IP Library › Granted Patent US 11,485,912
Granted Patent B2
US 11,485,912 · App. 15/110,609 · Granted Nov 1, 2022

Disposal of refuse

Inventors: Nik Spencer (Abbots Morton, GB); Matthew Gibbon (Evesham, GB); Hussam Jouhara (Manchester, GB)
Assignee: MANIK VENTURES LIMITED
C10B53/07B09B3/40B09B5/00C10B19/00C10B47/04C10B53/00C10G1/02C10J3/005F23G5/027F23G5/0276F23G5/033F23G5/085F23G5/46F24D3/08F24D7/00F24D15/00F23G2201/303F23G2201/80F23G2204/201F23G2206/203F24H2240/00Y02E20/12
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Quick Facts
Patent No.
US 11,485,912
App. No.
15/110,609
Granted
Nov 1, 2022
Kind
B2
Abstract

Existing approaches to refuse handling are all based on historical approaches which rely on a network of refuse collection vehicles collecting waste from individual households and delivering this to a centralised landfill or MBI location. This is highly undesirable and wasteful. An alternative process is disclosed, relying on the thermal treatment of waste and like products produced or brought in to the residential property and processed within the domestic curtilage to produce fuel or other forms of energy. Thus, domestic waste will be thermally treated at the home instead of being collected by local authorities and disposed of. The waste input put material will be loaded into a domestically engineered thermal conversion unit either directly or after a pre-process such as shredding. The feedstock will be converted into fuels by a thermal treatment, such as pyrolysis. The resultant output of oil and gas can either be stored or fed into a boiler unit to be used as a fuel to produce hot water, or used to run an electricity generating unit to power the dwelling in question or for supply to a feed-in tariff. Thus, a domestic dwelling includes a thermal treatment unit for processing waste produced in the dwelling, an output of the thermal treatment unit being combusted for producing an energy output for the dwelling. A suitable pyrolysis chamber is disclosed.

Claims (11)

1. A pyrolysis chamber for pyrolytically treating domestic refuse, comprising a receptacle having an interior for receiving the domestic refuse for treatment therein and a lid to allow the receptacle to be hermetically sealed with the domestic refuse for treatment inside, the receptacle being defined by a double-skinned enclosure having an interior heat-conductive wall within the interior of the receptacle and in contact with the domestic refuse and an exterior wall located further from the interior of the receptacle than the interior heat-conductive wall, with a hermetically-sealed void between the exterior wall and the interior heat-conductive wall, a working fluid being disposed within the hermetically-sealed void between the exterior wall and the interior heat-conductive wall thereby to define a passive two-phase heat transfer system in which the working fluid is retained within the double-skinned enclosure and does not contact the domestic refuse within the receptacle, at least one heating element being provided outside the receptacle, in thermal contact with the double-skinned enclosure and for heating the working fluid so that the working fluid evaporates, flows to the interior heat-conductive wall to condense, releases latent heat and transfers heat through the interior heat-conductive wall to pyrolise the domestic refuse within the receptacle.

2. The pyrolysis chamber according to claim 1 in which the double-skinned enclosure includes at least one heat-conductive spike extending from the interior heat-conductive wall into the interior of the receptacle.

3. The pyrolysis chamber according to claim 2 in which the at least one heat-conductive spike is hollow, and the hollow interior of the at least one heat-conductive spike is in fluid communication with the hermetically-sealed void.

4. The pyrolysis chamber according to claim 1 in which the receptacle includes at least one leg extending from the exterior wall, and a heat source connected to the at least one leg.

5. The pyrolysis chamber according to claim 4 in which the at least one leg is hollow, and the hollow interior of the at least one leg is in fluid communication with the hermetically-sealed void.

6. The pyrolysis chamber according to claim 4 in which the heat source is an electrical heating element.

7. The pyrolysis chamber according to claim 4 in which the heat source is a heat exchanger.

8. The pyrolysis chamber according to claim 1 in which the double-skinned enclosure is formed of stainless steel.

9. The pyrolysis chamber according to claim 1 in which the double-skinned enclosure containing the working fluid forms a hermetically-sealed, passive two phase heat transfer system.

10. The pyrolysis chamber according to claim 1 in which the working fluid is one of water, a eutectic mixture of biphenyl (C 12 H 10 ) and diphenyl oxide (C 12 H 10 O) and Sodium.

11. The pyrolysis chamber according to claim 1 in which the pyrolysis chamber is configured for pyrolytically treating the domestic refuse in a batch process.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 9, 2016
From: SPENCER, NIK; GIBBON, MATTHEW; JOUHARA, HUSSAM
To: MANIK VENTURES LIMITED
Reel/Frame 039383/0168 →
Priority Claims (3)
GB 1400422 · Jan 10, 2014 · national
GB 1400834 · Jan 17, 2014 · national
GB 1403814 · Mar 4, 2014 · national
Continuity (1)
Related Publication 20160326440A1 · Nov 10, 2016