Overcritical Fischer-Tropsck synthesis method
A Fischer-Tropsch synthesis and supercritical technology, used in chemical instruments and methods, bulk chemical production, metal/metal oxide/metal hydroxide catalysts, etc., to achieve a simple preparation process, reduce bed temperature flying, prevent The effect of catalyst deactivation
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Embodiment 1
[0025] In a fixed-bed reactor using molten iron catalyst, the supercritical medium is n-hexane, the controlled reaction temperature is 518K, the total reaction pressure is 6.0Mpa, the partial pressure of the synthesis gas is 2.0Mpa, the partial pressure of the medium is 4.0Mpa, and the synthesis gas air is Speed is 10800h -1 , H 2 / CO=2. The reaction reached a steady state after 6 h. A cold trap is used to collect the liquid phase at the outlet of the reactor, and a liquid phase storage tank is installed after the cold trap to facilitate the collection of the mixture of the supercritical medium and the liquid phase product. CO conversion rate is 77.2%, methane selectivity is 3.31 (mol%), CO 2 The selectivity was 36.97 (mol%). However, under the same conditions, the CO conversion rate of the gas-phase Fischer-Tropsch synthesis is only 52.8%, the methane selectivity is 4.54 (mol%), and the CO conversion rate is only 52.8%. 2 The selectivity was 39.06 (mol%). details as f...
Embodiment 2
[0032] In a fixed-bed reactor using molten iron catalyst, the supercritical medium is n-pentene, the reaction temperature is controlled at 498K, the total reaction pressure is 6.0Mpa, the partial pressure of the synthesis gas is 2.0Mpa, the partial pressure of the medium is 4.0Mpa, the synthesis gas Airspeed is 5400h -1 , the catalyst particle size is 0.043-0.075mm, H 2 / CO=2. After 6 hours, the reaction reached a steady state. A cold trap was used to collect the liquid phase at the outlet of the reactor, and a liquid phase storage tank was installed behind the cold trap to facilitate the collection of the mixture of the supercritical medium and the liquid phase product. The CO conversion rate was 56.6%, and the methane selectivity was 3.25 (mol%).
Embodiment 3
[0034] In a fixed-bed reactor using molten iron catalyst, the supercritical medium is benzene, the reaction temperature is controlled at 578K, the total reaction pressure is 6.0Mpa, the partial pressure of the synthesis gas is 2.0Mpa, the partial pressure of the medium is 4.0Mpa, and the space velocity of the synthesis gas is 10800h -1 , the catalyst particle size is 0.45-0.90mm, H 2 / CO=2. After 6 hours, the reaction reached a steady state. A cold trap was used to collect the liquid phase at the outlet of the reactor, and a liquid phase storage tank was installed behind the cold trap to facilitate the collection of the mixture of the supercritical medium and the liquid phase product. The CO conversion rate was 88.6%, and the methane selectivity was 8.2 (mol%).
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