A kind of method for preparing ketone organic compound
A technology of organic matter and ketones, applied in the field of organic matter preparation, can solve problems such as separation difficulties, increased acetone production costs, and cumene method not in line with actual national conditions
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preparation example Construction
[0083] Preparation of raw material gas in this application: The raw material enters the reactor in the following ways, such as the raw material methyl acetate is kept at a constant temperature under a water bath, and the dilution gas is passed into for bubbling, and the mixed gas (ie raw material gas) carrying the raw material vapor is passed into the fixed bed for reaction In the reactor, the amount of material entering the reactor can be adjusted according to the reactant gas flow rate. The saturated vapor pressure of raw materials under different temperature conditions can be calculated by the following formula:
[0084] lgP*=A–B / (t+C)
[0085]Among them, A, B, and C are the physical parameters of the raw materials, which can be learned from the Lang's Chemistry Handbook, and t represents the temperature. This allows the calculation of the saturated vapor pressure of the feedstock at any temperature. The amount of material entering the reactor per unit time can be calcula...
Embodiment 1
[0111] The 1# catalyst packing of 1g is among the fixed-bed reactor of 8 millimeters inside diameter, carries out preactivation to 1# catalyst, and its condition is N 2 The flow rate is 30ml / min, raised to 500°C at a rate of 2°C / min, and kept at 500°C for 1 hour, then dropped to the required reaction temperature of 320°C in a nitrogen atmosphere, and the pressure of the reaction system was raised to 20bar with nitrogen, The mass space velocity of raw material methyl acetate is 0.3h -1 , the diluent gas is N 2 , the volume percentage of the diluent gas in the raw material gas is 80%, and the ketation reaction results are shown in Table 1 under this condition.
Embodiment 2-10
[0113] The reaction conditions are the same as in Example 1, except that the catalysts are respectively 2-10#, and the reaction results are as shown in Table 1.
[0114] The result of table 1 methyl acetate ketoylation reaction under different catalysts
[0115]
[0116] It can be seen from Table 1 that the listed acidic molecular sieves and their metal-modified molecular sieves can convert methyl acetate into acetone.
[0117] 2.2 Ketoylation results at different reaction temperatures
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