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首页> 外文期刊>Environmental Engineering Science >Colloidal Properties of Air, Oxygen, and Nitrogen Nanobubbles in Water: Effects of Ionic Strength, Natural Organic Matters, and Surfactants
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Colloidal Properties of Air, Oxygen, and Nitrogen Nanobubbles in Water: Effects of Ionic Strength, Natural Organic Matters, and Surfactants

机译:水中空气,氧气和氮气中的纳米气泡的胶体性质:离子强度,天然有机物和表面活性剂的影响

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摘要

Colloidal properties of nanobubbles (NBs) in liquid such as surface charge and surface tension influence stability (coalescence or size distribution), reactivity, and performance of applications (e.g., detergent-free cleaning, water treatment, and remediation) were studied. These colloidal properties are often effected by environmental factors such as pH, ionic strength, and the presence of natural organic matters (NOM). This work performed holistic investigations of colloidal properties of three types of NBs (pure air, oxygen, and nitrogen) in the presence of electrolytes, NOM, and surfactants, which are not reported elsewhere. Three different types of NBs exhibited different bubble size distribution (160–340 nm in water) and zeta potentials (approximately −27 to −45 mV at neutral pHs) presumably due to differences in their surface tension or charges. All tested NBs exhibited high stability against coalescence even under high ionic strength and surfactant concentrations. Soft particle extended Derjaguin-Landau-Verwey-Overbeek theory analysis indicated that the energy barriers between two interacting NBs were extraordinarily high (>5,000 k_(B)T) in pure water, which may explain the high colloidal stability and resistance to coalescence. These results provide new fundamental insight into the physical chemical properties of NBs in water and aim to lay the groundwork toward the green sustainable engineering applications.
机译:研究了纳米气泡(NBs)在液体中的胶体性质,例如表面电荷和表面张力对稳定性(聚结或尺寸分布),反应性和应用性能(例如无洗涤剂清洁,水处理和修复)的影响。这些胶体性质通常受环境因素影响,例如pH,离子强度和天然有机物(NOM)的存在。这项工作在电解质,NOM和表面活性剂存在下,对三种类型的NB(纯空气,氧气和氮气)的胶体性质进行了整体研究,这在其他地方没有报道。三种不同类型的NB表现出不同的气泡尺寸分布(在水中160-340 nm)和zeta电位(在中性pH下约为-27至-45 mV),可能是由于它们的表面张力或电荷不同所致。即使在高离子强度和表面活性剂浓度下,所有测试的NB仍显示出对聚结的高稳定性。软粒子扩展的Derjaguin-Landau-Verwey-Overbeek理论分析表明,两个相互作用的NB之间的能垒在纯水中非常高(> 5,000 k_(B)T),这可能解释了高胶体稳定性和抗聚结性。这些结果为水中NBs的物理化学特性提供了新的基础见解,旨在为绿色可持续工程应用奠定基础。

著录项

  • 来源
    《Environmental Engineering Science》 |2018年第7期|720-727|共8页
  • 作者单位

    John A Reif Jr Department of Civil and Environmental Engineering, New Jersey Institute of Technology, Newark, New Jersey;

    John A Reif Jr Department of Civil and Environmental Engineering, New Jersey Institute of Technology, Newark, New Jersey,School of Municipal and Environmental Engineering, Shandong Jianzhu University, Jinan, China;

    John A Reif Jr Department of Civil and Environmental Engineering, New Jersey Institute of Technology, Newark, New Jersey;

    John A Reif Jr Department of Civil and Environmental Engineering, New Jersey Institute of Technology, Newark, New Jersey,School of Municipal and Environmental Engineering, Shandong Jianzhu University, Jinan, China;

    John A Reif Jr Department of Civil and Environmental Engineering, New Jersey Institute of Technology, Newark, New Jersey,School of Municipal and Environmental Engineering, Shandong Jianzhu University, Jinan, China;

    John A Reif Jr Department of Civil and Environmental Engineering, New Jersey Institute of Technology, Newark, New Jersey,School of Municipal and Environmental Engineering, Shandong Jianzhu University, Jinan, China;

    John A Reif Jr Department of Civil and Environmental Engineering, New Jersey Institute of Technology, Newark, New Jersey,School of Municipal and Environmental Engineering, Shandong Jianzhu University, Jinan, China;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    aggregation; coalescence; colloidal stability; nanobubbles;

    机译:聚集;聚结;胶体稳定性;纳米气泡;

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