首页> 外文期刊>Civil and Environmental Engineering Reports >The Use of Sodium Percarbonate in the Fenton Reaction for the PAHs Oxidation
【24h】

The Use of Sodium Percarbonate in the Fenton Reaction for the PAHs Oxidation

机译:Fenton反应中过碳酸钠在PAHs氧化中的应用

获取原文
       

摘要

The aim of the paper was to determine the effectiveness of the removal of 4, 5and 6 - ring PAHs from coking wastewater using sodium percarbonate Na_(2)CO_(3)?1,5 H_(2)O_(2) and iron sulphate in acid condition. The samples were exposing to ultraviolet rays. The source of UV-C radiation was a lamp emitting a wave of light with a length of λ = 264 nm, placed directly above the layer of the samples wastewater. The sodium percarbonate Na_(2)CO_(3) 1.5 H_(2)O_(2) doses were determined on the basis of stoichiometric calculation. Ratio of iron ions to the hydrogen peroxide released in reaction was: 0.5; 0.4; 0.3; 0.2; 0.1. Before and after the oxidation process, COD and TOC value were determined and as well as concentrations of selected PAHs. The total concentration of tested PAHs before oxidation reached the value of 995 μg/L. The average content of organic pollutants determined by the chemical oxygen demand (COD) was 538 mg/L, while the average content of Total organic carbon (TOC) was 180 mg/L. The use of sodium percarbonate caused the oxidation of organic pollutants and lowering of COD and TOC in the following ranges: 22-46% and 10-30%. For individual PAHs the degradation efficiency was in the ranged from 95% to 99.9%. The degradation efficiency of 4 ring hydrocarbons caused 98% and 5 and 6 ring of hydrocarbons was 98.7% and 99.4%, respectively.
机译:本文的目的是确定使用过碳酸钠Na_(2)CO_(3)?1,5 H_(2)O_(2)和硫酸铁从焦化废水中去除4、5和6环PAH的有效性。在酸性条件下。样品暴露于紫外线。 UV-C辐射源是一盏灯,该灯发出的光波长度为λ= 264 nm,直接位于样品废水层的上方。基于化学计量计算确定过碳酸钠Na_(2)CO_(3)1.5 H_(2)O_(2)的剂量。反应中释放的铁离子与过氧化氢之比为:0.5; 0.4; 0.3; 0.2; 0.1。在氧化过程之前和之后,测定COD和TOC值以及所选PAHs的浓度。氧化前测试的PAHs的总浓度达到995μg/ L。由化学需氧量(COD)确定的有机污染物的平均含量为538 mg / L,而总有机碳(TOC)的平均含量为180 mg / L。过碳酸钠的使用导致有机污染物的氧化以及COD和TOC的降低在以下范围内:22-46%和10-30%。对于单个PAH,降解效率在95%至99.9%的范围内。引起98%的4环烃的降解效率和引起5和6环烃的降解效率分别为98.7%和99.4%。

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