Environment-friendly baking process, environment-friendly baking kiln pipe and environment-friendly baking shaft kiln

文档序号:148614 发布日期:2021-10-26 浏览:27次 中文

阅读说明:本技术 一种环保烘烤工艺及环保烘烤窑管、环保烘烤竖窑 (Environment-friendly baking process, environment-friendly baking kiln pipe and environment-friendly baking shaft kiln ) 是由 牛长忠 于 2021-08-09 设计创作,主要内容包括:本发明提供一种环保烘烤工艺及环保烘烤窑管、环保烘烤竖窑。烘烤工艺包括:首先对不同粒径的石灰石进行无级筛分,筛分出的同一粒径范围的石灰石装入烘烤窑管并置于烘烤室内,烘烤窑管采用奥氏体不锈钢制成,利用烘烤室内燃料燃烧产生的热量对烘烤窑管内的石灰石进行烘烤;烘烤时,根据烘烤窑管内石灰石的粒径选择烘烤参数,烘烤参数包括烘烤温度、烘烤时间、成品硬度;烘烤窑管内,石灰石均匀受热分解成氧化钙和二氧化碳,其中,产品氧化钙通过出料口排出,二氧化碳通过集气装置被回收利用。采用本发明,产出的生石灰的活性度稳定且大于350ml/4N.HCL,质量极好,石灰石受热均匀分解产生的二氧化碳纯度高,可回收再利用。(The invention provides an environment-friendly baking process, an environment-friendly baking kiln pipe and an environment-friendly baking shaft kiln. The baking process comprises the following steps: firstly, carrying out stepless screening on limestone with different particle sizes, loading the screened limestone with the same particle size range into a roasting kiln pipe and placing the roasting kiln pipe into a roasting chamber, wherein the roasting kiln pipe is made of austenitic stainless steel, and roasting the limestone in the roasting kiln pipe by utilizing heat generated by fuel combustion in the roasting chamber; during baking, baking parameters are selected according to the particle size of limestone in a baking kiln tube, and the baking parameters comprise baking temperature, baking time and finished product hardness; in the baking kiln pipe, the limestone is uniformly heated and decomposed into calcium oxide and carbon dioxide, wherein the calcium oxide product is discharged through a discharge hole, and the carbon dioxide is recycled through a gas collecting device. By adopting the method, the activity of the produced quicklime is stable and is more than 350ml/4N.HCL, the quality is excellent, the purity of carbon dioxide generated by uniformly heating and decomposing limestone is high, and the carbon dioxide can be recycled.)

1. An environment-friendly baking process is characterized by comprising the following steps:

(1) firstly, carrying out stepless screening on limestone with different particle sizes, and screening limestone with different particle size ranges according to the particle sizes;

(2) the screened limestone is put into a roasting kiln pipe and is placed in a roasting chamber (4), and the roasting kiln pipe is made of austenitic stainless steel; the heat generated by the combustion of fuel in the baking chamber (4) is utilized to bake limestone in the baking kiln tube;

(3) during baking, baking parameters are selected according to the particle size of limestone in a baking kiln tube, and the baking parameters comprise baking temperature, baking time and finished product hardness;

(4) in the baking kiln pipe, the limestone is uniformly heated and decomposed into calcium oxide and carbon dioxide, wherein the calcium oxide product is discharged through a discharge hole, and the carbon dioxide is recycled through a gas collecting device.

2. The utility model provides an environmental protection toasts kiln pipe, pipe body (1) are tubulose, its characterized in that: the pipe body (1) is made of austenitic stainless steel.

3. The environmental-friendly roasting kiln tube as claimed in claim 2, wherein: the side wall of the pipe body (1) is provided with a plurality of exhaust holes (2), the positions of the exhaust holes (2) are attached with gas collecting boxes (3), the gas collecting boxes (3) cover all the exhaust holes (2), and the internal cavity of each gas collecting box (3) is communicated with all the exhaust holes (2) to form a smoke exhaust channel; an exhaust port (5) is arranged at one position of the gas collecting box (3), and the exhaust port (5) is connected with an external gas recovery device through a pipeline.

4. The environmental-friendly roasting kiln tube as claimed in claim 3, wherein: exhaust holes (2) are arranged in N rows along the vertical direction, N is larger than or equal to 1, correspondingly, the gas collection box (3) is in a long strip shape, and the exhaust port (5) is arranged at the top of the gas collection box (3).

5. An environmentally friendly baking shaft kiln using the baking shaft kiln tube as claimed in any one of claims 2 to 4, characterized in that: adopt N baking kiln pipe to arrange baking chamber (4) in, the feed inlet of baking kiln pipe is connected with input device's feed pipeline, and the discharge gate of baking kiln pipe is connected with output device's ejection of compact pipeline, and wherein, baking kiln pipe only is used for splendid attire lime stone, is used for holding fuel in baking chamber (4).

