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Process for producing acrylonitrile polymers
| Details |
Inventors: Tamura, Hitoshi;
Assignee: Mitsubishi Rayon Co., Ltd. (Tokyo, JA)
Primary Examiner: Wong, Jr.; Harry
Assistant Examiner:
Attorney, Agent or Firm: Oblon, Fisher, Spivak, McClelland & Maier
Acrylonitrile polymers of improved whiteness and thermal stability are provided by polymerizing acrylonitrile alone or with a comonomer in an aqueous medium, in the presence of a water-insoluble mercaptan, together with a redox catalyst comprising sulfurous acid or a salt thereof and nitrous acid or a salt thereof. |
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DETAILED DESCRIPTION What is claimed as new and intended to be secured by Letters patent of the United States is: 1. The acrylonitrile homopolymer or copolymer prepared by the process which comprises polymerizing acrylonitrile or a mixture comprising at least 85% by weight of acrylonitrile and at most 15% by weight of other copolymerizable monoethylenically unsaturated compounds in an aqueous medium at 30. degree. C to 70. degree. C at a pH of 1. 5 - 5. 0, wherein the monomer to water ratio is 1/10 to 1/3, in contact with a redox catalyst comprising nitrous acid or a salt thereof and sulfurous acid or salt thereof, wherein the ratio of said nitrous acid or salt to said sulfurous acid or salt thereof is 1/30 to 1/3 by weight, and the sulfurous acid or salt thereof is present in an amount of 1/10,000 to 1/50 by weight, based on the amount of water in the aqueous medium, and further in contact with 0. 005%-5% by weight based on the weight of monomer of a water insoluble mercaptan selected from the group consisting of alkyl mercaptans containing at least 4 carbon atoms and mercaptan carboxylate acid ester. 2. The acrylonitrile homopolymer or copolymer of claim 1, wherein said sulfurous acid salt is selected from the group consisting of sulfites, bisulfites and metabisulfites.
Description:
BACKGROUND OF THE INVENTION 1. Field of the Invention This invention relates to a process of polymerizing or copolymerizing acrylonitrile in an aqueous medium in the presence of a redox catalyst to produce an acrylonitrile homopolymer or copolymer of improved whiteness and thermal stability. A catalyst combination of an oxidizing agent and a reducing agent, i. e. , a redox catalyst, is widely used for polymerizing in an aqueous medium acrylonitrile or copolymerizing acrylonitrile with another copolymerizable monoethylenically unsaturated compounds. However, the acrylonitrile polymers and copolymers prepared by the polymerization in an aqueous medium in the presence of a redox catalyst are not always satisfactory because they are frequently characterized by poor whiteness and poor thermal stability
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