Method for preparing aldehyde through olefin hydrogen formylation
A technology of olefin hydroformyl and ethylene, applied in the direction of carbon monoxide reaction preparation, organic chemistry, etc., can solve the problems of low selectivity of target products and low conversion rate of raw materials, and achieves optimized effective distribution, improved reaction efficiency, and improved product yield. Effect
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Embodiment 1
[0022] Attached figure 1 The shown device adopts the rhodium catalyst in Example 1 of document CN200910058201.6 as the catalyst, and the olefin is selected from ethylene, and the molar ratio of hydrogen: CO: ethylene: Rh is 1: 1: 0.8: 0.2; the total amount of gas is 100m 3 / h, under the condition that the molar ratio of the first mixed gas of hydrogen, CO and ethylene to the second mixed gas of hydrogen, CO and ethylene is 2:1, the two mixed gases are respectively fed from the first gas inlet 2 And the second gas inlet 16 enters the olefin hydroformylation reactor, and diffuses into the lower packing 15 under the action of pressure difference, and the rotating packing speed is adjusted to 2000rpm. The solution of rhodium-containing catalyst enters the liquid distributor 8 of the olefin hydroformylation reactor through the liquid inlet 3 and is sprayed to the inner side of the filler, and the gas and the liquid contact countercurrently in the upper packing layer 6 of the olef...
Embodiment 2
[0024] Attached figure 1 The shown device adopts the rhodium catalyst in Example 1 of the document CN200510085899.2 as the catalyst, and the olefin is selected from propylene, and in terms of total moles, the molar ratio of hydrogen: CO: propylene: Rh is 1: 1: 0.8: 0.2, the total amount of gas is 100m 3 / h, under the condition that the molar ratio of the first mixed gas of hydrogen, CO and propylene to the second mixed gas of hydrogen, CO and propylene is 30:1, the first mixed gas, the second mixed gas and the components containing liquid catalyst are respectively introduced in the high-efficiency reactor rotating packing layer 2 from the first gas inlet 1, the second gas inlet 10 and the liquid inlet 4, and the rotating packing layer rotating speed is adjusted to 500rpm, wherein the introduction of the first gas It is achieved by the pressure difference formed by the system. The liquid catalyst-containing component introduced through the liquid inlet line 5 merges with the...
Embodiment 3
[0026] Attached figure 1 The shown device adopts the rhodium catalyst in Example 2 of the document CN200910058201.6 as the catalyst, and the olefin is selected from butene, and in total moles, the molar ratio of hydrogen: CO: butene: Rh is 1: 1: 0.7:0.2; under the condition that the molar ratio of the first mixed gas of hydrogen, CO and butene to the second mixed gas of hydrogen, CO and butene is 30:1, the first mixed gas, the second A strand of mixed gas and components containing liquid catalyst are introduced into the high-efficiency reactor rotating packing layer 2 from the first gas inlet 1, the second gas inlet 10 and the liquid inlet 4 respectively, and the rotation speed of the rotating packing layer is adjusted to 500rpm, wherein the first The introduction of gas is achieved by the pressure difference formed by the system. The liquid catalyst-containing component introduced through the liquid inlet line 5 merges with the second gas introduced through the second gas i...
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