IP Library Granted Patent US 8,609,171
Granted Patent B2
US 8,609,171 · App. 12/705,446 · Granted Dec 17, 2013

Circumferential pasteurizer

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Quick Facts
Patent No.
US 8,609,171
App. No.
12/705,446
Granted
Dec 17, 2013
Kind
B2
Abstract

Circumferential pasteurizers and related methods are disclosed. A circumferential pasteurizer includes a vessel having an inner guide surface, a thermal medium inlet disposed on a first side of the vessel, a thermal medium outlet disposed on a second side of the vessel, a food product inlet disposed on the second side of the vessel, a food outlet disposed on the first side of the vessel, and a rotating paddle wheel suspended for rotation in the vessel. The paddle wheel includes a hub and a plurality of paddles distributed around the hub and extending outwardly therefrom to adjacent the vessel inner guide surface to form food receiving pockets extending the length of the hub. The paddle wheel conveys the food product from the food product inlet to the food product outlet along the vessel inner guide surface and counter to the flow of the thermal medium.

Claims (47)

1. A circumferential pasteurizer comprising:

a generally cylindrical vessel having an inner guide surface and configured to contain a thermal medium;

a thermal medium inlet disposed on a first radial side of the vessel to inlet the thermal medium;

a thermal medium outlet disposed on a second radial side of the vessel diametrically opposite the first radial side to outlet the thermal medium;

a food product inlet disposed on the second radial side of the vessel to introduce a food product to be pasteurized;

a food product outlet disposed on the first radial side of the vessel to remove the food product after pasteurization; and

a rotating paddle wheel suspended for rotation in the vessel through the thermal medium, the paddle wheel comprising

a hub, and

a plurality of paddles distributed around the hub and extending outwardly therefrom to adjacent the vessel inner guide surface to form food receiving pockets extending an axial length of the vessel to convey the food product in a circumferential direction from the food product inlet to the food product outlet along the vessel inner guide surface and counter to a flow of the thermal medium in an opposite circumferential direction from the thermal medium inlet to the thermal medium outlet,

wherein both the food product and the thermal medium are axially bound by the axial length of the vessel for the duration of the food product being conveyed from the food product inlet to the food product outlet and for the duration of the flow of the thermal medium from the thermal medium inlet to the thermal medium outlet, respectively, such that the conveyance of the food product is generally in the circumferential direction only, and such that the flow of the thermal medium is generally in the opposite circumferential direction only.

2. The circumferential pasteurizer of claim 1 , wherein the vessel inner guide surface comprises a cylindrical surface.

3. The circumferential pasteurizer of claim 1 , further comprising a fluid circuit in fluid communication with the thermal medium inlet and the thermal medium outlet to re-circulate the thermal medium from the outlet to the inlet.

4. The circumferential pasteurizer of claim 3 , wherein the fluid circuit comprises:

a pump;

a filter; and

a heat exchanger to add heat to the thermal medium.

5. The circumferential pasteurizer of claim 3 , wherein the thermal medium inlet is configured to distribute the introduction of the thermal medium along the length of the vessel and the thermal medium outlet is configured to distribute the outlet of the thermal medium along the length of the vessel.

6. The circumferential pasteurizer of claim 5 , wherein the fluid circuit further comprises:

an inlet manifold in direct fluid communication with the thermal medium inlet; and

an outlet manifold in direct fluid communication with the thermal medium outlet.

7. The circumferential pasteurizer of claim 1 , wherein each of the paddles comprises a plurality of apertures configured for the thermal medium to flow therein.

8. The circumferential pasteurizer of claim 1 , wherein each of the paddles comprises a plurality of outwardly extending members distributed along the length of the vessel separated by intermediate spaces.

9. The circumferential pasteurizer of claim 8 , further comprising an extraction comb coupled with the vessel and disposed adjacent the food outlet, the extraction comb comprising a plurality of elongated curved members configured to pass through the intermediate spaces of the paddles as the paddle wheel rotates to extract the food product from the food receiving pockets.

10. The circumferential pasteurizer of claim 1 , further comprising:

a food inlet chute communicating with the food product inlet; and

a food outlet chute communicating with the food product outlet.

11. The circumferential pasteurizer of claim 10 , further comprising an inlet gate coupled with the food inlet chute to control the introduction of the food product through the food product inlet.

12. The circumferential pasteurizer of claim 1 , further comprising an in-feed conveyor communicating with the food product inlet.

13. The circumferential pasteurizer of claim 10 , further comprising an outlet gate coupled with the food outlet chute and configured to inhibit heat escape.

