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Modeling behaviors of permeable non-spherical micro-plastic aggregates by aggregation/sedimentation in turbulent freshwater flow

机译:湍流淡水流动聚集/沉积的渗透性非球形微塑料聚集体的建模行为

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摘要

This study developed and evaluated a behavior model for permeable non-spherical micro-plastic aggregates in a turbulent flow of freshwater based on fractal theory, as conducting experimental and modeling studies. Laboratory-scale experiments evaluated attachment efficiency a to aggregation kinetics in an aquatic environment (pH 6, 20 degrees C) of the electrolyte (Al3+). The experimental a was dependent on characteristics of plastics (type, size, and density) and ranged from 0.062 to 0.2772 (averaging 0.1) with a high correlation with the modeled alpha (R-2 0.92). Model validation was conducted under two simulation conditions: one drawn from a previously published study of impermeable spherical aggregates and the other based on fractal theory. The simulations verified the limited primary particle size with the lowest retention rate based on the previous study but it was difficult to determine the specific particle size with the lowest retention rate as a limiting factor. The sum of residual errors for aggregation/sedimentation between the two types of structures showed an overestimation of spherical structures. Such overestimation influenced the aggregate number concentration and distribution pattern. Therefore, the model needs to more detailed express the aggregation mechanism of permeable non-spherical aggregate structures in terms of surface growth.
机译:该研究在基于分形理论的基于分形理论的淡水湍流中开发和评估了渗透性非球形微塑料聚集体的行为模型,作为分形理论,进行实验和建模研究。实验室规模实验评估了电解质(Al3 +)的水生环境(pH 6,20℃)中的聚集动力学的附着效率a。实验A依赖于塑料(类型,尺寸和密度)的特性,其范围为0.062至0.2772(平均0.1),与模型α(R-2> 0.92)高。模型验证是在两个模拟条件下进行的:从先前公布的不透水球形聚集体和基于分形理论的另一个研究。该模拟验证了基于先前研究的最低保留率的限量初级粒径,但难以确定具有最低保留率的特定粒度作为限制因素。两种结构之间的聚集/沉降的剩余误差之和显示出球形结构的高估。这种高估影响了总数浓度和分布模式。因此,该模型需要更详细地表达在表面生长方面的可渗透非球形聚集结构的聚集机制。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2021年第15期|124660.1-124660.17|共17页
  • 作者单位

    Drexel Univ Sch Environm Sci Engn & Policy 3141 Chestnut St Philadelphia PA 19104 USA;

    Jeonbuk Natl Univ Ctr Jeongeub Ind Acad Cooperat 9 Cheomdan Ro Jeongeub 54896 South Korea;

    Jeonbuk Natl Univ Dept Bioconvergence Sci 567 Baekjedae Ro Jeonju 54896 Jeonbuk South Korea;

  • 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

    Fine particles; Flow model; Particle size; Plastic; Population balance; Water pollution;

    机译:细颗粒;流动模型;粒度;塑料;人口平衡;水污染;
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