Nova Patents
EP1549890B1

Pervaporatively cooled containers

Abstract

Disclosed are beverage and liquid containers that use pervaporation to cool a liquid or material residing in the container. The pervaporative cooling is preferably achieved by use of porous matrices (e.g. 520 in Fig.5) which allow for the passage through the matrix of small quantities of volatile components from a liquid or beverage, such as water or alcohol, the evaporation of which cools the container by virtue of the latent heat of evaporation of the liquid. Alternatively, a pervaporative sleeve (e.g. 533 in Fig.7) may be used to cool a container residing within or in contact with the sleeve.

EP1549890B1, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Expired 3 June 2023, 3.3 years ago.

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

13 claims: 1 independent, 12 dependent

  1. 1
    A pervaporatively cooled container, comprising:a container body comprising one or more walls;wherein at least a portion of said one or more walls comprises a pervaporative matrix (503), said matrix comprising a porous hydrophobic material, wherein said matrix allows for the passage of small quantities of molecules of a volatile liquid vapor through the matrix, the evaporation of which cools the container, and an outer layer (505) directly adjacent to at least a portion of the container body, being characterised in that said layer comprises a desiccant or an absorbent material that absorbs moisture or other fluid resulting from pervaporation whereby the said outer layer (505) is disposable or separately regenerable such as by drying in on oven
  2. 2
    A pervaporatively cooled container according to Claim 1, wherein the matrix further comprises a thin hydrophobic or oleophobic porous material laminated to or deposited on the porous hydrophobic material.
  3. 3
    A pervaporatively cooled container according to Claim 2, wherein the matrix is oriented on the container body such that the layer of porous hydrophobic material faces the interior of the container.
  4. 4
    A pervaporatively cooled container according to Claim 1, wherein at least 10% of the surface of the one or more walls comprise said matrix.
  5. 5
    A pervaporatively cooled container according to Claim 1, further comprising a base (502) attached to said one or more walls.
  6. 6
    A pervaporatively cooled container according to Claim 1, wherein the matrix comprises an inner layer comprising a highly hydrophobic porous material placed between two outer layers of porous hydrophobic material.
  7. 7
    A pervaporatively cooled container according to Claim 6, wherein the inner layer has a pore size and thickness less than that of the outer layers.
  8. 8
    A pervaporatively cooled container according to Claim 6, wherein the inner layer comprises PTFE and the outer layer comprises polyethylene.
  9. 9
    A pervaporatively cooled container according to Claim 1, wherein the container further comprises a plurality of support ribs (508,514).
  10. 11
    A pervaporatively cooled container according to Claim 1, further comprising an insulating sleeve (518) surrounding at least a portion of the one or more walls.
  11. 12
    A pervaporatively cooled container according to Claim 11, wherein the insulating sleeve (518) comprises a porous material.
  12. 13
    A pervaporatively cooled container according to Claim 11, wherein the insulating sleeve (518) is generally tubular and has one or more openings in the wall thereof, whereby the sleeve may be rotated about the container to selectively cover or expose portions of said pervaporative matrix.