IP Library Granted Patent US 10,519,408
Granted Patent B2
US 10,519,408 · App. 16/116,454 · Granted Dec 31, 2019

Process for optimizing the operation of a plug-flow fermenter for the anaerobic fermentation of organic wastes

Inventors: Adrian Schatz (Niederwangen, CH); Marc Eugster (Dállikon, CH)
Assignee: HITACHI ZOSEN INOVA AG
C12M1/02C12M21/04C12M23/02C12M27/06C12M29/02C12M41/12C12M41/42C12M41/44C12M41/48C02F3/28C02F2209/00C12M21/16
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Quick Facts
Patent No.
US 10,519,408
App. No.
16/116,454
Granted
Dec 31, 2019
Kind
B2
Abstract

A process for optimizing the operation of a plug-flow fermenter for the anaerobic fermentation of organic wastes, wherein the plug-flow fermenter comprises a horizontally oriented fermenter tank and a stirrer, which stirrer comprises a stirrer shaft which traverses the interior of the fermenter tank in an axial manner and multiple paddles which are arranged on the stirrer shaft and protrude radially and also a drive, and the fermentation material is moved in the fermenter tank by means of the stirrer.

Claims (24)

1. A process for optimizing the operation of a plug-flow fermenter for an anaerobic fermentation of organic wastes, wherein the plug-flow fermenter comprises a horizontally oriented fermenter tank and a stirrer, which stirrer comprises a stirrer shaft which traverses the interior of the fermenter tank in an axial manner and multiple paddles which are arranged on the stirrer shaft and protrude radially and also a drive, and fermentation material is moved in the fermenter tank by means of the stirrer, wherein

a) at least one parameter characteristic of a particular operating state of the plug-flow fermenter is measured,

b) a particular measurement value A actual obtained in a) is compared with a predefined nominal value A nominal , and

c) depending on a deviation of the measurement value A actual from the nominal value A nominal , a rotational speed of the stirrer shaft, a rotational direction of the stirrer shaft and/or a dry-substance portion of the fermentation material is adjusted.

2. The process as claimed in claim 1 , wherein the adjustment of the dry-substance portion of the fermentation material is done via an amount of wetting agent introduced into the fermenter tank.

3. The process as claimed in claim 1 , wherein the rotational speed of the stirrer shaft, the rotational direction of the stirrer shaft and/or the dry-substance portion of the fermentation material is regulated in step c) depending on the deviation of the measurement value A actual from the nominal value A nominal .

4. The process as claimed in claim 1 , wherein a range within which the rotational speed of the stirrer shaft is adjusted is between 0 and 10 revolutions per minute.

5. The process as claimed in claim 1 , wherein the dry-substance portion of the fermentation material is within a range between 5 to 99%.

6. The process as claimed in claim 1 , wherein at least one of the following parameters A1) to A4) is measured in step a):

A1: the torque and/or the power of the drive;

A2: at least one temperature present in the fermenter tank;

A3: the flow rate and/or the composition of the fermentation material at at least one point in the fermenter tank; and/or

A4: the composition and/or the amount of gas generated by the anaerobic fermentation.

7. The process as claimed in claim 6 , wherein parameter A1 is measured in step a) and in the following order

if the measurement value A1 actual , as obtained in step a), of the torque or the power is higher than a predefined maximum value A1 max , the rotational speed is reduced,

the torque or the power is measured at reduced rotational speed and

if the value A1 actual,red , measured at reduced rotational speed, is still higher than A1 max ,

the torque or the power is further reduced, whereupon the measurement of the torque or the power at further reduced rotational speed and the subsequently performed further reduction of the rotational speed are repeated at least once, or multiple times, as desired and/or

the rotational direction of the stirrer shaft is changed.

8. The process as claimed in claim 7 , wherein, subsequent to the change in the rotational direction of the stirrer shaft, the rotational direction is changed after a period t.

9. The process as claimed in claim 6 , wherein, if the measurement value A1 actual , as obtained in step a), of the torque or the power is lower than a predefined minimum value A1 min , the rotational speed is reduced and the reduced rotational speed is maintained so long as the measurement value A1 actual is lower than A1 min .

10. A plug-flow fermenter for an anaerobic fermentation of organic wastes, wherein the plug-flow fermenter comprises a horizontally oriented fermenter tank and a stirrer, which stirrer comprises a stirrer shaft which traverses the interior of the fermenter tank and multiple paddles which are arranged on the stirrer shaft and protrude radially and also a drive and which stirrer is suited to moving fermentation material in the fermenter tank, wherein the plug-flow fermenter additionally comprises at least one measurement mechanism for the determination of at least one parameter characteristic of a particular operating state of the plug-flow fermenter as well as a regulator designed to adjust a rotational speed of the stirrer shaft, a rotational direction of the stirrer shaft and/or a dry-substance portion of the fermentation material on the basis of the measurement value obtained or a deviation of the measurement value from a predefined nominal value.

11. The plug-flow fermenter as claimed in claim 10 , wherein the regulator is present in the form of or as part of a regulation unit designed to regulate the rotational speed of the stirrer shaft, the rotational direction of the stirrer shaft and/or the dry-substance portion of the fermentation material on the basis of the measurement value obtained or the deviation of the measurement value from the nominal value.

12. The plug-flow fermenter as claimed in claim 10 , wherein the drive is a motor, more particularly an asynchronous motor, to which a frequency converter has been assigned.

Assignments (2)
CHANGE OF NAME Recorded Dec 13, 2024
From: HITACHI ZOSEN INOVA AG
To: KANADEVIA INOVA AG
Reel/Frame 069580/0109 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2018
From: SCHATZ, ADRIAN; EUGSTER, MARC
To: HITACHI ZOSEN INOVA AG
Reel/Frame 046743/0290 →
Priority Claims (1)
EP 17188374 · Aug 29, 2017 · regional
Continuity (1)
Related Publication 20190062682A1 · Feb 28, 2019