IP Library Granted Patent US 11,247,916
Granted Patent B2
US 11,247,916 · App. 16/442,456 · Granted Feb 15, 2022

Waste separation system

Inventors: Stuart Lee Sebright (Allegan, MI); Dean Daniel Banas (Wayland, MI); Benjamin Warren Dietz (Allegan, MI); Douglas Gene Sebright (Allegan, MI)
Assignee: Sebright Products, Inc.
C02F1/26B02C23/10C02F1/004C02F1/006C02F2103/02C02F2201/005C02F2209/01C02F2209/02C02F2209/03C02F2209/06C02F2209/08C02F2209/29C02F2209/36C02F2209/42C02F2301/046C02F2303/24
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Quick Facts
Patent No.
US 11,247,916
App. No.
16/442,456
Granted
Feb 15, 2022
Kind
B2
Abstract

The disclosure relates to a system for separating waste. The waste separating system includes a compacting assembly, a liquid diverting assembly, and a controller configured to control aspects of the compacting assembly and the liquid diverting assembly. The waste separating system can divert waste liquid from a manufacturing assembly to a liquid diverting assembly, where a controller is configured to selectively control a flow of the waste liquid to a drain or to a storage tank.

Claims (28)

1. A waste separating system comprising:

a compression chamber that receives solid waste and liquid waste,

a liquid waste tank or a liquid waste conduit having an exit valve, wherein the liquid waste tank or the liquid waste conduit is fluidly coupled to the compression chamber for receiving at least a portion of the liquid waste from the compression chamber,

at least one fluid sensor in the liquid waste tank or the liquid waste conduit configured to measure an amount of liquid in the liquid waste tank or the liquid waste conduit,

a liquid diverting assembly in fluid communication with the exit valve of the liquid waste tank or the liquid waste conduit, the liquid diverting assembly including a pump, at least one waste liquid sensor, and a multi-directional valve, and

a controller connected to the exit valve, the least one fluid sensor, the least one waste liquid sensor, and the multi-directional valve,

wherein the controller is configured to actuate the exit valve and the pump and to position the multi-directional valve based on measurements from the least one fluid sensor and the least one waste liquid sensor.

2. The waste separating system of claim 1 further comprising a compacting assembly including the compression chamber and a compression assembly wherein the liquid waste tank or the liquid waste conduit is part of the compacting assembly and the compression assembly is connected to the controller.

3. The waste separating system of claim 2 further comprising a waste sensor in the compression chamber connected to the controller, wherein the controller is further configured to operate the compression assembly based on data from the waste sensor.

4. The waste separating system of claim 2 wherein the compression chamber is in fluid communication with the liquid waste tank or the liquid waste conduit by way of liquid waste ports.

5. The waste separating system of claim 1 further comprising a filter in one of a liquid waste tank or a liquid waste conduit.

6. The waste separating system of claim 1 wherein the multi-directional valve is a three position valve operable between a closed position, a first position where the multi-directional valve is in fluid communication with a drain, and a second position where the multi-directional valve is in fluid communication with a storage tank.

7. The waste separating system of claim 6 further comprising at least one storage tank sensor in the storage tank connected to the controller wherein the controller is further configured to operate the liquid diverting assembly based on data from the at least one storage tank sensor.

8. The waste separating system of claim 7 wherein the at least one storage tank sensor is one of a liquid level sensor, an optical sensor, a pH sensor, a pressure sensor, a temperature sensor, or a flow meter.

9. The waste separating system of claim 1 wherein the least one fluid sensor is one of a liquid level sensor, an optical sensor, a pH sensor, a pressure sensor, a temperature sensor, or a flow meter.

10. The waste separating system of claim 1 wherein the least one waste liquid sensor is one of a flow-meter, a BRIX meter or other refractometer, a hydrometer, a temperature sensor, or a pressure sensor.

11. A method of separating liquid waste comprising;

compressing in a compression chamber solid waste and liquid waste,

directing the liquid waste to at least one of a liquid waste tank or a liquid waste conduit,

opening an exit valve to direct the liquid waste from the at least one of the liquid waste tank or the liquid waste conduit to a liquid diverting assembly in fluid communication with the exit valve,

measuring a value of the liquid waste by at least one liquid waste sensor in the liquid diverting assembly, wherein the at least one liquid waste sensor is downstream of the exit valve,

comparing in a controller at least one measurement from the liquid waste sensor to a preset value, and

positioning a multi-directional valve, in the liquid diverting assembly downstream of the at least one liquid waste sensor, based on the comparison wherein liquid waste is directed to flow to one of a drain or a storage tank.

12. The method of claim 11 further comprising repeating the comparing and positioning steps.

13. The method of claim 11 wherein the measuring step includes obtaining at least one of biochemical oxygen demand (BOD) level, a sugar level (BRIX), a relative density of the liquid waste, a fluid spectrum analysis, a pH level, an amount of oil in water, a bacteria level, a lead level, a presence of level of pesticide, a nitrites/nitrates level, or a chlorine level.

14. The method of claim 11 further comprising positioning more than one multi-directional valve and wherein the at least one liquid waste sensor is configured to measure more than one parameter of the liquid waste.

15. The waste separating system of claim 5 further comprising a filter sensor associated with the filter wherein the filter sensor is connected to the controller.

16. The waste separating system of claim 5 further comprising a second filter between the exit valve and the pump.

Assignments (2)
SECURITY INTEREST Recorded Mar 31, 2025
From: SEBRIGHT PRODUCTS, INC.
To: COMERICA BANK
Reel/Frame 070680/0140 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2021
From: SEBRIGHT, DOUGLAS GENE; SEBRIGHT, STUART LEE; BANAS, DEAN DANIEL; DIETZ, BENJAMIN WARREN
To: SEBRIGHT PRODUCTS, INC.
Reel/Frame 058019/0514 →
Continuity (2)
Provisional Application 62685492 · Jun 15, 2018
Related Publication 20190382285A1 · Dec 19, 2019