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Studying the Effect of different Temperatures Synthesis of Fe3O4/MnO2 Microrobots on Water Remediation

机译:Studying the Effect of different Temperatures Synthesis of Fe3O4/MnO2 Microrobots on Water Remediation

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摘要

Industrial emissions of organic pollutants pose a serious threat to the water environment on which people depend. The effective combination of MnO2-based microrobots with Fe3O4 nanoparticles offers a promising solution to this challenge. In this work, Fe3O4/MnO2 microrobots were synthesised using a low-cost and efficient one-step hydrothermal method. It was found that the kinematic speed of the microrobots increased significantly with increasing synthesis temperature. In addition, the higher the synthesis temperature of Fe3O4/MnO2 micro- robots, the more effective they were in removing organic pollutants. The results showed that different structures of MnO2 were produced at different temperatures and the effect of the synthesised microrobots at 80°C, 100°C and 130°C on the catalytic performance and degradation effect was investigated. The Fe3O4/MnO2 microrobots synthesised at 130° showed the most favourable effect on the catalytic performance and degradation. This finding provides a new strategy for future microrobots for water remediation.
机译:工业排放有机污染物造成的水环境的严重威胁人们依赖。MnO2-based微型机器人Fe3O4纳米颗粒提供了一个有前途的解决这一挑战。这项工作,Fe3O4 /汇总微型机器人使用低成本、高效的合成一步水热法。微型机器人的运动速度增加显著提高合成温度。合成温度Fe3O4 /汇总微机器人,他们在去除更有效有机污染物。汇总生产的不同的结构不同温度的影响的催化性能和降解效果调查。微型机器人合成在130°显示最多有利的对催化性能的影响和退化。为未来的微型机器人对水战略补救。

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  • 来源
    《Chemistry Select》 |2023年第12期|共8页
  • 作者单位

    Department of Physics and Mathematics, Shanghai Key Laboratory of Materials, Protection and Advanced Materials in Electric Power, Shanghai University of Electric Power, 201300 Shanghai (China);

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 化学;
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