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首页> 外文期刊>Journal of Environmental Science and Health >Treatment of soft drink process wastewater by ozonation, ozonation-H_2O_2 and ozonation-coagulation processes
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Treatment of soft drink process wastewater by ozonation, ozonation-H_2O_2 and ozonation-coagulation processes

机译:臭氧化,臭氧化-H_2O_2和臭氧化混凝工艺处理软饮料废水

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摘要

In this research, we studied the treatment of wastewater from the soft drink process using oxidation with ozone. A scheme composed of sequential ozonation-peroxide, ozonation-coagulation and coagulation-ozonation treatments to reduce the organic matter from the soft drink process was also used. The samples were taken from the conventional activated sludge treatment of the soft drink process, and the experiments using chemical oxidation with ozone were performed in a laboratory using a reactor through a porous plate glass diffuser with air as a feedstock for the generation of ozone. Once the sample was ozonated, the treatments were evaluated by considering the contact time, leading to greater efficiency in removing colour, turbidity and chemical oxygen demand (COD). The effect of ozonation and coagulant coupled with treatment efficiency was assessed under optimal conditions, and substantial colour and turbidity removal were found (90.52% and 93.33%, respectively). This was accompanied by a 16.78% reduction in COD (initial COD was 3410 mg/L). The absorbance spectra of the oxidised products were compared using UV-VIS spectroscopy to indicate the level of oxidation of the wastewater. We also determined the kinetics of decolouration and the removal of turbidity with the best treatment. The same treatment was applied to the sample taken from the final effluent of the activated sludge system, and a COD removal efficiency of 100% during the first minute of the reaction with ozone was achieved. As a general conclusion, we believe that the coagulant polyaluminum chloride - ozone (PAC- ozone) treatment of wastewater from the manufacturing of soft drinks is the most efficient for removing turbidity and colour and represents an advantageous option to remove these contaminants because their removal was performed in minutes compared to the duration of traditional physical, chemical and biological processes that require hours or days.
机译:在这项研究中,我们研究了使用臭氧氧化处理软饮料过程中的废水的方法。还采用了一种方案,该方案由顺序的臭氧化-过氧化物,臭氧化-凝固和凝固-臭氧化处理组成,以减少软饮料过程中的有机物。样品取自软饮料工艺的常规活性污泥处理,在实验室中使用反应器通过多孔板玻璃扩散器,以空气为原料,使用臭氧进行化学氧化的实验在实验室进行。样品进行臭氧处理后,通过考虑接触时间对处理进行评估,从而提高了去除颜色,浊度和化学需氧量(COD)的效率。在最佳条件下评估了臭氧化和混凝剂的效果以及处理效率,并且发现了显着的颜色和浊度去除(分别为90.52%和93.33%)。这伴随着COD降低16.78%(初始COD为3410 mg / L)。使用UV-VIS光谱法比较了氧化产物的吸收光谱,以指示废水的氧化水平。我们还确定了最佳处理条件下的脱色动力学和混浊去除率。对从活性污泥系统最终流出物中取样的样品进行相同的处理,在与臭氧反应的第一分钟内,COD去除效率达到100%。总的来说,我们认为从软饮料生产中来的混凝剂聚氯化铝-臭氧(PAC-臭氧)处理废水是去除混浊和变色最有效的方法,并且是去除这些污染物的有利选择,因为它们的去除方法是与需要数小时或数天的传统物理,化学和生物过程的持续时间相比,只需几分钟即可完成。

著录项

  • 来源
    《Journal of Environmental Science and Health》 |2012年第1期|p.22-30|共9页
  • 作者单位

    Centro Conjunto de Investigation en Quimica Sustentable (CCIQS), Universidad Autonoma del Estado de Mexico, Toluca, Mexico;

    Universidad Autonoma del Estado de Mexico. Facultad de Quimica. Paseo Colon Esq. Paseo Tollocan. Toluca. Estado de Mexico, Mexico C.P. 50120;

    Centro Conjunto de Investigation en Quimica Sustentable (CCIQS), Universidad Autonoma del Estado de Mexico, Toluca, Mexico;

    Centro Conjunto de Investigation en Quimica Sustentable (CCIQS), Universidad Autonoma del Estado de Mexico, Toluca, Mexico;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ozone; advanced oxidation processes; ozone-PAC; wastewater soft drink treatment;

    机译:臭氧;先进的氧化工艺;臭氧PAC废水软饮料处理;

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