Method for preparing 2,3,6-trimethylphenol by using 2,5-dimethylphenol
A tricresol and xylenol technology, applied in the field of organic synthesis, can solve the problems of short service life, low repeatability and high operating temperature, and achieve the advantages of reducing energy consumption and material consumption, reducing equipment costs, and reducing energy consumption and material consumption. Effect
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example 1
[0021] Weigh 55Kg Fe (NO 3 ) 3 ·9H 2 O, 880gCr (NO 3 ) 9H 2 O, 320gGeCl 4 , 630gMn (NO 3 ) 2 ·4H 2 O. 730gNa 2 SiO 3 ·9H 2 O, 3.5KgInCl 3 ·4H 2 O, dissolved in 1000L of water, firstly add 10% ammonia water to neutralize to pH=7.0, and heat to 90°C, then continue to neutralize with 10% ammonia water to pH=7.5~8.0, stir for 1 hour, for a total of Precipitate for 12 hours, filter the filter cake, repeatedly wash and filter with deionized water, dry at 120 ° C for 24 hours, pulverize into 30-80 mesh particles, put in 20L of 1.0% K 2 CO 3 In the solution, immersed for 24 hours, filtered and separated, the obtained particles were dried at 120 ° C for 14 hours, and then calcined at 470 ° C in a roasting furnace for 5 hours. A catalyst composed of iron, indium oxide, silicon dioxide, chromium oxide, manganese dioxide, germanium oxide and potassium oxide, the molar ratio of each component in the catalyst is:
[0022] Fe 2 O 3 : In 2 O 3 : SiO 2 : Cr 2 O 3 : MnO 2...
example 2
[0027] A method for preparing 2,3,6-tricresol, wherein 2,5-xylenol is gasified with methanol and water and mixed with nitrogen, and in the presence of an iron oxide-based catalyst, a gas phase is carried out in a fixed bed reactor. Catalytic reaction, one-step synthesis of 2,3,6-tricresol, the reaction temperature is 300 ~ 450 ℃; the reaction pressure is 0 ~ 0.1Mpa; the molar ratio of the 2,5-xylenol, methanol, water, nitrogen is : 1: (2 to 5): (8 to 10): (8 to 12). After the gas-phase catalytic reaction is completed, it is cooled to separate unreacted methanol and water, and rectified to obtain the finished product of 2,3,6-tricresol. The iron oxide-based catalyst is: mainly iron oxide and contains co-catalysts: chromium oxide, germanium oxide, manganese oxide, indium oxide, silicon oxide, potassium oxide; the molar ratio of each component in the iron oxide-based catalyst is: oxide Iron: chromium oxide: germanium oxide: manganese oxide: indium oxide: silicon oxide: potassium...
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