IP Library Granted Patent US 7,020,980
Granted Patent B1
US 7,020,980 · App. 10/751,304 · Granted Apr 4, 2006

Vacuum treatment of waste stream with anti-incrustation measures

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Quick Facts
Patent No.
US 7,020,980
App. No.
10/751,304
Granted
Apr 4, 2006
Kind
B1
Abstract

A method of treating a waste stream comprises a vacuum treatment to promote disintegration of the waste material by “flash vapor” production, causing a swiftly vaporizing fraction inside the material to literally explode or shred apart the matrix of the material as a whole. A main processor operates at a level of vacuum that determines a given boiling temperature for a vaporizing fraction, and one which lower than the fraction's boiling temperature for the local vicinity's barometric pressure (eg., atmospheric pressure). The input stream is pre-heated to above the given boiling temperature for that fraction as determined by the main processor's vacuum level without, however, going over the boiling temperature for the local barometric pressure. It is then introduced into the vacuum of the main processor whereby a minor percentage of the vaporizing fraction flashes into vapor, and this presumptively promotes destruction and/or disintegration of the material.

Claims (23)

1. A method for treating a waste stream for reduction in part to a solid particulate fraction that is suitable for bulk freighting to remote and widely distributed destinations, comprising the steps of:

supplying a raw waste stream inclusive of natural fatty acids and/or natural oils or fats;

providing a main processor that operates at a level of vacuum;

at a relatively elevated pressure, pre-heating the waste stream in order to elevate the mean bulk temperature to above what corresponds to a boiling temperature at the main processor's vacuum level for one of the natural fatty acids and/or natural oils or fats without boiling said one away;

introducing the pre-heated waste stream into the main processor whereby a fractional percentage of said one of natural fatty acid and/or natural oil or fat flashes into vapor, this presumptively promoting the waste stream for disintegrating into a solid particulate fraction suitable for bulk freighting;

providing the main processor with a throughput of a hot pneumatic carrier for syphoning up and suspending particles of the solid particulate fraction from out of the disintegrating waste stream;

providing a vacuum source connected to a vacuum port in the main processor to suction out a pneumatic stream comprising the pneumatic carrier, vapors, and suspension particles; and

further comprising a separation process between the vacuum source and the vacuum port of the main processor to separate the pneumatic stream into one component or set of components comprising substantially particulate matter as well as into another component or set of components comprising variously the pneumatic carrier, vapors and perhaps ultra-fine particulate matter.

2. A method for treating a waste stream for reduction in part to a solid particulate fraction that is suitable for bulk freighting to remote and widely distributed destinations, comprising the steps of:

supplying a raw waste stream inclusive of natural fatty acids and/or natural oils or fats;

providing a main processor that operates at a level of vacuum;

at a relatively elevated pressure, pre-heating the waste stream in order to elevate the mean bulk temperature to above what corresponds to a boiling temperature at the main processor's vacuum level for one of the natural fatty acids and/or natural oils or fats without boiling said one away;

introducing the pre-heated waste stream into the main processor whereby a fractional percentage of said one of natural fatty acid and/or natural oil or fat flashes into vapor, this presumptively promoting the waste stream for disintegrating into a solid particulate fraction suitable for bulk freighting; and

further providing the main processor with a throughput of a hot pneumatic carrier for syphoning up and suspending particles of the solid particulate fraction from out of the disintegrating waste stream;

wherein the hot pneumatic carrier comprises a hot dry clean gas including hot air or hot flue/exhaust gases from a combustion process.

3. The method of claim 2 further comprising a vacuum source connected to a vacuum port in the main processor to suction out a pneumatic stream comprising the pneumatic carrier, vapors, and suspension particles.

4. The method of claim 3 further comprising a separation process between the vacuum source and the vacuum port of the main processor to separate the pneumatic stream into one component or set of components and another component or set of components, wherein said one component or set of components comprises substantially particle matter as said other component or set of components comprises variously the pneumatic carrier, vapors and perhaps ultra-fine particulate matter.

5. The method of claim 1 wherein the hot pneumatic carrier comprises a hot dry clean gas including hot air or, alternatively, hot flue/exhaust gases from a combustion process.

6. The method of claim 2 wherein the level of vacuum inside the main processor is preferably achieved down to or below essentially ⅔ rds an atmosphere.

7. The method of claim 6 wherein the level of pressure with the pre-heating process comprises generally the local barometric pressure of the geographic vicinity where said method is being carried out.

8. The method of claim 2 wherein and said pre-heated waste stream is introduced into the main processor at a mean bulk temperature measuring over 135° C.

9. The method of claim 1 wherein the level of vacuum inside the main processor is preferably achieved down to or below essentially ⅔ rds an atmosphere as the relatively elevated pressure of the pre-heating process comprises generally the local barometric pressure of the geographic vicinity where said method is being carried out.

10. The method of claim 1 wherein said pre-heated waste stream is introduced into the main processor at a bulk temperature measuring over 135° C.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2009
From: MACRONICS, L.L.C.
To: NEW LIFE RESOURCES, L.L.C.
Reel/Frame 022868/0562 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2008
From: MICRONICS, L.L.C.
To: MACRONICS, L.L.C.
Reel/Frame 021158/0101 →
RELEASE OF SECURITY INTEREST Recorded Apr 21, 2008
From: NOKIA CORPORATION
To: GLOOLABS, INC.
Reel/Frame 020834/0181 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2004
From: ADAMS, RANDALL G.; FRANKLIN, MARSHALL R.
To: MICRONICS, L.L.C.
Reel/Frame 015455/0289 →
SECURITY AGREEMENT Recorded Apr 21, 2004
From: GLOOLABS, INC.
To: NOKIA CORPORATION
Reel/Frame 015229/0701 →