EP0348532B1

Process for processing silver halide photographic material.

Abstract

This record has no abstract on file.

EP0348532B1, drawing sheet 1
Sheet 1 of 216

Term

Term ended

Expired 6 January 2009, 17.7 years ago.

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

9 claims: 1 independent, 8 dependent

  1. 1
    A method for processing silver halide photographic light-sensitive materials which comprises developing a silver halide photographic light-sensitive material composed of a substrate provided thereon with at least one light-sensitive silver halide emulsion layer containing silver iodide and then processing the material with a processing solution having fixing ability, characterized in that the processing with the processing solution having fixing ability is performed while a part or whole of the processing solution having fixing ability is brought into contact with a basic anion-exchange resin represented by the following general formula (VIII) and that 20 to 2,000 ℓ of the processing solution having fixing ability per liter of the anion-exchange resin is brought into contact with the resin:wherein A represents a polymer unit obtained by copolymerizing copolymerizable monomers having at least two copolymerizable ethylenically unsaturated groups at least one of which is included in the side chain;B represents a polymer unit obtained by copolymerizing copolymerizable ethylenically unsaturated monomers;R₁₃ represents a hydrogen atom or a lower alkyl or aralkyl group;Q represents a single bond or an alkylene, phenylene or aralkylene group or a group -CO-O-L-, -CO-NH-L- or -CO-NR-L- (wherein L is an alkylene, arylene or aralkylene group and R is an alkyl group);G represents wherein R₁₄ to R₁₆ may be the same or different and each represents a hydrogen atom or an alkyl, aryl or aralkyl group which may be substituted, the total number of carbon atoms of R₁₄, R₁₅ and R₁₆ is not less than 12, and X ⊖ represents an anion, at least two groups selected from Q, R₁₄, R₁₅ and R₁₆ may be bonded to form a ring structure together with the nitrogen atom, and x, y and z represent molar percentages, x ranges from 0 to 60, y from 0 to 60 and z from 30 to 100.