首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Isothermal cyclic conversion of methane to methanol using copper-exchanged ZSM-5 zeolite materials under mild conditions
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Isothermal cyclic conversion of methane to methanol using copper-exchanged ZSM-5 zeolite materials under mild conditions

机译:在温和条件下使用铜交换的ZSM-5沸石材料对甲烷转化为甲醇的等温循环转化

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Direct conversion of methane to methanol (DMTM) has become a particularly attractive route for the functionalisation of natural gas. Here the proven capability of copper-exchanged ZSM-5 zeolites to carry out DMTM at mild conditions has been extended by also demonstrating its capability to perform repeated reactions in a concept known as cycling. A series of five copper-exchanged ZSM-5 zeolites with different Si:Al ratio were prepared via aqueous ion exchange. The materials characterisation was carried out using a combination of transmission electron microscopy (TEM), X-ray diffraction (XRD), nitrogen adsorption isotherms at -196 degrees C (BET and BJH methods), thermogravimetric analysis (TGA), scanning electron microscopy (SEM), energy-dispersive X-ray (EDX) and in-situ ultraviolet-visible spectroscopy (UV-vis) techniques. Under mild isothermal conditions (air activation; T = 200 degrees C; P = 1 atm), methanol productions of 2.8 +/- 0.1 mu mol.g(cat)(-1), 26.6 +/- 0.1 mu mol.g(cat)(-1), 12.5 +/- 0.1 mu mol.g(cat)(-1), 10.8 +/- 0.1 mu mol.g(cat)(-1) and 3.2 +/- 0.1 mu mol.g(cat)(-1) were achieved for copper-exchanged ZSM-5 containing 20:1, 30:1, 50:1, 80:1, and 200-400:1 Si:Al ratio, respectively. Comparing the results of cycling Cu-ZSM-5 (Si:Al = 200-400:1) with those obtained for Cu-ZSM-5 (Si:Al = 30:1) has led to the conclusion that hydrophobicity plays a decisive role in the capability to cycle, with materials containing a higher Si:Al being better suited to cycling. A total of five repeated cycles were achieved using CuZSM-5 (Si:Al = 200-400:1). The methanol production was higher, the lower the Si:Al ratio with an optimal Si:Al = 30:1. However, TEM analysis suggests that precipitation of copper nanoparticles on the catalyst support structure could account for the reduced activity found within the material containing the lowest Si:Al. in situ UV-vis spectroscopy characterisation of the copper-exchanged ZSM-5 zeolite materials under similar DMTM reaction conditions suggested that active copper complexes were being created and then destroyed during the DMTM reaction. A speculative discussion of the copper complexes present within these materials has also been provided.
机译:将甲烷直接转化为甲醇(DMTM)已成为天然气官能化的特别有吸引力的途径。这里通过展示其在称为循环的概念中进行重复反应的能力,延长了铜交换ZSM-5沸石在温和条件下进行DMTM进行DMTM的证明能力。通过水离子交换制备一系列具有不同Si:Al比的五种铜交换ZSM-5沸石。使用透射电子显微镜(TEM),X射线衍射(XRD),氮吸附等温,在-196摄氏度(BET和BJH方法),热重分析(TGA),扫描电子显微镜( SEM),能量分散X射线(EDX)和原位紫外 - 可见光谱(UV-VIS)技术。在温和的等温条件下(空气激活; T = 200摄氏度; P = 1 atm),甲醇产物为2.8 +/-0.1μmol.g(猫)( - 1),26.6 +/- 0.1 mmol.g(猫)( - 1),12.5 +/- 0.1 mm mol.g(猫)( - 1),10.8 +/- 0.1 mol.g(猫)( - 1)和3.2 +/- 0.1 mmol.g (猫)( - 1)分别达到含有20:1,30:1,50:1,80:1和200-400:1 Si:Al比的铜交换ZSM-5的铜交换ZSM-5。将循环Cu-ZSM-5(Si:Al = 200-400:1)的结果与Cu-ZSM-5(Si:Al = 30:1)得到的结果进行了结果导致了疏水性起决定性作用的结论在循环的能力中,具有含有更高Si的材料:Al更适合循环。使用CuzSM-5实现共有五个重复循环(Si:Al = 200-400:1)。甲醇产量较高,Si:Al比率越低:Al = 30:1。然而,TEM分析表明,催化剂载体结构上的铜纳米颗粒的沉淀可以考虑含有最低Si:Al的材料中的减少的活性。在类似DMTM反应条件下,铜交换的ZSM-5沸石材料的原位UV-Vis谱表明表明正在产生活性铜络合物,然后在DMTM反应期间破坏。还提供了对这些材料中存在的铜络合物的推测性讨论。

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