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Synthetic fuels and chemicals production from biomass synthesis gas

机译:由生物质合成气生产合成燃料和化学品

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Experimental research on the synthesis of dimethyl ether (DME), ethylene glycol (EG), methyl glycolate (MG) from syngas, produced by biomass gasification and catalytic reforming, was carried out. The improved two step process, composed of methanol synthesis and methanol dehydration in a fixed-bed reactor, was employed for the direct DME synthesis. It shows that methanol synthesis catalyst in top stage is more sensitive to the temperature vibration than that of dehydration catalyst in the bottom stage. The process for EG and MG production from biomass-derived syngas involves two steps, the coupling of CO with nitrite esters to dimethyl oxalate (DMO) and the hydrogenation of DMO to ethanol, EG and MG. It reveals that low reaction temperature and H2/DMO molar ratio and high gas hourly space velocity (GHSV) facilitate to the MG production while the opposite reaction conditions would lead to improve the ethanol selectivity, and the moderate reaction conditions are beneficial to convert DMO to EG.
机译:进行了生物质气化和催化重整制取合成气合成二甲醚(DME),乙二醇(EG),乙醇酸甲酯(MG)的实验研究。改进的两步法,由甲醇合成和固定床反应器中的甲醇脱水组成,用于直接DME合成。结果表明,与下段脱水催化剂相比,上段甲醇合成催化剂对温度振动更敏感。由生物质衍生的合成气生产EG和MG的过程涉及两个步骤,将CO与亚硝酸酯偶联到草酸二甲酯(DMO)上,以及将DMO加氢成乙醇,EG和MG。结果表明,低反应温度和H2 / DMO摩尔比以及较高的气体时空速(GHSV)有利于MG的生产,而相反的反应条件会提高乙醇的选择性,适度的反应条件有利于将DMO转化为乙醇。例如。

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