Catalyst and process for dehydrogenation of oxygen-containing derivatives of the cyclohexane series into corresponding cyclic ketones and/or phenols

A catalyst for dehydrogenation of oxygen-containing derivatives of the cyclohexane series of the general formula: wherein R1 is hydrogen or a C1-C4 alkyl; R2 and R3 are radicals having the same or different meanings: -H, -OH, =O, provided that R2 and R3 are not simultaneously hydrogen and R1, R2 and...

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Hauptverfasser: ROZOVSKY, ALEXANDR Y, BELOV, PETR S, DYAKONOV, ALEXANDR J, STYTSENKO, VALENTIN D, NIZOVA, SVETLANA A
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creator ROZOVSKY
ALEXANDR Y
BELOV
PETR S
DYAKONOV
ALEXANDR J
STYTSENKO
VALENTIN D
NIZOVA
SVETLANA A
description A catalyst for dehydrogenation of oxygen-containing derivatives of the cyclohexane series of the general formula: wherein R1 is hydrogen or a C1-C4 alkyl; R2 and R3 are radicals having the same or different meanings: -H, -OH, =O, provided that R2 and R3 are not simultaneously hydrogen and R1, R2 and R3 are attached to different carbon atoms of the cycle, into corresponding cyclic ketones and/or phenols containing the following components, percent by weight: -nickel 15 to 55 -promotor-germanium -and/or lead 0.2 to 8.0 -inert carrier 84.8 to 37.0 - and an atomic ratio of nickel to the promotor is within the range of from 15:1 to 410:1 respectively. The catalyst can additionally contain a salt of an alkali metal and a mineral acid in an amount of from 0.01 to 1.0% by weight. A process for dehydrogenation of oxygen-containing derivatives of the cyclohexane series of said general formula into corresponding cyclic ketones and/or phenols comprises contacting said oxygen-containing derivatives of the cyclohexane series with said catalyst in the presence of a diluent-an inert gas, aliphatic C1-C4 hydrocarbons, nitrogen, carbon dioxide, steam, aliphatic C1-C3 alcohols or different combinations thereof, at a temperature within the range of from 160 DEG to 340 DEG C. under a partial pressure of said oxygen-containing derivatives of the cyclohexane series of from 0.003 to 0.1 atm, and feed rates of said oxygen-containing derivatives of the cyclohexane series and diluent equal to 0.5-5.0 kg/1.hr and 1-53 m3/1.hr respectively. The catalyst features a high productivity (up to 3.8 kg/1.hr) selectively (up to 99%) and stability (operates with unchanged characteristics of productivity and selectivity for 400 hours and longer). The process is simple, it can be performed on a standard equipment, whereby it is economically efficient.
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The catalyst can additionally contain a salt of an alkali metal and a mineral acid in an amount of from 0.01 to 1.0% by weight. A process for dehydrogenation of oxygen-containing derivatives of the cyclohexane series of said general formula into corresponding cyclic ketones and/or phenols comprises contacting said oxygen-containing derivatives of the cyclohexane series with said catalyst in the presence of a diluent-an inert gas, aliphatic C1-C4 hydrocarbons, nitrogen, carbon dioxide, steam, aliphatic C1-C3 alcohols or different combinations thereof, at a temperature within the range of from 160 DEG to 340 DEG C. under a partial pressure of said oxygen-containing derivatives of the cyclohexane series of from 0.003 to 0.1 atm, and feed rates of said oxygen-containing derivatives of the cyclohexane series and diluent equal to 0.5-5.0 kg/1.hr and 1-53 m3/1.hr respectively. The catalyst features a high productivity (up to 3.8 kg/1.hr) selectively (up to 99%) and stability (operates with unchanged characteristics of productivity and selectivity for 400 hours and longer). The process is simple, it can be performed on a standard equipment, whereby it is economically efficient.</abstract><oa>free_for_read</oa></addata></record>
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subjects ACYCLIC OR CARBOCYCLIC COMPOUNDS
CHEMICAL OR PHYSICAL PROCESSES, e.g. CATALYSIS OR COLLOIDCHEMISTRY
CHEMISTRY
METALLURGY
ORGANIC CHEMISTRY
PERFORMING OPERATIONS
PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
THEIR RELEVANT APPARATUS
TRANSPORTING
title Catalyst and process for dehydrogenation of oxygen-containing derivatives of the cyclohexane series into corresponding cyclic ketones and/or phenols
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