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Maximizing the number of oxygen-containing functional groups on activated carbon by using ammonium persulfate and improving the temperature-programmed desorption characterization of carbon surface chemistry

机译:通过使用过硫酸铵来最大化活性炭上含氧官能团的数量,并改善碳表面化学的程序升温脱附特性

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摘要

The number of oxygen-containing functional groups (OCFGs) on the surface of a commercial activated carbon (AC) was maximized using ammonium persulfate ((NH4)2S2O8, APS) as an oxidant. Effects of the oxidation conditions, including temperature, time and concentration of APS, on physical and chemical properties of the treated AC were examined to develop a relationship between the oxidation conditions and surface chemistry of AC. A maximum amount of oxygen, 18.7 mmol/g, on the AC was achieved by oxidation with 2.0 mol/L APS solution and an APS/AC weight ratio of 9.1 at 60 °C for 3 h. Temperature-programmed desorption coupled with mass spectrometry (TPD-MS) was used to identify and quantify OCFGs on the AC samples. It was found that using the TPD-MS method currently reported in the literature to quantify various OCFGs on the carbon surface on the basis of TPD-CO2 and TPD-CO profiles may significantly underestimate the number of carboxyl groups, and overestimate anhydrides and lactones due to some in situ reactions of OCFGs during the TPD-MS analysis. The amount of H2O and CO released in the temperature range corresponding to decomposition of carboxyl groups should be taken into account when estimating the amount of carboxyl groups on AC.
机译:使用过硫酸铵((NH4)2S2O8,APS)作为氧化剂,可以使商业用活性炭(AC)表面的含氧官能团(OCFG)数量最大化。研究了氧化条件(包括温度,时间和APS浓度)对处理过的AC的物理和化学性质的影响,以建立AC的氧化条件与表面化学性质之间的关系。通过用2.0 mol / L APS溶液和9.1的APS / AC重量比在60°C氧化3 h,可以在AC上获得最大的氧气量18.7 mmol / g。程序升温脱附质谱(TPD-MS)用于鉴定和定量AC样品中的OCFG。已发现,使用当前文献中报道的TPD-MS方法基于TPD-CO2和TPD-CO谱对碳表面上的各种OCFG进行定量,可能会大大低估羧基数量,并高估应得的酸酐和内酯TPD-MS分析过程中OCFG的一些原位反应。估算AC上的羧基量时,应考虑到在与羧基分解对应的温度范围内释放的H2O和CO量。

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