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Direct dimethyl ether synthesis from synthesis gas: The influence of methanol dehydration on methanol synthesis reaction

机译:合成气直接合成二甲醚:甲醇脱水对甲醇合成反应的影响

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摘要

Direct dimethyl ether (DME) synthesis from synthesis gas is studied with regard to potential effects of methanol dehydration on methanol formation and copper-based catalyst performance. For this, the influence of the operating conditions (space velocity, temperature, pressure, time-on-stream and syngas composition) on activity, selectivity and stability of the catalyst was studied and compared for methanol synthesis and direct DME synthesis. The advantage of the direct over the two-step DME synthesis is apparent at conditions where syngas conversion to methanol is thermodynamically limited. However, under the applied operating conditions, results suggest that combining methanol synthesis and dehydration has a negative effect on the methanol formation kinetics. The origin of the observed phenomena is investigated by varying dehydration catalyst and by introducing dehydration products (DME and water) into the methanol synthesis feed. Choice of the solid acid catalyst does not seem to affect methanol formation, and DME is also found to be practically inert over the methanol synthesis catalysts. Water injection, on the other hand, led to a significant decrease in the methanol synthesis rate. Thus, formation of an additional amount of water through methanol dehydration might be an explanation for the lower methanol formation rate in the direct DME synthesis.
机译:关于甲醇脱水对甲醇形成和铜基催化剂性能的潜在影响,研究了由合成气直接合成二甲醚(DME)。为此,研究了操作条件(空速,温度,压力,运行时间和合成气组成)对催化剂活性,选择性和稳定性的影响,并比较了甲醇合成和直接DME合成的效果。在合成气转化为甲醇的热力学受限的条件下,直接进行两步DME合成的优势显而易见。然而,在所应用的操作条件下,结果表明甲醇合成和脱水相结合对甲醇形成动力学具有负面影响。通过改变脱水催化剂并将脱水产物(DME和水)引入甲醇合成进料中,可以研究观察到的现象的根源。固体酸催化剂的选择似乎不影响甲醇的形成,并且发现二甲醚实际上比甲醇合成催化剂惰性。另一方面,注水导致甲醇合成速率显着降低。因此,通过甲醇脱水形成额外量的水可能解释了直接DME合成中较低的甲​​醇形成速率。

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