首页> 外文期刊>Journal of the Japan Petroleum Institute >Synthesis of Liquefied Petroleum Gas via Methanol and/or Dimethyl Ether from Natural Gas (Part 3) Investigation of Reaction Variables,Ethene Recycling and Catalyst Regeneration at High Conversion from Methanol and/or Dimethyl Ether to LPG
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Synthesis of Liquefied Petroleum Gas via Methanol and/or Dimethyl Ether from Natural Gas (Part 3) Investigation of Reaction Variables,Ethene Recycling and Catalyst Regeneration at High Conversion from Methanol and/or Dimethyl Ether to LPG

机译:从天然气中通过甲醇和/或二甲醚合成液化石油气(第3部分)研究从甲醇和/或二甲醚到LPG的高转化率的反应变量,乙烯再循环和催化剂再生

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Conversion of methanol and/or dimethyl ether into LPG,previously proposed as a potential route for fuel synthesis from natural gas,was evaluated over H-ZSM-5 and H-FeAlMFI-silicate catalysts to optimize LPG fractional selectivity at high conversion,to simulate C_2 recycling by co-feed conversion of ethene with oxygenates,and to assess deactivation and regeneration.Selectivity for the desired product depended not only on catalyst performance but also on reaction conditions.The effect of feedstock partial pressure on product distribution could be explained by the concentrations of the active olefin intermediates.Ethene was selectively converted into the LPG fraction by co-feed reaction with oxygenates over H-ZSM-5 catalyst.The large scale process yield of LPG could be increased by recycling C_2 components according to the available recycling ratio.However,H-FeAlMFl-silicate catalyst was effective for one-pass conversion but not for recycled ethene conversion.The two catalysts deactivated during one-pass conversion could be regenerated well by a moderate carbon combustion process.Good reproducibility of fractional selectivity was achieved by the regenerated catalyst.H-FeAlMFI-silicate catalyst suffered relatively little deactivation compared with H-ZSM-5 catalyst,and showed high resistance to deactivation after ageing.The improvement in stability of H-FeAlMFI-silicate catalyst may originate from the elimination of some strong acid sites via the ageing process.H-FeAlMFI-silicate catalyst was superior to H-ZSM-5 catalyst except for recycled ethene conversion.
机译:在H-ZSM-5和H-FeAlMFI-硅酸盐催化剂上评估了甲醇和/或二甲醚转化为LPG的方法,该方法先前曾被建议用作天然气合成燃料的潜在途径,以优化高转化率下LPG的部分选择性,以模拟通过乙烯与含氧化合物的共进料转化进行C_2循环,并评估其失活和再生。所需产物的选择性不仅取决于催化剂性能,还取决于反应条件。原料分压对产物分布的影响可以通过以下方式解释:通过在H-ZSM-5催化剂上与含氧化合物共进料反应,将乙烯选择性地转化为LPG馏分。根据可用的回收率,通过回收C_2组分可以提高LPG的大规模工艺收率但是,H-FeAlMF1-硅酸盐催化剂只能有效通过一次转化,而不能实现循环乙烯转化。两种催化剂都失活了单程转化过程中可以通过适度的碳燃烧过程很好地再生。再生的催化剂实现了部分选择性的良好再现性.H-FeAlMFI-硅酸盐催化剂与H-ZSM-5催化剂相比失活较少,并且表现出较高的选择性。 H-FeAlMFI-硅酸盐催化剂的稳定性提高可能源于通过老化过程消除了一些强酸位点.H-FeAlMFI-硅酸盐催化剂除了可循环使用外优于H-ZSM-5催化剂乙烯转化。

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