Particulate waste product combustion system

4589355
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Inventors

Chastain, Charles E.
King, Donald R.

Application #

719712

Filed

Apr-2-1985

Published

May-20-1986

Current US Class

110/245
110/258
110/259
110/346
110/347

International Classes

F23G 005/00; F23G 007/00

Field of Search

110/245 110/263 110/346 110/347 110/258 110/259 165/104.16 122/4

Assignee

PRM Energy Systems, Inc. (Stuttgart, AR)

US Patent References

4159000   Method for sootless...
4308806   Incinerator for bur...

Referenced by:

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Citation

Cite This Patent

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Abstract
The carbon content of the residue from combustion of agricultural waste products and the fly ash content of the gaseous exhaust is controlled by regulated inflow of the combustion supporting air in a plurality of flow stream at different velocities to enhance fluidization of particulate feed in a bed being raked by a rotating sweep arm inducing radially outward movement of combustion residue into a collecting zone from which the residue enters a discharge duct. The particulate feed is dropped at location in the combustion chamber above the bed in alignment with the inflow stream of maximum velocity.
 
Claims
What is claimed as new is as follows:

1. In combination with apparatus for incinerating combustible material within a fluidized bed, including the steps of: feeding the material into a fluidizing zone within which the bed is formed; introducing combustion supporting gas to said fluidizing zone in a plurality of inflow streams of different velocities insufficient to fluidize the material; continuously agitating the material to mechanically fluidize the same within said fluidizing zone during combustion and cause displacement of residual ash from the zone; and withdrawing the residual ash from a discharge location in the apparatus outside of the fluidizing zone.

2. The method of claim 1 wherein the material is fed into the fluidizing zone from an infeed location aligned with one of the inflow streams of maximum velocity.



Description
The disposal of waste or by-products from the processing of agricultural food crops, often involves the burning of such by-products to create many problems for the food producing industry. By-products such as rice and peanut hulls, wood chips, cotton seed, etc. are tough, woody and abrasive. Further, such by-products are variable in density and have a high silica content. Incineration of such by-products are expensive, consumes large quantities of energy and creates air pollution problems.

The controlled combustion of the foregoing type of waste or by-products has heretofore been attempted with little success from either an economic standpoint or from an ecological standpoint. Because of feed density variation, overfiring or underfiring often occurs during combustion resulting in unstable heat generation and exhaust gas quality that is not satisfactory for heat recovery purposes. For example, the introduction of a feed with high silica content into the combustion chamber of a burner, generates an exhaust stream with excessive fly ash causing damage to and deterioration of boiler tubes because of silica related abrasiveness. Prior burners are also unable to control the degree of burn and therefore lack flexibility for control of the ash content of the combustion residue as a marketable product.
 
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