Thermo-oxidizer evaporator

6546883
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Inventors

Fink, Ronald George
Hyatt, Andrew Charles
Ellis, Walter Bernard

Application #

616189

Filed

Jul-14-2000

Published

Apr-15-2003

Current US Class

110/238
110/262
110/322
110/346

International Classes

F23G 007/04; F23C 001/10; F23M 009/00

Field of Search

110/238 110/260 110/262 110/322 110/323 110/342 110/346 110/348 202/160

Assignee

RGF, Inc. (West Palm Beach, FL)

Examiners

Lazarus; Ira S.

Attorney, Agent or Firm

Malin, Haley & DiMaggio, P.A.

US Patent References

3954381   Method of and app...
4013023   Incineration metho...
4474121   Furnace control me...
4627388   Combustion of halo...
4708775   Disposal of wastes...
4915038   Sudden expansion...
4957050   Combustion proces...
5156098   Two chamber burn...
5342482   Leachate evaporati...
5634413   Method for thermal...
5762486   Toroidal vortex com...
6200428   Wastewater treatme...
6234092   Thermal treatment...
6279493   Co-combustion of w...
6309542   Waste water treatin...
 

Referenced by:

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Other References

Specification for Thermo-oxidizer.

Citation

Cite This Patent

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Abstract
A thermo-oxidizer evaporator is provided with a combustion chamber, burners, and waste water injection system. The waste water injection system is preferably adapted to atomize the waste water stream. The waste water is injected near the flame from the burners so as to evaporate water in the waste water stream and combust contaminants in the waste water stream. The water leaves the combustion chamber as vapor, and contaminants collect at the bottom of the combustion chamber as dry ash. Heat exchange apparatus heats air prior to injection into the combustion chamber. A temperature controller controls fuel and air flow into the combustion chamber. Baffles in the combustion chamber increase the residence time to facilitate the settling of solid constituents from the gas stream leaving the combustion chamber. Methods for treating liquid wastes are also disclosed.
 
Claims
We claim:

1. A thermo-oxidizer evaporator, comprising:

a combustion chamber;

a liquid waste supply line, and injection structure for injecting and atomizing liquid waste received from said supply line into said combustion chamber;

at least one burner adapted to evaporate said injected liquid waste, and air and fuel supply lines for said burner, heat from said flame substantially evaporating water in said liquid waste and combusting combustible material in said liquid waste; and,

heat exchange structure of heating air from said air supply line with heat from said combustion chamber, whereby heated air is indirectly vented from the apparatus.

2. The thermo-oxidizer evaporator of claim 1, wherein said heat exchange structure comprises a flow channel for said air adjacent an outer wall of said combustion chamber, whereby said air will be heated by contact with said outer wall.



Description
FIELD OF THE INVENTION

This invention relates generally to waste treatment apparatus, and more particularly to thermo-oxidizer evaporators.

BACKGROUND OF THE INVENTION

Waste water streams pose particular challenges for efficient and effective disposal. Environmental concerns prevent most waste water streams from being dumped into rivers, lakes or oceans without extensive treatment to remove contaminants. Most industrial waste water streams cannot be sewered. The only alternative for disposal of many waste water streams is to haul the waste water to an appropriate treatment facility. The transportation expense combined with the expense of treating this volume of waste can be excessive.

Waste water evaporators were devised to remove much of the water volume from the waste water stream, to lower the hauling costs of transporting this volume and weight of water to a waste water treatment station. Waste water evaporators transfer heat to the waste stream in a variety of methods to evaporate water from the waste. In one such evaporator, a vat is filled with the waste and a heat source is applied at the bottom of the vat to transfer heat through the vat to evaporate water from the waste. Another method is to have a heating tube coiled inside the vat, and to direct a heating fluid through the tube such that heat is transferred through the tube to the waste stream. A third method is to provide electrodes within the vat to heat the waste stream.
 
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