IP Library Granted Patent US 9,096,822
Granted Patent B2
US 9,096,822 · App. 13/352,702 · Granted Aug 4, 2015

Device to produce biogas

Inventor: Karlgünter Eggersmann (Marienfeld, DE)
Assignee: Zero Waste Energy, LLC.
C12M21/04C12M21/16C12M29/02Y02E50/343
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Quick Facts
Patent No.
US 9,096,822
App. No.
13/352,702
Granted
Aug 4, 2015
Kind
B2
Abstract

A device to produce biogas that includes at least one fermenter ( 1 ) to receive a substrate ( 2 ) to be percolated, and a percolate container ( 3 ). The fermenter ( 1 ) and the percolate container ( 3 ) are connected with each other such that the percolate within the fermenter ( 1 ) seeping through the substrate ( 2 ) makes its way into the percolate container ( 3 ) which serves as a thermal reservoir, from which it may be directed back to the fermenter ( 1 ) as necessary. The percolate container ( 3 ) serving as a thermal reservoir and/or the sand trap which serves as a percolate collector ( 5 ) are located at least partially below the floor surface ( 1 a ) of the fermenter ( 1 ).

Claims (11)

1. A device for fermenting a substrate and for obtaining biogas from said fermented substrate, said device having at least one fermenter ( 1 ) for receiving a substrate ( 2 ) which is to be percolated during fermentation, as well as a percolate container ( 3 ) for recovering percolate, wherein the fermenter ( 1 ) and percolate container ( 3 ) are fluidly connected to one another so that the percolate seeping through the substrate ( 2 ) disposed on one side of a generally non-porous base surface ( 1 a ) in the fermenter ( 1 ) passes into the percolate container ( 3 ) and can be returned from there when necessary back again into the fermenter ( 1 ), wherein at least in part on a second side of the generally non-porous base surface ( 1 a ) of the fermenter ( 1 ) there is a heat reservoir in the form of the percolate container ( 3 ) and a percolate collecting device ( 5 ), characterised in that the percolate collecting device ( 5 ) is fluidly connected between the fermenter ( 1 ) and the percolate container ( 3 ) and is arranged underneath the generally non-porous base surface ( 1 a ) of the fermenter ( 1 ) and laterally adjacent said percolate container ( 3 ) and configured for cleaning percolate flowing from the fermenter ( 1 ), such that percolate flowing from the fermenter ( 1 ) first flows into the percolate collecting device ( 5 ) to be cleaned prior to said cleaned percolate flowing into the percolate container ( 3 ), and wherein said generally non-porous base surface ( 1 a ) forms a common heat exchange surface between at least the percolate container ( 3 ) and the fermenter ( 1 ).

2. The device according to claim 1 , characterised in that the percolate container ( 3 ) is provided underneath the fermenter ( 1 ) at least partially in the ground ( 4 ).

3. Device according to claim 1 , characterised in that the fermenter ( 1 ) has a generally non-porous base surface ( 1 a ) which is formed inclined in at least some sections so that percolate seeping through the substrate ( 2 ) disposed in the fermenter ( 1 ) can flow along said generally non-porous base surface ( 1 a ) in the direction of a collection region in a wall and/or corner of the fermenter.

4. The device according to claim 3 characterised in that the fermenter ( 1 ) has at least one outlet ( 1 b ) in said collection region for letting out the percolate collected from said fermenter ( 1 ) and into said collecting device ( 5 ).

5. The device according to claim 1 , characterised in that a number of fermenters ( 1 ) are provided which are arranged side by side and wherein a common percolate container ( 3 ) is provided disposed underneath said number of fermenters.

6. The device according to claim 5 , characterised in that partitions ( 3 a ) are provided in the common percolate container ( 3 ) and are arranged so that percolate entering into the common percolate container ( 3 ) at inlet ( 3 c ) is guided meandering through the percolate container ( 3 ) between the percolate inlet ( 3 c ) and a percolate outlet ( 3 b ).

