于浓度,pH和温度,而不取决于电流密度(在所研究的范围内)。这证实,除了羟基自由基介导的氧化,CDEO还结合了其他重要的氧化过程,例如金刚石表面上的直接电氧化和由在该电极上生成的其他电化学形成的化合物介导的氧化。为了比较目的,在这项工作中还研究了其他两种先进的氧化工艺(臭氧化和芬顿氧化)。两种技术都能够处理废物,但在效率和矿化方面却获得了截然不同的结果。臭氧化和电化学氧化的效率非常相似(特别是在第一个阶段),尽管电化学过程以固定百分比的COD或TOC去除所需的能量消耗显着小于臭氧化的能量消耗。作为最终产物的可能的羧酸积累不包括使用芬顿氧化作为唯一的处理技术。

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