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首页> 外文期刊>Water Research >Ozone-encapsulated colloidal gas aphrons for in situ and targeting remediation of phenanthrene-contaminated sediment-aquifer
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Ozone-encapsulated colloidal gas aphrons for in situ and targeting remediation of phenanthrene-contaminated sediment-aquifer

机译:臭氧包裹的胶体气态原石用于菲污染的沉积物含水层的原位和靶向修复

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摘要

The hydrophobic polycyclic aromatic hydrocarbons (PAHs) are apt to adhere tightly to the sediments in aquifer and thus pose great threats to the aquatic environment of groundwater and surface water as well as human health. The present study constructed functionalized microbubbles, named colloidal ozone aphrons (COAs), by dissolving ozone-contained air into the nonionic surfactant (Tween-20) solution at the pressure of 300 kPa for the in situ remediation of phenanthrene (PHE)-contaminated sediments. The COA system aimed at improving the PHE elimination in terms of (i) enhancing the migration and transpor tation ability of the bubble system in the contaminated aquifer matrix, (ii) accurately desorbing the target hydrophobic contaminants from sediments, and (iii) reinforcing the in situ oxidation degradation immediately after or simultaneously when the PAHs are desorbed into the aqueous phase. Experimental results demonstrated that the COAs exhibited similar characteristics as the classical colloidal gas aphrons (CGAs), including the high stability (half-life time 200 s), typical morphology and average bubble size ( 114-162 mu m); higher air hold-up of COAs was achieved (i. e. 20%) compared with the air-microbubbles (1-2%) obtained under the same generation conditions. Although the encapsulated ozone could oxidize the surfactant-layers, the properties and behaviors of COAs were not greatly affected. The surfactant multi-layers endowed the COAs with strong hydrophobic attraction with PHE, great migration capacity and enlarged oxidation area in the sediment matrix. Approximately 96.9% of PHE was removed from the sediments and 84.9% of the overall PHE was oxidized at the high ozone concentration of 0.6 mg/L when the initial PHE concentration was 240.0 mu g/kg. The COA-involved remediation technology provided the insight of combining the processes of washing and oxidizing through adopting the particularly conceived microbubbles. The in situ and selective removal of hydrophobic organic contaminants from sediments in aquifer was well achieved in this study. (C) 2019 Elsevier Ltd. All rights reserved.
机译:疏水性多环芳烃(PAHs)易于紧紧附着在含水层中的沉积物上,因此对地下水和地表水的水生环境以及人类健康构成了巨大威胁。本研究通过将含臭氧的空气在300 kPa的压力下溶解于非离子表面活性剂(Tween-20)溶液中,以原位修复被菲(PHE)污染的沉积物,从而构建了功能化的微泡,称为胶体臭氧泡(COA)。 。 COA系统旨在改善PHE消除,包括:(i)增强气泡系统在受污染的含水层基质中的迁移和传输能力,(ii)从沉积物中准确地解吸目标疏水性污染物,以及(iii)增强在PAHs解吸到水相中后立即或同时进行原位氧化降解。实验结果表明,COA表现出与经典的胶体气瓶(CGA)类似的特性,包括高稳定性(半衰期> 200 s),典型的形态和平均气泡大小(114-162μm)。与在相同发电条件下获得的空气微气泡(1-2%)相比,可实现更高的COA空气滞留率(即> 20%)。尽管包封的臭氧可以氧化表面活性剂层,但COA的性质和行为并未受到很大影响。表面活性剂的多层赋予了COA强大的PHE疏水吸引力,更大的迁移能力和更大的沉积物基质氧化面积。当初始PHE浓度为240.0μg / kg时,在0.6 mg / L的高臭氧浓度下,从沉积物中去除了大约96.9%的PHE,并且84.9%的PHE被氧化。涉及COA的修复技术通过采用特别构思的微气泡,提供了结合洗涤和氧化过程的见解。在这项研究中很好地实现了从含水层沉积物中原位和选择性去除疏水性有机污染物的研究。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Water Research》 |2019年第1期|29-38|共10页
  • 作者单位

    Zhejiang Univ Technol, Key Lab Microbial Technol Ind Pollut Control Zhej, Coll Environm, Hangzhou 310014, Zhejiang, Peoples R China;

    Zhejiang Univ Technol, Key Lab Microbial Technol Ind Pollut Control Zhej, Coll Environm, Hangzhou 310014, Zhejiang, Peoples R China;

    Zhejiang Univ Technol, Key Lab Microbial Technol Ind Pollut Control Zhej, Coll Environm, Hangzhou 310014, Zhejiang, Peoples R China;

    Zhejiang Univ Technol, Key Lab Microbial Technol Ind Pollut Control Zhej, Coll Environm, Hangzhou 310014, Zhejiang, Peoples R China;

    Zhejiang Univ Technol, Key Lab Microbial Technol Ind Pollut Control Zhej, Coll Environm, Hangzhou 310014, Zhejiang, 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

    Microbubble functionalization; Colloidal zone aphrons; In situ contaminant-targeting remediation;

    机译:微泡功能化;胶体区晶元;原位靶向污染物修复;

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