Methods and systems for sizing waste solids
11873240 ยท 2024-01-16
Assignee
Inventors
- David Hall (Provo, UT, US)
- Michael Hall (Provo, UT, US)
- Cody Rees (Provo, UT, US)
- Thomas Corie (Springville, UT, US)
- Nathan Davis (Bountiful, UT, US)
Cpc classification
B02C19/0056
PERFORMING OPERATIONS; TRANSPORTING
Y02W10/40
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B02C23/36
PERFORMING OPERATIONS; TRANSPORTING
B02C18/142
PERFORMING OPERATIONS; TRANSPORTING
B02C23/12
PERFORMING OPERATIONS; TRANSPORTING
B02C25/00
PERFORMING OPERATIONS; TRANSPORTING
C02F1/10
CHEMISTRY; METALLURGY
B02C23/10
PERFORMING OPERATIONS; TRANSPORTING
International classification
B02C19/00
PERFORMING OPERATIONS; TRANSPORTING
B02C23/10
PERFORMING OPERATIONS; TRANSPORTING
B02C23/12
PERFORMING OPERATIONS; TRANSPORTING
B02C23/36
PERFORMING OPERATIONS; TRANSPORTING
B02C25/00
PERFORMING OPERATIONS; TRANSPORTING
C02F1/10
CHEMISTRY; METALLURGY
Abstract
Methods and systems for reducing an average particle size of blackwater solids is disclosed. A vessel is configured to receive a blackwater stream through a one-way inlet. The one-way inlet is configured to allow the blackwater stream into the vessel and prevent backflow. The blackwater stream contains blackwater solids and water. A device in a bottom portion of the vessel is configured to receive the blackwater and comminute the blackwater solids. A recirculating pump is configured to recirculate the blackwater stream under pressure through the device until the average particle size of the blackwater solids is reduced below a size threshold, resulting in a sized blackwater stream.
Claims
1. A system for reducing an average particle size of waste solids, comprising: a vessel configured to receive a waste stream through a one-way inlet, the one way inlet configured to allow the waste stream into the vessel and prevent backflow, wherein the waste stream comprises waste solids and water; a device in a bottom portion of the vessel configured to receive the waste stream and comminute the waste solids; means for detecting that the average particle size of the waste solids is reduced below a size threshold, wherein the means for detecting comprises a controller and an amp meter, a recirculating pump configured to recirculate the waste stream under pressure through the device until the average particle size of the waste solids is reduced below the size threshold, resulting in a treated waste stream with sized waste solids, and wherein the means for detecting comprises a controller and an amp meter, wherein the amp meter is configured to measure a current draw of the recirculating pump and transmit the current draw to the controller, wherein the controller is configured to detect a drop in the current draw, said drop indicating to the controller that the average particle size of the waste solids is reduced below the size threshold.
2. The invention of claim 1, wherein the means for detecting further comprises a camera to determine that the average particle size of the waste solids is reduced below the threshold.
3. The invention of claim 1, further comprising a transfer pump configured to draw the treated waste stream out of the vessel.
4. The invention of claim 3, further comprising an incinerator that receives and incinerated the treated waste stream.
5. The invention of claim 1 further comprising a preheater configured to preheat the waste stream in the vessel.
6. The invention of claim 1 further comprising a dewatering system that receives and dewaters the treated waste stream to form dewatered waste solids.
7. The invention of claim 6, further comprising an incinerator that receives and incinerates the dewatered waste solids.
8. The invention of claim 1, wherein the waste solids are selected from the group consisting of fecal matter, paper products, hygiene products, and combinations thereof.
9. The invention of claim 1, wherein the waste stream further comprises urea.
10. A method for reducing an average particle size of waste solids using the system of claim 1 comprising: passing the waste stream into a vessel through the one-way inlet, the one-way inlet allowing the waste stream into the vessel and preventing backflow, wherein the waste stream comprises waste solids and water; comminuting the waste solids through the device in the bottom portion of the vessel; and recirculating the waste stream through the recirculating pump under pressure through the device until the average particle size of the waste solids is reduced below the size threshold, resulting in the treated waste stream with sized waste solids.
11. The invention of claim 10 further comprising priming the recirculating pump with water.
12. The invention of claim 10 further comprising drawing the treated waste stream out of the vessel by a transfer pump.
13. The invention of claim 12 further comprising incinerating the treated waste stream with an incinerator.
14. The invention of claim 10 further comprising preheating the waste stream in the vessel.
15. The invention of claim 12 further comprising dewatering the treated waste stream with a dewatering system to form dewatered waste solids.
