Background of the Invention
1. Field of the Invention
The present inention relates to a method of binding sulfur compounds which are produced as reaction products during the combustion of sulfur-containing fuels in a charging bed or fluidized bed furnace at temperatures above 1000.degree. C., with the method being effected by the addition of additives. The present invention also relates to the utilization of this method with chargin bed or fluidized bed furnaces.
2. Description of the Prior Art
Sulfur dioxide is produced when sulfur-containing fuels are burned in chargin bed or fluidized bed furnaces. There is known that this sulfur dioxide can be bound by addition additives to fluidized bed furnaces which are operated at temperatures below 1000.degree. C. Above these temperatures, the desulfurization effect is reduced due to the effect of temperature on the reaction. The high temperature can trigger phenomena which have an adverse effect on the operation of the furnace, such as the formation of slag on the heating surfaces of charging bed furnaces, or the formation of slag in the fluidized bed of fluidized bed furnaces.
An object of the present invention, while retaining the previously mentioned type of furnace, is to provide a sulfur-binding in the resulting flue gases by adding additives at a location at which the conditions are maintained which avoid the aforementioned drawbacks.
Brief Description of the Drawing
This object, and other objects and advantages of the present inention, will appear more clearly from the following specification in conjunction with the various embodiments schematically illustrated in the drawing, in which:
FIG. 1 diagrammatically shows a fluidized bed or charging bed above which are disposed cooling surfaces, with outlets being provided above the cooling surfaces for introducing additive into the flue gas;
FIG. 2 diagrammatically shows a fluidized bed or charging bed, with low-temperature flue gas inlets being provided below the additive introduction outlets; and
FIG. 3 diagrammatically shows a fluidized bed or charging bed, with low-temperature flue gas being added simultaneously with the additives in the additive introduction surface.
Summary of the Invention
The method of the present invention is characterized primarily in that the hot flue gases, which exit directly from the charging bed or fluidized bed furnace, pass through a cooling zone to lower the flue gas temperature to below 1000.degree. C.; after, i.e. downstream from, this cooling zone, the additives are introduced into the cooled-off flue gas flow by means of a carrier medium.
The inventive method is particularly suitable for charging bed or fluidized bed furnaced. There is therefore proposed that the cooling of the hot flue gases be effected in the cooling zone via cooling surfaces which are disposed directly above the furnace surface and below the additive introduction surface.
However, there is also possible to effect cooling of the flue gases in the cooling zone by blowing in low-temperature flue gas between the upper edge of the furance surface and the lower edge of the additive introduction surface.
Pursuant to a further proposal of the present invention, air can be used in place of low-temperature flue gas to lower the temperature of the flue gas.
Pursuant to the present invention, either low-temperature flue gas or air can be used as the carrier medium for the additive. In addition to the desired cooling effect, the oxygen contained in this carrier medium at the same time is utilized for an after burning.
The advantages achieved with the present inventio consist in that, due to an appropriate cooling above the furnace system to a temperature below 1000.degree. C., the reactivity of the additives which are added is nearly completely optimally utilized, and in that the furnace system itself, despite the high temperatures which exist there, can produce no phenomena which ahve an adverse effect on the operation.
Reference has been made to the addition of additives. These additives can be oxides and hydroxides of metals, such as of sodium, potassium, aluminum, barium, cadmium, calcium, copper, iron, lead, magnesium, manganese, and zinc. The additives also could be pulverized calcium carbonate, magnesium carbonate, or dolomite.
There is possible to introduce the additive into the flue gases by means of water as the carrier medium flow, with the additive being suspended in the water.
Description of Preferred Embodiments
Referring now to the drawing in detail, the fluidized bed or chargin bed is designated with the reference numeral 1. Cooling surfaces 2 are used in the embodiment of FIG. 1 to cool the flue gases to temepratures below 1000.degree. C. The addition of additives is effected via outlets 3 in a surface which is disposed directly above the cooling surfaces 2.
In the embodiment of FIG. 2, the flue gases are cooled by low-temperature flue gas; this is expediently effected via outlets 4 which are disposed directly below the additive introduction surface 3, with the addition of additive being effected separately.
In FIG. 3, the low-temperature flue gas introduction surface 4 coincides with the additive introduction surface 3. In other words, the additive and the low-temperature flue gas are introduced simultaneously in to the flue gas which orginates from the charging bed or fluidized bed furnace.
The present invention is, of course, in no way restricted to the specific disclosure of the specification and drawing, but also encompasses any modifications within the scope of the appended claims.