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LR Lime Shaft Kiln (Low Reactive)
Low reactive quicklime is used for the production of AAC (autoclaved aerated concrete) and sand lime bricks.
The above figure shows AAC production requires low reactivity quicklime.
HR Lime Shaft Kiln (High Reactive)
The above figures show more than 80% of the burnt lime are high reactive lime, during which the iron and steel industry is definitely the largest consumer. Lime plays an important role in several process steps in the steel industry: one essential application is the production of pig iron. Here, lime is used as an additive for the sintering of ores before they are melted in the blast furnace. The high reactivity of quicklime is desired so that it can react as quickly as possible with the impurities of the molten iron and form slags.
Technology Date of LR Lime Shaft Kiln
MODEL | LR50, LR100 |
CAPACITY | 50 TPD TO 100 TPD |
FUEL | NATURAL GAS |
DIMENSIONS OF KILN | OUTER DIA: 4.6-5.0M, INNER DIA: 2.6-3.0M, HEIGHT: 21-24M |
POWER | 130-150KW |
INPUT SIZE | 30-60MM, 40-80MM |
LIME REACTIVITY | LOW REACTIVITY |
APPLICATIONS | AAC, SAND LIME BRICKS |
MODEL | HR100, HR200, HR300, HR400, HR500 |
CAPACITY | 100 TPD TO 500 TPD |
FUEL | COAL, NUTRAL GAS, COAL GAS, BLAST FURNACE GAS |
DIMENSIONS OF KILN | OUTER DIA: 5.0-7.8M, INNER DIA: 3.0-5.8M HEIGHT: 21-31M |
POWER | 150 TO 490 KW |
INPUT SIZE | 30-60MM, 40-80MM |
LIME REACTIVITY | HIGH REACTIVITY, MEDIUM REACTIVITY |
APPLICATIONS | IRON AND STEEL, CHEMICAL, ENVIRONMENTAL PROTECTION, AGRICULTURE |
LR series lime shaft kiln production line consists of feeding system, loading system, limestone distributor, calcination system, quicklime discharging system, dust removing system, final product silo, PLC control system.
LR series lime shaft kiln functions on the principle of counter flow. Combustion gases flow from bottom to top traversing the feedstock; while fuel is only added towards the end of the burning zone. Upon completion of the combustion process higher energy input can be used to raise the peak temperature in the burning zone. Thus, the CaO crystallites fuse and reduce the specific surface of burnt lime. This process produces low reactive lime, which is ideal for the production of aerated concrete and sand lime bricks.
The radially arranged and horizontally adjustable liquid cooled burners, which are positioned at the lower end of the burning zone, enable a uniform heat distribution over the cross section of the kiln shaft. Releasing energy from the fuel combustion at the lower end of the burning zone, where the kiln charge is already completely calcined, allows very high burning temperatures which are required to partially sinter the product in order to reduce its reactivity.
The raw material to be calcined is charged at the top of the kiln. It is then preheated by the combustion gases in counter-current before reaching the burning zone. In the burning zone the material is calcined and - depending on the product specification - more or less sintered by means of fuel introduced together with primary combustion air through the radially arranged burners.
Cooling air is introduced at the discharge of the kiln to cool the product in a counter-current manner. The heated cooling air travels upwards to the burning zone and is used there as secondary combustion air. The exhaust gases are directed from the top of the kiln to a dust cleaning system.
The kiln charge consists of crushed and screened limestone or dolomite. The grain sizes are typically 40 to 80 mm or smaller. The kiln shafts are also completely filled with the material to be processed but the kiln charge passes the lime kiln at a higher speed - typically two meters per hour.
LR Lime Shaft Kiln Customers Site
Finish Product Analysis Report
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