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Application of ultrasound and quartz sand for the removal of disinfection byproducts from drinking water

机译:超声波和石英砂在去除饮用水中消毒副产物中的应用

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摘要

To the best of our knowledge, little information is available on the combined use of ultrasound (US) and quartz sand (QS) in the removal of disinfection byproducts (DBPs) from drinking water. This study investigates the removal efficiency for 12 DBPs from drinking water by 20 kHz sonolytic treatment, QS adsorption, and their combination. Results indicate that DBPs with logK_(ow) ≤ 1.12 could not be sonolysized; for logK_(ow) ≥ 1.97, more than 20% removal efficiency was observed, but the removal efficiency was unrelated to logK_(ow). DBPs containing a nitro group are more sensitive to US than those that comprise nitrile, hydrogen, and hydroxyl groups. Among the 12 investigated DBPs, 9 could be adsorbed by QS adsorption. The adsorption efficiency ranged from 12% for l,l-dichloro-2-propanone to 80% for trichloroacetonitrile. A synergistic effect was found between the US and QS on DBPs removal, and all the 12 DBPs could be effectively removed by the combined use of US and QS. In the presence of US, part of the QS particles were corroded into small particles which play a role in increasing the number of cavitation bubbles and reducing cavitation bubble size and then improve the removal efficiency of DBPs. On the other hand, the presence of US enhances the DBP mass transfer rate to cavitation bubbles and quartz sand. In addition, sonolytic treatment led to a slight decrease of pH, and TOC values decreased under all the three treatment processes.
机译:据我们所知,在从饮用水中去除消毒副产物(DBP)方面,超声(US)和石英砂(QS)结合使用的信息很少。这项研究调查了通过20 kHz声处理,QS吸附及其组合对饮用水中12种DBP的去除效率。结果表明,无法对logK_(ow)≤1.12的DBP进行大小调整。对于logK_(ow)≥1.97,观察到去除效率超过20%,但去除效率与logK_(ow)无关。包含硝基的DBP对US的敏感性比包含腈,氢和羟基的DBP更敏感。在研究的12种DBP中,有9种可以通过QS吸附进行吸附。吸附效率的范围从1,1-二氯-2-丙酮的12%到三氯乙腈的80%。在美国和QS之间发现了去除DBP的协同作用,并且美国和QS的联合使用可以有效地去除所有12种DBP。在存在US的情况下,部分QS颗粒被腐蚀成小颗粒,这些小颗粒在增加空化气泡的数量和减小空化气泡的尺寸,然后提高DBP的去除效率方面起着作用。另一方面,US的存在提高了DBP向空化气泡和石英砂的传质速率。此外,在所有三种处理过程中,声处理导致pH值略有降低,TOC值均降低。

著录项

  • 来源
    《Chemosphere》 |2014年第4期|34-40|共7页
  • 作者单位

    State Environmental Protection Key Laboratory of Wetland Ecology and Vegetation Restoration, Northeast Normal University, Changchun 130117, China,School of Environment, Northeast Normal University, Changchun 130117, China;

    State Environmental Protection Key Laboratory of Wetland Ecology and Vegetation Restoration, Northeast Normal University, Changchun 130117, China,School of Environment, Northeast Normal University, Changchun 130117, China,Key Laboratory of Songliao Aquatic Environment, Ministry of Education, Jilin Architectural and Civil Engineering Institute, Changchun 130118, China;

    State Environmental Protection Key Laboratory of Wetland Ecology and Vegetation Restoration, Northeast Normal University, Changchun 130117, China,School of Environment, Northeast Normal University, Changchun 130117, China;

    State Environmental Protection Key Laboratory of Wetland Ecology and Vegetation Restoration, Northeast Normal University, Changchun 130117, China,School of Environment, Northeast Normal University, Changchun 130117, China;

    State Environmental Protection Key Laboratory of Wetland Ecology and Vegetation Restoration, Northeast Normal University, Changchun 130117, China,School of Environment, Northeast Normal University, Changchun 130117, China;

    State Environmental Protection Key Laboratory of Wetland Ecology and Vegetation Restoration, Northeast Normal University, Changchun 130117, China,School of Environment, Northeast Normal University, Changchun 130117, China;

    State Environmental Protection Key Laboratory of Wetland Ecology and Vegetation Restoration, Northeast Normal University, Changchun 130117, China,School of Environment, Northeast Normal University, Changchun 130117, China,Key Laboratory of Songliao Aquatic Environment, Ministry of Education, Jilin Architectural and Civil Engineering Institute, Changchun 130118, China;

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

    Disinfection byproduct; Drinking water; Quartz sand; Synergistic effect; Ultrasound;

    机译:消毒副产物;饮用水;石英砂;协同效应;超音波;

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