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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Coupling metal-organic frameworks and g-C3N4 to derive Fe@N-doped graphene-like carbon for peroxymonosulfate activation: Upgrading framework stability and performance
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Coupling metal-organic frameworks and g-C3N4 to derive Fe@N-doped graphene-like carbon for peroxymonosulfate activation: Upgrading framework stability and performance

机译:偶联金属 - 有机框架和G-C3N4衍生Fe @ n掺杂的石墨烯样碳,用于过氧键硫酸盐活化:升级框架稳定性和性能

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摘要

A highly active mediator (Fe@N-doped graphene-like carbon) for peroxymonosulfate (PMS) activation was prepared by employing g-C3N4 assisting NH2-MIL-53(Fe) as the precursor. The addition of combined nitrogen sources (g-C3N4 and NH2 groups) not only stabilized the phase composition and framework morphology, but also improved PMS activation performance significantly. In addition, the introduction of g-C3N4 increased the surface area. Electron paramagnetic resonance (EPR) spectroscopy and radical quenching experiments identified singlet oxygen (O-1(2)), superoxide radicals (O-2(center dot-)), hydroxyl radicals (center dot OH), and sulfate radicals (SO4 center dot-) as the reactive oxygen species (ROS) in 4-aminobenzoic acid ethyl ether (ABEE) degradation via a combination process of nonradical and radical processes. The variable chemical valences of iron nanoparticles and quaternary-N, pyrrolic-N, pyridinic-N, and carbonyl (C = 0) groups in the support contributed to the outstanding catalytic activity. A possible mechanism for PMS activation by Fe@N-doped graphene-like carbon for ABEE degradation was proposed, which involved sp(2) hybridized carbon and electron-rich sp(2) sites of the graphitic domain activating PMS via electron transfer. Intermediates were identified using liquid chromatography-quadrupole time-of-flight mass spectrometry (LC-Q-TOF-MS). The degradation pathway of ABEE was reported for the first time in the advanced oxidation process field. Based on intermediate identification of sulfamethoxazole (SMX) degradation, six intermediates were first reported and a new reaction pathway established. This work provides a promising approach to the rational design of high-performance active mediators for environmental remediation.
机译:通过使用G-C3N4辅助NH 2-MIL-53(Fe)作为前体,制备用于过氧键硫酸盐(PMS)活化的高活跃的介体(Fe @ n掺杂的石墨烯样碳)。添加组合的氮源(G-C3N4和NH 2组)不仅稳定了相组成和框架形态,而且显着提高了PMS活化性能。此外,G-C3N4的引入增加了表面积。电子顺磁共振(EPR)光谱和自由基猝灭实验鉴定单次氧(O-1(2)),超氧化物自由基(O-2(中心点)),羟基自由基(中心点OH)和硫酸盐自由基(SO4中心DOT-作为4-氨基苯甲酸乙醚(ABEE)的反应性氧物质(ROS)通过非族和自由基方法的组合过程降解。载体中铁纳米粒子和季铵-N,吡咯醇-N,吡啶-N和羰基(C = 0)基团的可变化学效增,有助于出色的催化活性。提出了通过电子转移通过电子转移的SP(2)杂交碳和富含石墨域的杂交碳和电子富含石墨结构型PM的杂交碳和电子富含富含物的SP(2)位的SP(2)杂交的碳和电子富含物质的SP(2)位点。使用液相色谱 - 四极针对飞行时间质谱法(LC-Q-TOF-MS)鉴定中间体。在先进的氧化过程领域中首次报道了ABEE的降解途径。基于磺胺甲恶唑(SMX)降解的中间鉴定,首先报道六种中间体,并确定了新的反应途径。这项工作提供了一个有希望的方法,以获得环境修复的高性能活跃调解员的理性设计。

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    Beijing Forestry Univ Coll Environm Sci &

    Engn Beijing Key Lab Source Control Technol Water Poll Beijing 100083 Peoples R China;

    Beijing Forestry Univ Coll Environm Sci &

    Engn Beijing Key Lab Source Control Technol Water Poll Beijing 100083 Peoples R China;

    Beijing Forestry Univ Coll Environm Sci &

    Engn Beijing Key Lab Source Control Technol Water Poll Beijing 100083 Peoples R China;

    Beijing Forestry Univ Coll Environm Sci &

    Engn Beijing Key Lab Source Control Technol Water Poll Beijing 100083 Peoples R China;

    Beijing Forestry Univ Coll Environm Sci &

    Engn Beijing Key Lab Source Control Technol Water Poll Beijing 100083 Peoples R China;

    Beijing Forestry Univ Coll Environm Sci &

    Engn Beijing Key Lab Source Control Technol Water Poll Beijing 100083 Peoples R China;

    Beijing Forestry Univ Coll Environm Sci &

    Engn Beijing Key Lab Source Control Technol Water Poll Beijing 100083 Peoples R China;

    Chinese Res Inst Environm Sci State Key Lab Environm Criteria &

    Risk Assessment Beijing 100012 Peoples R China;

    Hong Kong Polytech Univ Dept Civil &

    Environm Engn Hung Hom Kowloon Hong Kong Peoples R China;

    Beijing Forestry Univ Coll Environm Sci &

    Engn Beijing Key Lab Source Control Technol Water Poll Beijing 100083 Peoples R China;

    Univ Engn &

    Technol Inst Environm Engn &

    Res GT Rd Lahore 54890 Punjab Pakistan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 催化 ;
  • 关键词

    Fe@N-doped graphene-like carbon; g-C3N4; metal-organic framework; peroxymonosulfate; sulfate radical;

    机译:Fe @ n掺杂的石墨烯碳;G-C3N4;金属 - 有机骨架;过氧键硫酸盐;硫酸盐自由基;

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