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超聲波處理焦化廢水影響因素

Influence factors for treating coking wastewater by ultrasonic wave

  • 摘要: 利用超聲波處理焦化廢水,系統考察了作用時間、超聲功率、焦化廢水初始pH值、化學需氧量(CODCr)和氨氮(NH4+N)初始質量濃度、溶解氣體等因素對去除廢水中CODCr和NH4+-N的影響,并對超聲復合氧化劑處理焦化廢水進行了對比分析.結果表明,超聲復合H2O2和Fenton試劑可發生協同作用,使CODCr和NH4+N去除率顯著提高,其去除率由大到小依次為:超聲+Fenton>超聲+H2O2>Fenton>超聲>H2O2.結合GC-MS分析結果,對CODCr和NH4+N的去除過程進行了初步探討.發現處理后的焦化廢水中萘類、蒽類和喹啉類等生物降解難的有機物的比例明顯降低.

     

    Abstract: The treatment of coking wastewater was researched by ultrasonic wave. The influences of irradiation time, ultrasonic power, initial pH value of coking wastewater, initial concentrations of chemical oxygen demand (CODCr) and ammonium (NH4+), and dissolved gas on the removal of CODCr and NH4+ were investigated systematically. The ultrasonic treatments of coking wastewater combined with oxidants were comparatively analyzed. The results show that the ultrasonic treatment combined with H2O2 or Fenton reagent had a synergetic effect, and then the removal rates of CODCr, and NH4+ greatly increase. The order of removal rate is the following:ultrasonic treatment + Fenton 〉 ultrasonic treatment + H2O2 〉 Fenton 〉 ultrasonic treatment 〉 H2O2. According to the analysis results of GC-MS, the removal process of CODCr and NH4+ was preliminary studied. It is found that the proportions of non-biodegradation organisms, such as naphthalene, anthracene and quinoline, obviously decreased in treated coking wastewater.

     

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