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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Preparation of CeO2@SiO2 Microspheres by a Non-sintering Strategy for Highly Selective and Continuous Adsorption of Fluoride Ions from Wastewater
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Preparation of CeO2@SiO2 Microspheres by a Non-sintering Strategy for Highly Selective and Continuous Adsorption of Fluoride Ions from Wastewater

机译:通过非烧结策略制备CeO2 @ SiO2微球,用于高选择性和连续吸附废水废水的氟离子

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摘要

High-performance composite materials with an environment-friendly and cost-effective nature are attracting much attention in environmental pollution abatement. In this study, a novel CeO2@SiO2, adsorbent was prepared via a novel approach based on vacuum rotary evaporation and co-precipitation following a non-sintering strategy avoiding the application of high-temperature calcination with very simplified mechanization. The fabricated CeO2@SiO2 was applied for the adsorption of ions from wastewater achieving much higher adsorption efficiency (257.7-363.9 mg/g (298-338 K)) than many reported adsorbents. In addition to this, CeO2@SiO2 realized high selectivity for ions (residual concentration of less than 1.5 mg/L) under the presence of NO3-, SO42-, and Cl- as counteranions as a simulated system. Concurrently, CeO2@SiO2 adsorbents also realized excellent adsorption performance in real seawater and tap water. The used adsorbent was easily regenerated via desorption in NaOH solutions and could be reused for four consecutive cycles with minimal loss in adsorption efficiency. This study provides an alternative, promising, cost-effective, convenient, and highly efficient CeO2@SiO2 microsphere adsorbent for the abatement of F- from wastewater, both in the presence and absence of counteranions.
机译:具有环保且经济高效的性质的高性能复合材料在环境污染减少中引起了很多关注。在本研究中,通过基于真空旋转蒸发和共沉淀在非烧结策略中避免使用非常简化的机械化,通过基于真空旋转蒸发和共沉淀的共沉淀来制备吸附剂的新型CeO2。施工的CeO2 @ SiO 2用于从废水吸附离子,其吸附效率大得多(257.7-363.9mg / g(298-338k))而不是许多所报道的吸附剂。除此之外,CeO2 @ SiO2在NO 3-,SO42-和CL-作为模拟系统的情况下,在NO 3-,SO42-和CL-作为对抗的情况下实现了高选择性(残留浓度小于1.5mg / L)。同时,CEO2 @ SiO2吸附剂还实现了真正海水和自来水的优异吸附性能。通过NaOH溶液中的解吸易于再生使用的吸附剂,并且可以重复使用四个连续循环,吸附效率最小。本研究提供了替代,有前途,具有成本效益,方便,高效的CEO2 @ SiO2微球吸附剂,用于在存在和缺乏对抗的情况下从废水中削减F-。

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  • 作者单位

    Guangxi Univ Sch Resources Environm &

    Mat Guangxi Key Lab Proc Nonferrous Met &

    Featured Ma Daxue Rd 100 Nanning 530004 Peoples R China;

    Guangxi Univ Sch Resources Environm &

    Mat Guangxi Key Lab Proc Nonferrous Met &

    Featured Ma Daxue Rd 100 Nanning 530004 Peoples R China;

    Univ Peshawar Inst Chem Sci Grand Trunk Rd Peshawar 25120 KP Pakistan;

    Guangxi Univ Sch Resources Environm &

    Mat Guangxi Key Lab Proc Nonferrous Met &

    Featured Ma Daxue Rd 100 Nanning 530004 Peoples R China;

    Guangxi Univ Sch Resources Environm &

    Mat Guangxi Key Lab Proc Nonferrous Met &

    Featured Ma Daxue Rd 100 Nanning 530004 Peoples R China;

    Guangxi Univ Sch Resources Environm &

    Mat Guangxi Key Lab Proc Nonferrous Met &

    Featured Ma Daxue Rd 100 Nanning 530004 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    CeO2@SiO2 adsorbent; fluoride ion; continuous adsorption; high selectivity; counterion;

    机译:CEO2 @ SiO2吸附剂;氟离子;连续吸附;高选择性;反逆;

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