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Metal-free activation of persulfate by cubic mesoporous carbons for catalytic oxidation via radical and nonradical processes

机译:立方中孔碳的无铅过硫酸盐的无金属活化通过自由基和非常规方法进行催化氧化

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Carbon materials have been demonstrated as effective and metal-free carbocatalysts for substituting the toxic and/or expensive transition and noble metals/oxides for various green chemical processes. In this study, three-dimensional cubic mesoporous carbon (CMK) materials were employed for adsorptive and oxidative removal (via heterogeneous persulfate activation) of toxic phenolic compounds. CMK-3 and CMK-8 are constructed with porous structures and larger specific areas of 1129 and 1072 m(2)/g, respectively. They achieved 39.2% and 31.3% of phenol adsorption in aqueous solutions. CMK-3 and CMK-8 also demonstrated as superb persulfate (PS) activators, providing 100% phenol oxidation in 20 and 45 min accordingly with high rate constants of 0.209 and 0.104 min(-1), respectively. The metal-free systems are more efficient than Fe2+ or Ag+ based homogeneous systems. Moreover, CMK-3/PS can be comparable to the classical zero-valent iron (ZVI)/PS system without inducing any metal ions to the waterbody. The mechanistic study indicated that persulfate activation on CMKs was different from the Fe2+/PS, Ag+/PS, and ZVI/PS systems. A nonradical pathway was unveiled in the metal-free persulfate activation for catalytic oxidation in which persulfate was activated on the carbon lattice and oxidized the adsorbed phenol molecules via a rapid electron transfer. The edging sites and kenotic groups of carbon materials would mediate persulfate to produce sulfate radicals. Both the radical pathway and nonradical process contributed to the complete phenol removal, and the great adsorption capability of CMKs further promoted the adsorption of the organic and oxidant for enhanced catalytic processes. The study dedicates to a metal-free oxidative system with cheap carbon materials for wastewater treatment and environmental remediation.
机译:已经证明碳材料作为无需无金属碳粉丙酸盐,用于用毒和/或昂贵的过渡和贵金属/氧化物用于各种绿色化学过程。在该研究中,使用三维立方介孔碳(CMK)材料用于毒性酚类化合物的吸附和氧化除去(通过异质过硫酸盐活化)。 CMK-3和CMK-8分别具有多孔结构和1129和1072m(2)/ g的较大特异性区域。它们在水溶液中达到了39.2%和31.3%的苯酚吸附。 CMK-3和CMK-8还证明了优于过硫酸盐(PS)活化剂,相应地在20和45分钟内提供100%酚氧化,分别具有0.209和0.104分钟(-1)的高速率常数。无金属系统比Fe2 +或基于Ag +的均匀系统更有效。此外,CMK-3 / PS可以与经典零价铁(ZVI)/ PS系统相当,而不诱导任何金属离子到水体。机械研究表明,在CMK上的过硫酸盐激活与Fe2 + / PS,Ag + / PS和ZVI / PS系统不同。在无金属透明途径中揭开非致途径,用于催化氧化,其中过硫酸盐在碳晶格上活化并通过快速电子转移氧化吸附的酚分子。碳材料的边缘网站和盲肠群将介导过硫酸盐以产生硫酸盐自由基。自由基途径和非竞争方法均导致完全酚去除,并且CMK的极大吸附能力进一步促进了有机和氧化剂的吸附以获得增强的催化过程。该研究采用无金属氧化系统,具有廉价碳材料,用于废水处理和环境修复。

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