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首页> 外文期刊>Separation and Purification Technology >One-step fabrication of cobalt-embedded carbon nitride as a magnetic and efficient heterogeneous catalyst for activating oxone to degrade pollutants in water
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One-step fabrication of cobalt-embedded carbon nitride as a magnetic and efficient heterogeneous catalyst for activating oxone to degrade pollutants in water

机译:钴嵌入氮化物的一步制造作为磁性和有效的异质催化剂,用于活化氧化的氧化力降解水中污染物

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Cobalt nanoparticles (NPs) immobilized on N-doped carbonaceous substrates are attractive heterogeneous catalysts for activating Oxone to degrade pollutants. However, conventional preparation of Co NPs/N-doped carbon composites involves multi-step syntheses of N-doped carbon substrates, and then immobilization of Co NPs on substrates, which are complicated and time-consuming. In this study, a convenient one-step fabrication technique is developed for preparing a composite of Co/N-doped carbon via carbonization of a mixture of melamine and cobalt acetate. The resulting Co@CN is comprised of Co NPs evenly distributed over a carbon nitride (CN) matrix. Co@CN could exhibit porous structures and magnetic controllability, making it an appealing catalyst for Ozone activation. Catalytic activities for Oxone activation by Co@CN are investigated via batch-type decolorization experiments of amaranth (AMR) dye. Co@CN shows much higher catalytic activities than C3N4 and Co3O4, the benchmark catalyst, for Oxone activation to decolorize AMR. In comparison to the other reported catalysts, Co@CN demonstrates the much lower activation energy for AMR decolorization. The mechanism of AMR decolorization by Co@CN-activated Oxone is also determined by investigating Electron paramagnetic resonance (EPR) analysis and effects of radical inhibitors on AMR decolorization. These comparisons indicate the promising features of Co@CN as a heterogeneous catalyst for activating Oxone. The fabrication technique proposed here can be also adopted to develop similar composites of metallic NPs distributed over CN matrices for various catalytic applications.
机译:固定在n掺杂的碳质基质上的钴纳米颗粒(NPS)是用于活化氧化力以降解污染物的有吸引力的非均相催化剂。然而,CO NPS / N掺杂碳复合材料的常规制剂包括多步合成的N掺杂的碳基材,然后在基材上固定CO NP,这是复杂且耗时的。在该研究中,开发了一种方便的一步制造技术,用于通过碳化三聚氰胺和醋酸钴的碳化制备Co / N掺杂碳的复合材料。得到的CO @ CN由均匀分布在氮化物(CN)基质上的CO NP组成。 CO @ CN可以表现出多孔结构和磁性可控性,使其成为臭氧活化的吸引力催化剂。通过苋菜(AMR)染料的间歇式脱色实验研究了CO @ CN的氧化力活化的催化活性。 CO @ CN显示比C3N4和CO3O4,基准催化剂,基准催化剂,用于脱色AMR的催化活性。与其他报道的催化剂相比,CO @ CN证明了AMR脱色的最低激活能量。通过研究CO @ CN活化的氧化力的AMR脱色机制也通过研究电子顺磁共振(EPR)分析和自由基抑制剂对AMR脱色的影响来确定。这些比较表明CO @ CN作为用于活化氧酮的非均相催化剂的有希望的特征。这里提出的制造技术也可以采用在分布于各种催化应用的CN矩阵上的金属NPS的类似复合材料。

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