The first type is the conventional type: oil cooling or water cooling, and the main structure is the combustion beam of alloy steel welding structure;
The third generation beam kiln adopts an adiabatic combustion beam. The main body of the adiabatic combustion beam is made of composite materials of refractory and steel, which aims to reduce the heat loss of heat transfer oil or water. The third generation beam kiln may cause heat loss of 20-30Kcal/(kg. finished ash). The adiabatic combustion beam is a national invention patent (ZL201,410,094,521.8). The picture below shows the adiabatic combustion beam.
Picture of combustion beam device of the third generation beam kiln (this picture is a T-shaped combustion beam side injection mode)
The third type is air cooling type: the air cooling type is adopted, and the main structure is an adiabatic combustion beam made of refractory and steel composite materials (national invention patent ZL201610004568.9);
The fourth and fifth generation beam kilns use air-cooled combustion beams. The combustion beams are cooled by combustion supporting air. The combustion supporting air preheated by the combustion beams directly participates in combustion, completely eliminating the heat loss of the combustion beams. The air-cooled combustion beam is the most revolutionary invention in the history of beam kiln technology development. It completely eliminates the heat loss caused by the self cooling of the combustion beam, completely eliminates the potential safety hazards of the oil cooling beam, and realizes the zero loss of the combustion beam itself and the maximization of the overall thermal efficiency of the beam kiln. This technology has laid a solid foundation for the beam kiln to achieve the leading heat consumption index technology.
2) Beam kiln
Basic definition of beam kiln: it is a modern lime production kiln with burning beam as the core technology and equipment to calcine lime. Using combustion beam as thermal tool is the core feature of beam kiln. This is the main basis for judging beam kiln. The use of combustion beam technology makes the whole section of lime kiln calcined evenly and effectively. It is one of the advanced technologies of lime calcination technology. The use of combustion beam has a variety of different forms and functions. Beam kiln is a set of integrated production system from raw material feeding to finished product storage. The above definition is a high summary of its core technology.
Layout of combustion beam, ash outlet and suction beam of beam kiln
The design concept of beam kiln is to arrange combustion beams on the section of lime kiln to directly transport fuel to the required position of the whole section. The layout of combustion beams and burners shall meet the uniformity requirements of the whole section as far as possible. All parts of the whole section of lime kiln can be calcined evenly and effectively to produce high-quality lime. The design concept of beam kiln is relatively advanced, which not only solves the problem of lime calcination uniformity, but also realizes the design of large section. Up to now, the beam kiln has already achieved the capacity of 600t/d. In recent years, the beam kiln with larger unit output has been successfully developed and is being promoted in all aspects.
Beam kiln is a complete integrated production system, mainly including the following subsystems: feeding system; Kiln body system; Fuel supply system; Combustion beam system; Air supply system; Exhaust gas dedusting system; Ash discharging system; Electrical automation system; Peripheral supporting system.
The combustion beam used in the combustion beam system works in the thermal zone above 1000 degrees. It needs cooling protection. Therefore, the combustion beam must be equipped with corresponding cooling system if it wants to reach the normal service life. The combustion beam system mainly consists of two parts, namely, the combustion beam and its matched burner group, and the combustion beam cooling system that provides cooling medium for the combustion beam. At present, the cooling forms of combustion beam mainly include heat transfer oil cooling system, water cooling system and air cooling system. Oil cooling or water cooling has been used for decades, and its performance is stable and reliable. Its disadvantage is high heat loss. There is also a fire risk when heat transfer oil is used for cooling. After 2014, the adiabatic combustion beam began to be put into the market, and oil cooling or water cooling was still used, reducing the heat loss by 70%. The application of this technology has promoted the technical progress of beam kiln. After 2019, the air-cooled combustion beam will be put on the market to completely eliminate the heat loss. This technology has brought a complete revolutionary progress to the beam kiln, resulting in four generations of beam kiln technology. At present, the fourth generation beam kiln has been upgraded in several lime kilns, running stably and creating huge benefits for the owner.
The fuel supply system is divided into three categories: gas fuel supply system; Solid fuel supply system; Liquid fuel supply system. Some units use two kinds of fuels to mix, and the common ones are mixed gas with different calorific values, gas and pulverized coal.
Peripheral supporting systems vary greatly, such as raw material screening, storage and transportation system, finished product crushing, screening, storage and transportation system, supporting environmental dust removal system, gas transportation system, etc. Different enterprises have different needs. The configuration of these systems is based on the auxiliary configuration of the core production line, and more or less are selected according to the actual situation on site, without affecting the core functions of the beam kiln.
Beam kiln is a modern kiln in the international market today, which has been developed for decades, and has a history of nearly 30 years in China. After years of practice and technical progress, the beam kiln has gradually developed from the first generation introduced to the second generation, the third generation, the fourth generation and the fifth generation.
The 5th generation beam kiln is a large-scale shaft kiln - our company defines it as the beam sleeve kiln, abbreviated as CAB, with a capacity of 800~1500t/d, which is by far the highest unit output lime shaft kiln, with the patent number of ZL201911026606.1. A separate introduction follows.
3) Introduction to various generations of beam kilns
a) First generation beam kiln