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An integrated air-POM syngas /dimethyl ether process from natural gas

机译:天然气的空气-POM合成气/二甲醚集成工艺

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A Cu-Zn-Al methanol catalyst combined with HASM-5 was used for dimethyl ether (DME) synthesis from a syngas containing nitrogen, which was produced by air-partial oxidation of methane (air-POM). Air-POM occurred at 850 deg C, 0.8 MPa, CH_4/air/H_2O/CO_2 ratio of 1/2.4/0.8/0.4 over a Ni-based catalyst modified by magnesia and lanthanum oxide with 96% CH_4 conversion and constantly gave syngas with a H_2/CO ratio of 2/1 during a period of 450 h. The obtained N_2-containing syngas was used directly for DME synthesis. About 90% CO per-pass conversion, 78% DME selectivity and 70% DME yield could be achieved during 450 h stability testing under the pressure of 5.0 MPa, the temperature of 240 deg C and the space velocity of 1000 h~(-1).
机译:Cu-Zn-Al甲醇催化剂与HASM-5结合使用,用于由含氮的合成气合成二甲醚(DME),该合成气是通过甲烷的空气部分氧化(air-POM)生产的。在由氧化镁和氧化镧改性的Ni基催化剂上,在850℃,0.8 MPa,CH_4 /空气/ H_2O / CO_2比为1 / 2.4 / 0.8 / 0.4的条件下,发生了空气POM,CH_4转化率为96%,并不断产生合成气。在450小时内H_2 / CO比为2/1。所获得的含N_2的合成气直接用于DME合成。在5.0 MPa的压力,240摄氏度的温度和1000 h〜(-1)的空速下进行450小时的稳定性测试期间,可以实现约90%的CO单程转化率,78%的DME选择性和70%的DME收率。 )。

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