A method for producing 2,2'-bipyridine in a membrane reactor
A technology of membrane reactor and bipyridine, which is applied in chemical instruments and methods, organic chemistry, chemical/physical processes, etc., can solve the problems of large energy consumption, difficult separation, low single conversion rate, etc., to prolong life, pyridine High conversion effect
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Embodiment 1-6
[0034] Put 60g of Raney nickel into the reactor of the above-mentioned device for producing 2,2'-bipyridine, gaseous pyridine enters the reactor at a certain flow rate, passes through the catalyst bed, and passes through the catalyst bed at a temperature of 300-600°C. Under the catalysis of Raney nickel, the reaction produces 2,2'-bipyridine, and the reaction liquid is extracted through the gas-liquid separator; the gas generated by the reaction enters the membrane tube, and nitrogen gas is introduced into the membrane tube from the inlet tube to overflow from the lower part of the membrane tube, blowing Sweep the gas in the membrane tube, and the mixed gas is discharged from the upper part of the membrane tube.
Embodiment 7-12
[0036] In the reactor of the above-mentioned device for producing 2,2'-bipyridine, load 60g of loaded nickel, wherein the nickel content of loaded nickel is 20%, the carrier is alumina, and the specific surface area is 120-250m 2 / g, the pore volume is 0.6m 3 / g. Gaseous pyridine enters the reactor at a certain flow rate, passes through the catalyst bed, and reacts to generate 2,2'-bipyridine under the catalysis of loaded nickel. The reaction liquid is extracted through the gas-liquid separator; Nitrogen gas is introduced into the air pipe to overflow from the lower part of the membrane tube, and the gas in the membrane tube is purged, and the mixed gas is discharged from the upper part of the membrane tube.
[0037] Table 1 is the conversion rate of pyridine for different catalysts at different temperatures, pressures, flow rates, and reaction times.
[0038] Table 1
[0039]
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