EP1534779A1

Physical methods of dispersing characteristics use particles and compositions thereof

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 19 June 2023, 3.3 years ago.

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  5. Today

66 claims: 5 independent, 61 dependent

  1. 1
    Claims of equivalent WO 2004000927 A1 WHAT IS CLAIMED IS:1. A composition that is capable of being dispersed in a target medium, comprising characteristic use particles entrapped within a physical entrapment phase, wherein the physical entrapment phase is dispersible in the target medium.
  2. 18
    A process for manufacturing a composition that is capable of being dispersed in a target medium, comprising:A. mixing a physical entrapment phase precursor with a characteristic use particle in a processing medium in which the precursor is dispersible;B. converting the precursor into a physical entrapment phase which is not dispersible in said processing medium, thereby entrapping the characteristic use particle within the physical entrapment phase;and C. separating the physical entrapment phase having the characteristic use particles entrapped therein from the processing medium to obtain said composition.
  3. 32
    A product obtained according to the process of any one of claims 18, 23, and 27.
  4. 36
    A method of conferring a desired benefit to a target medium, comprising adding to a target medium a composition that is capable of being dispersed in the target medium, wherein said composition comprises characteristic use particles entrapped within a physical entrapment phase that is dispersible in the target medium, wherein said characteristic use particles confer the desired benefit to the target medium.
  5. 44
    A composition comprising A. a target medium;B. characteristic use particles dispersed within the target medium;and C. a physical entrapment phase dispersed within the target medium, wherein the composition has a grind gauge improvement of greater than or equal to 1 unit in comparison to the grind gauge for the composition without the physical entrapment phase.