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首页> 外文期刊>Journal of Hazardous Materials >Granular reduced graphene oxide/Fe_3O_4 hydrogel for efficient adsorption and catalytic oxidation of p-perfluorous nonenoxybenzene sulfonate
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Granular reduced graphene oxide/Fe_3O_4 hydrogel for efficient adsorption and catalytic oxidation of p-perfluorous nonenoxybenzene sulfonate

机译:颗粒化的石墨烯氧化物/ Fe_3O_4水凝胶,用于高效吸附和催化氧化P-全氟壬苯苯苯磺酸盐

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摘要

The catalytic performance of Fe3O4/reduced graphene oxide (Fe3O4/rGO) nanocomposite makes it attractive for the removal of emerging pollutants from water, but the combination of its efficient adsorption and degradation of per- and polyfluoroalkyl substances has not been studied. Here we report the optimal granular Fe3O4/rGO with high thermal and acid resistance stability through controlling its self-assembly for the adsorption and degradation of sodium p-perfluorous nonenoxybenzene sulfonate (OBS) from water. The maximum adsorption capacity for OBS was calculated to be 362.4 mu mol/g according to Langmuir fitting. Electrostatic, pi-pi and hydrogen bonding interactions were involved in OBS adsorption, and the quaternary N in Fe3O4/rGO was a key adsorption site. The efficiency of the utilization of free radicals generated in Fenton-like and persulfate (PS) systems increased with the increase of OBS adsorbed onto the Fe3O4/rGO, while the increase of OBS amount adsorbed on Fe3O4/rGO would casue a slow OBS removal in the adsorption-degradation process due to the slow adsorption process. The Fenton-like oxidation was more efficient for OBS removal than PS oxidation. The spent Fe3O4/rGO was able to be reused in the Fenton-like system at least ten times, while the OBS removal in the PS reaction system was reduced to 47.8 % after six reuse cycles.
机译:Fe3O4 /脱脂氧化物(Fe3O4 / Rgo)纳米复合材料的催化性能使其具有从水中除去新出现的污染物的吸引力,但其有效的吸附和降解且多氟烷基物质的结合尚未研究。在这里,我们通过控制其自组装来报告具有高热和耐酸性稳定性的最佳粒状Fe3O4 / Rgo,用于从水中的P-全氟壬烯苯磺酸钠(OBS)的吸附和降解。根据Langmuir配件,计算OBS的最大吸附能力为362.4μmol/ g。静电,PI-PI和氢键相互作用参与OBS吸附,并且Fe3O4 / Rgo中的季N是键吸附位点。在FETON样和过硫酸盐(PS)系统中产生的自由基的利用效率随着IMS吸附到Fe3O4 / RGO上的OBS增加而增加,而吸附在Fe3O4 / Rgo上的OBS量的增加将镇静缓慢的OBS去除吸附过程缓慢导致的吸附降解过程。 FENTON样氧化比PS氧化更有效。在六次再利用循环后,所花费的Fe3O4 / Rgo能够在Fenton样系统中重复使用,而在PS反应系统中的OB除去降至47.8%。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2020年第15期|121662.1-121662.9|共9页
  • 作者单位

    Qinghai Univ State Key Lab Plateau Ecol & Agr Xining 810016 Qinghai Peoples R China|Tsinghua Univ Sch Environm Beijing Key Lab Emerging Organ Contaminants Contr State Key Joint Lab Environm Simulat & Pollut Con Beijing 100084 Peoples R China;

    Qinghai Univ State Key Lab Plateau Ecol & Agr Xining 810016 Qinghai Peoples R China;

    Qinghai Univ State Key Lab Plateau Ecol & Agr Xining 810016 Qinghai Peoples R China;

    Qinghai Univ State Key Lab Plateau Ecol & Agr Xining 810016 Qinghai Peoples R China;

    Qinghai Univ State Key Lab Plateau Ecol & Agr Xining 810016 Qinghai Peoples R China;

    Qinghai Univ State Key Lab Plateau Ecol & Agr Xining 810016 Qinghai Peoples R China;

    Tsinghua Univ Sch Environm Beijing Key Lab Emerging Organ Contaminants Contr State Key Joint Lab Environm Simulat & Pollut Con Beijing 100084 Peoples R 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);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    OBS; Adsorption; Degradation; Persulfate; Fenton-like oxidation;

    机译:OBS;吸附;降解;过硫酸盐;芬顿般的氧化;

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