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首页> 外文期刊>Science of the total environment >Scaled-up development of magnetically recyclable Fe_3O_4/La(OH)_3 composite for river water phosphate removal: From bench-scale to pilot-scale study
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Scaled-up development of magnetically recyclable Fe_3O_4/La(OH)_3 composite for river water phosphate removal: From bench-scale to pilot-scale study

机译:磁性可回收Fe_3O_4 / LA(OH)_3河水磷酸盐去除综合的缩放开发:从长凳规模到试点规模研究

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摘要

The use of magnetic lanthanum-based materials for phosphate removal from river water has gained increasing attention. However, challenges to produce and use lanthanum-based materials in large-scale or pilot-scale studies remain. In this work, a kilogram-scale Fe_3O_4/La(OH)_3 magnetically recyclable composite for removing phosphate from river water was developed through a low-temperature precipitation route. The composite was used to remove phosphate from river water at both bench- and pilot-scales. Based on the bench-scale tests, the developed Fe_3O_4/La(OH)_3 composite was found to have excellent magnetic particle separation efficiency (>98%) and a sorption capacity of 11.77 mg/g for phosphate. A 1.0 g/L dosage of the composite in the river water sample was able to selectively reduce the phosphate level from 0.089 to 0.005 mg/L in 60 min over five consecutive adsorption cycles. At the pilot-scale, the Fe_3O_4/La(OH)_3 composite only achieved 36.0% phosphate removal efficiency, which is considerably different from the bench-scale results over an operational time of five months and a total treatment volume of 300 m~3. This significantly reduced removal efficiency is mainly attributable to turbidity, suspended solids, and organic matter in the river water and the deteriorated magnetic separation efficiency. This study revealed potential challenges and shed new insights on moving magnetic nanocomposite-based technology from the bench-scale to the pilot-scale, which can inspire new designs for the application of similar technology.
机译:使用磁性镧系基材料用于磷酸盐从河水中取出越来越多的关注。然而,在大规模或试验规模研究中仍然存在生产和使用基于镧的材料的挑战。在这项工作中,通过低温沉淀路线开发了用于从河水中除去磷酸盐的千可标度Fe_3O_4 / La(OH)_3磁性可回收复合材料。复合材料用于从两条阶层和导频尺度的河水中除去磷酸盐。基于台式试验,发现开发的Fe_3O_4 / LA(OH)_3复合材料具有优异的磁性颗粒分离效率(> 98%)和磷酸盐11.77mg / g的吸附能力。河水样品中复合材料的1.0g / L剂量能够在60分钟内选择性地将磷酸水平从50分钟内从五个连续的吸附循环中从0.089%降至0.005 mg / l。在试验尺度上,Fe_3O_4 / La(OH)_3综合性仅达到36.0%的磷酸盐去除效率,这与工作时间大大不同,在5个月的运行时间和总处理量为300 m〜3 。这种显着降低的去除效率主要是由于河水中的浊度,悬浮的固体和有机物质和劣化的磁分离效率。本研究揭示了将磁性纳米复合材料从台面转移到飞行员规模的潜在挑战和流出新的见解,这可以激发适用于类似技术的新设计。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|148281.1-148281.12|共12页
  • 作者单位

    Department of Civil and Environmental Engineering The Hong Kong University of Science and Technology Hong Kong China;

    Department of Civil and Environmental Engineering The Hong Kong University of Science and Technology Hong Kong China;

    Department of Civil and Environmental Engineering The Hong Kong University of Science and Technology Hong Kong China;

    Department of Civil and Environmental Engineering The Hong Kong University of Science and Technology Hong Kong China;

    Water Supplies Department Hong Kong Special Administrative Region China;

    Water Supplies Department Hong Kong Special Administrative Region China;

    Water Supplies Department Hong Kong Special Administrative Region China;

    Department of Civil and Environmental Engineering The Hong Kong University of Science and Technology Hong Kong China Institute for Advanced Study The Hong Kong University of Science and Technology Hong Kong China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Composite; Lanthanum hydroxide: Magnetite; Phosphate removal; Pilot-scale study; Scaled-up production;

    机译:合成的;氢氧化镧:磁铁矿;磷酸盐去除;试点规模研究;缩小生产;

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