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Activation of CO and surface carbon species for conversion of syngas to light olefins on ZnCrO_x-Al_2O_3 catalysts

机译:在ZnCrO_x-Al_2O_3催化剂上活化CO和表面碳物质以将合成气转化为轻质烯烃

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As an effective part of the bifunctional catalyst for conversion of syngas to light olefins, ZnCrOx-Al2O3 mixed oxides were studied using surface sensitive techniques of X-ray photoelectron spectroscopy (XPS) and high-sensitivity low-energy ion scattering spectroscopy (HS-LEIS), as well as in situ Fourier Transform infrared spectroscopy (FTIR) and temperature-programmed desorption (TPD). Reducing and oxidizing treatments induce significant changes of the top-surface compositions as observed by HS-LEIS. After CO/H-2 treatment, an obvious amount of dissociated carbon and oxygen-containing carbon species were evidenced on the surface by XPS and HS-LEIS. The oxygen-containing carbon species include bicarbonate, carbonate and formate, and can be efficiently removed under H-2. Formate species may be formed by hydrogenation of the carbonate and bicarbonate species, and can be removed to regenerate the active sites for CO dissociation. TPD results under H-2 atmosphere show the production of methane, ethane and methanol for the surface pre-treating in CO at 300 degrees C.
机译:作为将合成气转化为轻质烯烃的双功能催化剂的有效组成部分,使用X射线光电子能谱(XPS)和高灵敏度低能离子散射光谱(HS-LEIS)的表面敏感技术研究了ZnCrOx-Al2O3混合氧化物。 ),原位傅里叶变换红外光谱(FTIR)和程序升温解吸(TPD)。如HS-LEIS所观察到的,还原和氧化处理引起顶表面成分的显着变化。经过CO / H-2处理后,通过XPS和HS-LEIS在表面上发现了明显的离解碳和含氧碳物质。含氧碳物质包括碳酸氢盐,碳酸盐和甲酸盐,并且可以在H-2下有效去除。甲酸盐种类可以通过碳酸盐和碳酸氢盐种类的氢化形成,并且可以被除去以再生用于CO离解的活性位点。在H-2气氛下的TPD结果表明,在300摄氏度的CO中对表面进行预处理的甲烷,乙烷和甲醇的产生。

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