EP0257635B1

Permeable, porous, polymeric membrane with hydrophilic character, methods for preparing said membranes, and their use

Abstract

This record has no abstract on file.

EP0257635B1, drawing sheet 1
Sheet 1 of 20

Term

Term ended

Expired 26 August 2007, 19.1 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

14 claims: 6 independent, 8 dependent

  1. 1
    Permeable, porous polymeric membrane with hydrophilic character characterised in that the hydrophilic character of the membrane is obtained by treatment with a solution comprising one or more hydrophilic, mono- or polymeric compounds selected among soluble, OH-containing cellulose derivatives, polyvinylalcohols and low molecular weight, polyfunctional, NH- and/or OH-containing compounds, optionally in the presence of a cross-linking agent, a surfactant and an initiator followed by rendering the layer deposited during the treatment insoluble on the membrane surface by means of a catalysed reaction at elevated temperatures in order to fixate the hydrophilic material to the membrane, and the deposited hydrophilic layer determines the filtration properties.
  2. 5
    Process for the preparation of a membrane according to claims 1-4 characterised in that a permeable, porous polymeric membrane with hydrophobic character is treated with a solution comprising one or more hydrophilic, monomeric or polymeric compounds selected among soluble, OH-containing cellulose derivatives, polyvinylalcohols as well as low molecular weight, polyfunctional, NH- and/or OH-containing compounds in the presence of a catalyst, and optionally in the presence of a cross-linking agent, a surfactant and an initiator, said coated membrane being subsequently cured by means of heating until an insoluble, hydrophilic surface coat is fixated on the permeable, porous polymeric membrane with hydrophobic character wherein the hydrophilic layer determines the filtration properties of the membrane.
  3. 10
    Process according to claims 5-6 and 9 characterised in that a PVDF-, CTFE/VF- or a PVDF-CTFE/VF-membrane is treated with a solution comprising hydroxyalkylcellulose in the presence of an inorganic base as catalyst, such as NaOH, optionally a cross-linking agent, such as a compound of the general formula R³-(CHOH-CH₂-X) n , where X is a halogen atom, preferably chlorine, R³ is an alkyl group that may include one or more oxygen or halogen atoms or a direct bond or an ether bond, and n is an integer equal to or larger than 1, such as 1,3-dichloro-2-propanol, as well as optionally a surfactant, such as sodiumdodecyl sulphate.
  4. 11
    Process according to claims 9-10 characterised in that the cellulose derivative is completely or partially substituted by one or more low molecular weight, polyfunctional, NH- and/or OH-containing compounds, preferably selected among diaminopyridines, tetraethylene pentamine, aminophenols and sulfanilic acid.
  5. 12
    Process according to claims 5-6 characterised in that a membrane is treated with a solution comprising a hydroxyalkylcellulose and/or a polyvinylalcohol in the presence of an inorganic acid, preferably sulphuric acid, as catalyst, optionally a cross-linking agent selected among polyols, such as sugars, e.g. gluconic acid or sorbitol, inositol, pentaerythrite, aromatic hydroxycompounds, e.g. 2,5-dihydroxybensene sulfonic acid or 4,5 dihydroxy-1,3-benzenedisulfonic acid, polyoxyethylene sorbitane esters, polyfunctional acids, such as polyacrylic acid, polyfunctional esters, such as dimethyltartrate and diethyltartrate, and polyfunctional, unsaturated compounds, such as triallyl-1,3,5-triazine-2,4,6-trione, as well as a peroxide compound as initiator if required.
  6. 13
    Process according to claims 5-6 and 12 characterised in that a polysulfone, a PVDF-, CTFE/VF- or a PVDF-CTFE/VF-membrane is treated with a solution comprising a hydroxyalkylcellulose and/or a polyvinylalcohol in the presence of an inorganic acid, preferably sulphuric acid, as catalyst, optionally a cross-linking agent selected among polyols, such as sugars, e.g. gluconic acid or sorbitol, inositol, pentaerythrite, aromatic hydroxycompounds, e.g. 2,5-dihydroxybenzene sulfonic acid or 4,5 dihydroxy-1,3-benzenedisulfonic acid, polyoxyethylene sorbitane esters, polyfunctional acids, such as polyacrylic acid, polyfunctional esters, such as dimethyltartrate and diethyltartrate, and polyfunctional, unsaturated compounds, such as triallyl-1,3,5-triazine-2,4,6-trione, as well as a peroxide compound as initiator if required.