Cryogenic process for the selective removal of acidic gases...

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F25J 3/02 (2006.01) B01D 53/14 (2006.01) C10K 1/16 (2006.01) F25J 3/08 (2006.01)

Patent

CA 1270746

CASE 2152 "CRYOGENIC PROCESS FOR THE SELECTIVE REMOVAL OF ACIDIC GASES FROM MIXTURES OF GASES BY SOLVENTS" Abstract of the Disclosure A cryogenic process is disclosed for the selective removal of acidic gases from natural gases or from syn- thesis gases by adsorption in two towers and cooling of the gas outcoming from the first tower to the purpose of condensing a portion of CO2 contained in the same gas, which is characterized in that in it a mixture is used constituted by one or more selective solvents selected among low molecular weight esters, alcohols and ethers of the following classes: - esters of alcohols of general formula R1COOR2, wherein R1 and R2 are alkyl groups of from 1 to 4 carbon atoms, equal to or different from each other, wherein one or more hydrogen atoms can be substituted by alcoholic groups; - esters of glycols of general formula Image or 2. Image wherein R1 and R2 are alkyl groups having from 1 to 3 carbon atoms, equal to or different from each other, R3, R4, R5, R6, equal to or different from each other, are either alkyl groups containing from 1 to 3 carbon atoms or hydrogen atoms, m and n are integers which can have the value 0 or 1; - cyclic esters (lactones) of formula Image or Image wherein R2, R3, R4, R5, equal to or different from each other, are alkylene groups wherein one or more hydrogen atoms can also be substituted by alkylic, alcoholic or ether groups; - alcohols of general formula Image wherein R1, R2, R3, R4, R5, R6, equal to or different from each other, are alkyl groups having from 1 to 3 carbon atoms or hydroxy groups or hydrogen atoms, m and 3. n are integers which can assume the values O and 1; - cyclic ethers such as Image wherein R2, R5, R6, equal to or different from each other, are alkyl groups wherein hydrogen can also be substituted by alkyl or methoxy groups, R3 is either an oxygen atom or an alkylene group wherein hydrogen can also be substituted by alkyl or methoxy groups, R4 is either equal to R3 or can be absent in case of a pentaatomic ring; - ethers of general formula R1-O-CH2-(R3)n-CH2-O-R2 wherein R1 is an alkyl group of from 1 to 4 carbon atoms, R2 is either an alkyl group of from 1 to 4 carbon atoms or a hydrogen atom , R3 is either an alkylene group or (CH2-0-CH2), n is an integer which can have the value 0 or 1; - ethers of general formula R1-O-R2 wherein R1 and R2, either equal to or different from each other, are alkyl groups of from 1 to 4 carbon atoms, wherein one or more hydrogen atoms can be sub- stituted by alcoholic groups; - ester-ethers, compounds containing both the functions, of formula: (R4-0)n - R1 - COOR2 (OR3)m wherein R3 and R4, equal to or different from each other, are alkyl groups having from 1 to 4 carbon 4. atoms, R2 is an alkylene group having from 1 to 4 carbon atoms, R1 is either equal to R2 or equal to R3, m and D are integers which can have the value 0 or 1, and by one or more organic compounds selected from: - heptane, - fractions of natural gasolines containing hydrocarbons having a number of carbon atoms comprised within the range of from 5 to 8; - monoaromatic compounds having a number of paraffinic carbon atoms comprised within the range of from 2 to 4, bound to the benzene ring either separately or as one or more linear or branched side chains; - dimethylethers of polyglycols having the glycolic unit -CH2-CH-O- repeated from once to five times; - methoxy- and/or ethoxyalcohols, wherein the alcoholic group is a radical having from 1 to 4 carbon atoms in either linear or branched chain.

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