7. The device according to claim 6 , characterised in that an outlet ( 1 b ) of each of the number of the fermenters ( 1 ) open into a common percolate collecting device ( 5 ) which extends along and under the number of fermenters ( 1 ) and has a collecting device outlet ( 5 a ) which opens into the percolate inlet ( 3 c ) of the percolate container ( 3 ).

8. The device according to claim 7 , characterised in that the device includes a number of modules wherein at least two modules have a fermenter ( 1 ), a percolate collecting device section ( 5 ′) and a percolate container section ( 3 ′), and wherein each fermenter ( 1 ) has an outlet ( 1 b ) opening into the associated percolate collecting device section ( 5 ′) of the associated fermenter ( 1 ).

9. The device according to claim 1 , characterised in that the percolate collecting device ( 5 ) is a sand trap.

10. The Device according to claim 1 wherein said percolate collecting device ( 5 ) and said percolate container ( 3 ) each include a biogas venting outlet ( 6 a , 6 b ).

11. A device for fermenting a substrate and for obtaining biogas from said fermented substrate, said device having at least one fermenter ( 1 ) for receiving a substrate ( 2 ) which is to be percolated during fermentation, as well as a percolate container ( 3 ) for recovering percolate, wherein the fermenter ( 1 ) and percolate container ( 3 ) are fluidly connected to one another so that the percolate seeping through the substrate ( 2 ) disposed on one side of a generally non-porous base surface ( 1 a ) in the fermenter ( 1 ) passes into the percolate container ( 3 ) and can be returned from there when necessary back again into the fermenter ( 1 ), wherein at least in part on a second side of the base surface ( 1 a ) of the fermenter ( 1 ) there is a heat reservoir in the form of the percolate container ( 3 ) and a percolate collecting device ( 5 ), characterised in that the generally non-porous base surface ( 1 a ) of the fermenter ( 1 ) is formed inclined in at least some sections so that percolate seeping through the substrate ( 1 ) disposed in the fermenter ( 1 ) can flow along said generally non-porous base surface ( 1 a ) in the direction of a collection region in a wall and/or corner of the fermenter and wherein the fermenter ( 1 ) has at least one outlet ( 1 b ) in said collection region, for letting out the percolate collected from said fermenter ( 1 ) and into said collecting device ( 5 ), wherein the percolate collecting device ( 5 ) is a sand trap and is fluidly connected between the fermenter ( 1 ) and the percolate container ( 3 ) and is arranged underneath the base surface ( 1 a ) of the fermenter ( 1 ) and laterally adjacent said percolate container ( 3 ) and configured for cleaning percolate flowing from the fermenter ( 1 ), such that percolate flowing from the fermenter ( 1 ) first flows into the percolate collecting device ( 5 ) to be cleaned prior to said cleaned percolate flowing into the percolate container ( 3 ), and wherein said base surface ( 1 a ) forms a common heat exchange surface between at least the percolate container ( 3 ) and the fermenter ( 1 ).

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2019
From: ZERO WASTE ENERGY, LLC
To: KOMPOFERM GMBH
Reel/Frame 048124/0816 →
RELEASE OF SECURITY INTEREST Recorded Jan 18, 2019
From: TRUE WEST CAPITAL PARTNERS FUND II, LP
To: ZERO WASTE ENERGY, LLC
Reel/Frame 048063/0417 →
SECURITY INTEREST Recorded Mar 26, 2018
From: ZERO WASTE ENERGY, LLC
To: TRUE WEST CAPITAL PARTNERS FUND II, LP
Reel/Frame 045353/0418 →
SECURITY INTEREST Recorded Aug 9, 2016
From: ZERO WASTE ENERGY, LLC
To: EGGERSMANN ANLAGENBAU KOMPOFERM GMBH
Reel/Frame 039381/0499 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2015
From: KOMPOFERM GMBH
To: ZERO WASTE ENERGY, LLC
Reel/Frame 035904/0529 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2012
From: EGGERSMANN, KARLGUNTER
To: KOMPOFERM GMBH
Reel/Frame 027561/0264 →
Continuity (1)
Related Publication 20130183752A1 · Jul 18, 2013