14. The circumferential pasteurizer of claim 10 , further comprising a drive mechanism operatively coupled with the rotating paddle wheel and configured to intermittently rotate the paddle wheel through an angle corresponding to the distribution of the paddles around the hub to position one of the paddles to receive food product introduced through the food product inlet and to position one of the paddles to discharge food product through the food product outlet.

15. The circumferential pasteurizer of claim 14 , wherein the paddles are oriented to align with the inlet chute when receiving the food product and align with the outlet chute when discharging the food product.

16. The circumferential pasteurizer of claim 14 , wherein the drive mechanism comprises a ratchet to intermittently rotate the paddle wheel.

17. The circumferential pasteurizer of claim 14 , further comprising an in-feed conveyor communicating with the food product inlet and configured to introduce the food product in timed coordination with the intermittent rotation of the paddle wheel.

18. A method for pasteurizing a food product, the method comprising:

introducing a thermal medium into a thermal medium inlet disposed on a first radial side of a generally cylindrical vessel having an inner guide surface;

removing the thermal medium from the vessel at a thermal medium outlet disposed on a second radial side of the vessel diametrically opposite the first radial side;

introducing a food product into a food product inlet disposed on the second radial side of the vessel;

pasteurizing the food product by moving the food product through the vessel along an inner guide surface of the vessel by using a rotating paddle wheel suspended for rotation in the vessel through the thermal medium, the paddle wheel comprising:

a hub, and

a plurality of paddles distributed around the hub and extending outwardly therefrom to adjacent the vessel inner guide surface to form food receiving pockets extending an axial length of the vessel,

wherein moving the food product through the vessel comprises conveying the food product, with the paddles, in a circumferential direction from the food product inlet to a food product outlet, disposed on the first radial side of the vessel, along the vessel inner guide surface and counter to a flow of the thermal medium in an opposite circumferential direction from the thermal medium inlet to the thermal medium outlet,

wherein both the food product and the thermal medium are axially bound by the axial length of the vessel for the duration of the food product being conveyed from the food product inlet to the food product outlet and for the duration of the flow of the thermal medium from the thermal medium inlet to the thermal medium outlet, respectively, such that the conveyance of the food product is generally in the circumferential direction only, and such that the flow of the thermal medium is generally in the opposite circumferential direction only; and

removing the food product from the vessel at the food product outlet.

19. The method of claim 18 , further comprising re-circulating the thermal medium through a fluid circuit from the thermal medium outlet to the thermal medium inlet.

20. The method of claim 19 , further comprising:

filtering the thermal medium prior to introduction at the thermal medium inlet; and

heating the thermal medium prior to introduction at the thermal medium inlet.

Assignments (6)
RELEASE OF SECURITY INTEREST Recorded Apr 28, 2020
From: BANK OF AMERICA, N.A.
To: CHIQUITA BRANDS L.L.C.; FRESH EXPRESS INCORPORATED; TRANSFRESH CORPORATION
Reel/Frame 052519/0255 →
RELEASE OF SECURITY INTEREST Recorded Jul 19, 2016
From: CHIQUITA BRANDS INTERNATIONAL, INC.; CHIQUITA BRANDS L.L.C.; CHIQUITA FRESH NORTH AMERICA L.L.C.; FRESH INTERNATIONAL CORP.; FRESH EXPRESS INCORPORATED; TRANSFRESH CORPORATION; B C SYSTEMS, INC.; VERDELLI FARMS INC.; CB CONTAINERS, INC.; V.F. TRANSPORTATION, L.L.C.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 039389/0596 →
PATENT SECURITY AGREEMENT Recorded Feb 26, 2015
From: CHIQUITA BRANDS L.L.C.; FRESH EXPRESS INCORPORATED
To: BANK OF AMERICA, N.A.
Reel/Frame 035105/0335 →
RELEASE OF SECURITY INTEREST Recorded Feb 23, 2015
From: WELLS FARGO BANK, NATIONAL ASSOCIATION
To: FRESH EXPRESS INCORPORATED
Reel/Frame 035009/0721 →
RELEASE OF SECURITY INTEREST Recorded Feb 6, 2013
From: COOPERATIEVE CENTRALE RAIFFEISEN - BOERENLEENBANK B.A., RABOBANK NEDERLAND, NEW YORK BRANCH, AS COLLATERAL AGENT
To: CHIQUITA BRANDS L.L.C.; FRESH EXPRESS INCORPORATED
Reel/Frame 029762/0548 →
SECURITY AGREEMENT Recorded Feb 5, 2013
From: FRESH EXPRESS INCORPORATED
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS AGENT
Reel/Frame 029759/0581 →