16. The invention of claim 15 further comprising incinerating the dewatered waste solids with an incinerator.
17. The invention of claim 10 further comprising measuring the current draw of the recirculating pump with the amp meter and transmitting the current draw to the controller, and further comprising detecting said drop in the current draw with the controller indicating the average particle size of the waste solids is reduced below the size threshold.
18. The invention of claim 10 wherein the waste solids are selected from the group consisting of fecal matter, toilet paper, hygiene products, and combinations thereof.
19. The invention of claim 10 wherein the waste stream further comprises urea.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The following drawings are provided to illustrate certain embodiments described herein. The drawings are merely illustrative and are not intended to limit the scope of claimed inventions and are not intended to show every potential feature or embodiment of the claimed inventions. The drawings are not necessarily drawn to scale; in some instances, certain elements of the drawing may be enlarged with respect to other elements of the drawing for purposes of illustration.
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DETAILED DESCRIPTION
(8) The following description recites various aspects and embodiments of the inventions disclosed herein. No particular embodiment is intended to define the scope of the invention. Rather, the embodiments provide non-limiting examples of various compositions, and methods that are included within the scope of the claimed inventions. The description is to be read from the perspective of one of ordinary skill in the art. Therefore, information that is well known to the ordinarily skilled artisan is not necessarily included.
Definitions
(9) The following terms and phrases have the meanings indicated below, unless otherwise provided herein. This disclosure may employ other terms and phrases not expressly defined herein. Such other terms and phrases shall have the meanings that they would possess within the context of this disclosure to those of ordinary skill in the art. In some instances, a term or phrase may be defined in the singular or plural. In such instances, it is understood that any term in the singular may include its plural counterpart and vice versa, unless expressly indicated to the contrary.
(10) As used herein, the singular forms a, an, and the include plural referents unless the context clearly dictates otherwise. For example, reference to a substituent encompasses a single substituent as well as two or more substituents, and the like.
(11) As used herein, for example, for instance, such as, or including are meant to introduce examples that further clarify more general subject matter. Unless otherwise expressly indicated, such examples are provided only as an aid for understanding embodiments illustrated in the present disclosure and are not meant to be limiting in any fashion. Nor do these phrases indicate any kind of preference for the disclosed embodiment.
(12) As used herein, sizing, or sized, are terms of comminution. Solids are sized or comminuted when they are crushed, ground, shredded, pulverized, macerated, or otherwise reduced in size to a desired particle size.
(13) As used herein, a comminuting device is meant to refer to any sizing machine such as grinding rolls, grinders, mills, shredders, macerators, crushers, and pulverizers.
(14) As used herein, the term blackwater is intended to have a relatively broad meaning, referring to a waste stream comprising waste solids, such as feces, paper products, and sanitary products, as well as water and urine, typically from a toilet.
(15) The small-scale waste stream producer is typically underserved in industry. Small-scale waste stream producers, including recreational vehicles, remote work sites, third-world villages, and remote cabins, typically cannot afford expensive waste treatment systems. Blackwater, consisting of components selected from the group consisting of water, urea, fecal matter, paper products, hygiene products, and combinations thereof, is the most typical waste stream envisioned, but other waste streams, such as food waste, may be treated by the methods and systems described herein. The disclosed invention, as related to recreational vehicles, can be used as part of a Never Dump/Never Fill philosophy for recreational vehicles. Recreational vehicle users typically dread the dumping part of recreational vehicle usage. As a part of the Never Dump philosophy, the inventions disclosed describe systems and methods for waste solids sizing that allow for waste disposal without user involvement, eliminating dumping.
(16) In a preferred embodiment, the waste streams are those of a small-scale waste stream producer. The waste stream is passed through a one-way inlet into a vessel. The waste stream is then driven through a device that comminutes the waste solids and into a pump that recirculates the waste stream under pressure and through the device until the average particle size of the waste solids is reduced below a size threshold.
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(21) The device for comminuting the solids may be selected from the group consisting of, but not limited to, grinders, grinding rolls, mills, shredders, macerators, crushers, and pulverizers.
(22) In an alternative embodiment, the sized blackwater stream is passed into a bioreactor for traditional waste treatment rather than incineration.
(23) In some embodiments, a water system is provided that provides water to prime the recirculating pump when the system is first started and the blackwater stream is not yet introduced.
(24) The invention has been described with reference to various specific and preferred embodiments and techniques. Nevertheless, it is understood that many variations and modifications may be made while remaining within the spirit and scope of the invention.