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Treatment of High Concentration Acid Plasticizer Wastewater by Ozone Microbubble Oxidation

机译:通过臭氧微泡氧化处理高浓度酸增塑剂废水

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摘要

The large use of plasticizers in industry produced large amounts of wastewater. The treatment of industrial wastewater with advanced oxidation processes (AOPs) has attracted widespread interest from scientists in recent years. Comparing with several common AOPs such as activated persulfate, Fenton, UV, and H2O2, the ozone oxidation technology has the advantages of not introducing other chemical reagents, not bringing secondary pollution, lower energy consumption, safety, and non-flammability or explosion. Using the ozone microbubble process to treat high-concentration acidic plasticizer wastewater is in line with the concepts of green, energy-saving, and environment friendly. This work studied the changes of chemical oxygen demand (COD), pH, and dissolved oxygen (DO) in wastewater by adjusting the reaction time, system pressure, and reaction temperature, and revealed the best working conditions of ozone microbubble technology to treat plasticizer wastewater. The experiment shows that with the condition of the reaction time of 45 h, the pressure of 0.150 MPa, the ozone concentration of 100%, and the gas flow of 0.7 L/min, the dissolved oxygen (DO) of the wastewater increased from 3.8 to 4.5 mg/L, while the pH value increased from 3.23 to 7.54, and the COD removal rate reached up to 94.18%. This work discussed the mechanism of ozone microbubble technology to degrade plasticizer wastewater, and also confirmed that ozone microbubble technology can generate high hydroxyl radicals, even under acidic media. In addition, this technology does not require the addition of any additional chemical reagents and does not form a precipitate in the reaction to cause secondary pollution to the environment. Meanwhile, the water treatment costs of unit tons using this technology have also been analyzed. This technique has great practical application prospects in treating high concentration organic acid wastewater.
机译:在工业中的增塑剂大量使用生产了大量废水。近年来,具有先进氧化过程(AOP)的工业废水的处理引起了科学家的广泛兴趣。臭氧氧化技术与诸如活化过硫酸盐,芬顿,紫外线和H2O2等几种常见的AOP比较,具有未引入其他化学试剂的优点,不会引入二次污染,降低能耗,安全性和不易燃或爆炸。使用臭氧微泡法处理高浓度酸性增塑剂废水符合绿色,节能和环保的概念。通过调节反应时间,系统压力和反应温度,研究了废水中化学需氧量(COD),pH和溶解氧(DO)的变化,并揭示了臭氧微泡技术的最佳工作条件治疗增塑剂废水。实验表明,随着反应时间的条件为45小时,压力为0.150MPa,臭氧浓度为100%,气流为0.7L / min,废水的溶解氧(DO)从3.8增加至4.5 mg / L,而pH值从3.23增加到7.54,COD去除率达到94.18%。该工作讨论了臭氧微泡技术降解增塑剂废水的机制,并且还证实臭氧微泡技术即使在酸性介质下也可以产生高羟基自由基。此外,该技术不需要添加任何额外的化学试剂,并且不会在反应中形成沉淀物,以引起对环境的二次污染。同时,还分析了使用该技术的单位吨的水处理成本。该技术具有很大的实际应用前景,治疗高浓度有机酸废水。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2020年第7期|367.1-367.12|共12页
  • 作者单位

    Shanghai Polytech Univ Res Ctr Resource Recycling Sci & Engn Sch Environm & Mat Engn Shanghai 201209 Peoples R China;

    Shanghai Polytech Univ Res Ctr Resource Recycling Sci & Engn Sch Environm & Mat Engn Shanghai 201209 Peoples R China;

    Shanghai Polytech Univ Res Ctr Resource Recycling Sci & Engn Sch Environm & Mat Engn Shanghai 201209 Peoples R China;

    Shanghai Polytech Univ Res Ctr Resource Recycling Sci & Engn Sch Environm & Mat Engn Shanghai 201209 Peoples R China;

    Shanghai Polytech Univ Res Ctr Resource Recycling Sci & Engn Sch Environm & Mat Engn Shanghai 201209 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ozone microbubbles; Plasticizer wastewater; Dissolved oxygen; pH; Chemical oxygen demand;

    机译:臭氧微泡;增塑剂废水;溶解氧;pH;化学需氧量;

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