IP Library Granted Patent US 10,258,056
Granted Patent B2
US 10,258,056 · App. 15/245,926 · Granted Apr 16, 2019

Filtration system

Inventors: Robert Scott Fassel (Naches, WA); Scott Aaron Christie (Yakima, CA)
Assignee: PACE INTERNATIONAL, LLC
A23B7/152A01N43/54A23B7/00A23B7/153A23L3/00A23L3/3445B01D46/00B01D46/002B01D46/0023B01D46/10B01D46/521B01D50/00A23V2002/00B01D2267/30B01D2279/35
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Quick Facts
Patent No.
US 10,258,056
App. No.
15/245,926
Granted
Apr 16, 2019
Kind
B2
Abstract

A filtration system is arranged to safely vent a storage room into which a fog mixture is introduced. Venting the storage room reduces and/or prevents a substantial increase in the internal pressure of the storage room. To control the pressure differential between the storage room and the ambient air pressure, a venting manifold with an in-line duct fan is used, for example, to exhaust storage room air into the atmosphere. The exhausted storage room air is filtered to reduce the exfiltration of chemicals and/or other contaminants from the environmentally sealed storage room.

Claims (16)

1. A method for filtration, comprising:

arranging fruits in a substantially closed room having a volume of air;

introducing post-harvest chemicals, and optionally, additional treatment substances, into an airstream with a thermo-fogger gun to generate air-borne treatment substances at a rate of up to 80 cubic feet per minute;

introducing the airstream and the air-borne treatment substances into the volume of air of the substantially closed room to generate the dispersed air-borne substances;

creating with a first fan a pressure between −0.25 and 0 inches water column upon a bank of at least six high particle-rated pleated fiber filters

inducing an exhaust air current that flows from the substantially closed room into an exhaust port of the substantially closed room, wherein the exhaust air current includes the air-borne substances from the exhaust port and the filter bank captures at least around 95 percent of the air-borne treatment substances; and

controlling the pressure of the substantially closed room by selectively varying the relative speed of the first fan and a second fan on the thermo-fogger gun.

2. The method of claim 1 , wherein ambient air is used as input to the thermo-fogger gun.

3. A method for filtration, comprising:

arranging vegetables in a substantially closed room having a volume of air;

introducing post-harvest chemicals, and optionally, additional treatment substances, into an airstream with a thermo-fogger gun to generate air-borne treatment substances at a rate of up to 80 cubic feet per minute;

introducing the airstream and the air-borne treatment substances into the volume of air of the substantially closed room to generate the dispersed air-borne substances;

creating with a first fan a pressure between −0.25 and 0 inches water column upon a bank of at least six high particle-rated pleated fiber filters; and

inducing an exhaust air current that flows from the substantially closed room into an exhaust port of the substantially closed room, wherein the exhaust air current includes the air-borne substances from the exhaust port and the filter bank captures at least around 95 percent of the air-borne treatment substances; and

controlling the pressure of the substantially closed room by selectively varying the relative speed of the first fan and a second fan on the thermo-fogger gun.

4. The method of claim 3 , wherein ambient air is used as input to the thermo-fogger gun.

Assignments (1)
SECURITY INTEREST Recorded Jun 14, 2024
From: PACE INTERNATIONAL, LLC
To: ALTER DOMUS (US) LLC, AS ADMINISTRATIVE AGENT
Reel/Frame 067730/0292 →
Continuity (4)
Continuation 15223414 · Jul 29, 2016
Continuation 14863728 · Sep 24, 2015
Continuation 13566936 · Aug 3, 2012
Related Publication 20170049118A1 · Feb 23, 2017