6. The environmentally friendly baking shaft kiln as defined in claim 5, wherein: a preheating chamber (14) is arranged above the baking chamber (4), a cavity (9) for recovering gas is formed by arranging an inner shell (7) and an outer shell (8) at the periphery and the bottom of the preheating chamber (14), wherein a feed hole (10) penetrates through the cavity at the bottom, the feed hole (10) is butted with a corresponding baking kiln pipe, an air inlet hole (11) is arranged on the outer shell at the bottom, the air inlet hole (11) is butted with an air outlet (5) on the corresponding baking kiln pipe, so that the gas in the gas collecting box (3) enters the cavity (9) through the air outlet (5) and the air inlet hole (11); the interior of the inner shell (7) is used for containing limestone to be roasted, and a feeding port (6) is arranged above the inner shell (7); a gas recovery port (13) is arranged at one position on the cavity (9).

7. The environmentally friendly baking shaft kiln as defined in claim 5 or 6, wherein: the lower part of the baking chamber (4) is provided with a heat recovery chamber (15), the heat recovery chamber (15) is in a shape of an inverted cone cavity, the heat recovery chamber (15) is communicated with a discharge hole at the bottom of each baking kiln pipe, the bottom of the heat recovery chamber (15) is provided with a discharge opening (16), and a discharger is arranged at the discharge opening (16).

Technical Field

The invention relates to an environment-friendly baking process, an environment-friendly baking kiln pipe and an environment-friendly baking shaft kiln, and belongs to the technical field of limestone calcination.

Background

At present, the types of quicklime calcining equipment at home and abroad are many, but the equipment and the technical process basically adopt the traditional calcining concept and mode. The traditional calcining idea and mode is that a kiln is built by adopting refractory bricks, and during calcining, limestone and coal with low ash content are mixed and then placed into the kiln for calcining. In order to prolong the service life of the kiln, a high-temperature resistant layer and a wear resistant layer are usually added on the inner wall of the kiln by the technical personnel in the field, but the design still cannot block the wear of the kiln, so that the kiln needs to be shut down for maintenance after being operated for a period of time. The limestone and coal are mixed and calcined, so that the phenomena of raw burning or over burning are easy to occur, and further the problems of poor stability and activity of the product (calcium oxide), high fly ash rate of the product and the like are caused. In addition, waste gas generated by calcination (including carbon dioxide decomposed by limestone calcination and carbon dioxide, sulfur dioxide, nitrogen oxide and the like generated by coal combustion) needs to be discharged into the atmosphere after environmental protection treatment, the waste gas cannot be fully recycled, and the running cost is increased by the arranged environmental protection equipment.

Disclosure of Invention

In view of the above disadvantages, one of the objectives of the present invention is to provide an environment-friendly baking process, in which calcium oxide is prepared by baking limestone, the product quality of calcium oxide is high, especially the stable activity of calcium oxide, and carbon dioxide generated by baking can be fully recycled, thereby effectively reducing pollution.

An environment-friendly baking process comprises the following steps:

(1) firstly, carrying out stepless screening on limestone with different particle sizes, and screening limestone with different particle size ranges according to the particle sizes;

(2) the limestone after screening is put into a baking kiln pipe and is placed in a baking chamber, and the baking kiln pipe is made of austenitic stainless steel; the heat generated by the combustion of the fuel in the baking chamber is utilized to bake the limestone in the baking kiln pipe;

(3) during baking, baking parameters are selected according to the particle size of limestone in a baking kiln tube, and the baking parameters comprise baking temperature, baking time and finished product hardness;

(4) in the baking kiln pipe, the limestone is uniformly heated and decomposed into calcium oxide and carbon dioxide, wherein the calcium oxide product is discharged through a discharge hole, and the carbon dioxide is recycled through a gas collecting device.

The second purpose of the invention is to provide a baking kiln tube, which has long service life and high quality of baked calcium oxide products.

A baking kiln tube is characterized in that a tube body is tubular and is made of austenitic stainless steel.

Preferably, the pipe body is provided with a plurality of exhaust holes, a gas collecting box is attached to the positions of the exhaust holes, the gas collecting box covers all the exhaust holes, and an internal cavity of the gas collecting box is communicated with all the exhaust holes to form a smoke exhaust channel; one part of the gas collecting box is provided with an exhaust port, and carbon dioxide decomposed by limestone after being uniformly heated is connected with an external gas recovery device through the exhaust port and a pipeline, so that the carbon dioxide can be recovered and reused.

Preferably, the exhaust holes are arranged in N rows along the vertical direction, correspondingly, N gas collecting boxes are adopted, each gas collecting box is in a long strip shape, and the exhaust port is formed in the top of each gas collecting box and is beneficial to discharging carbon dioxide.

The invention also aims to provide an environment-friendly roasting shaft kiln, which can improve the roasting efficiency of limestone and ensure the roasting quality, particularly the stable activity of calcium oxide.

The utility model provides an environmental protection toasts shaft kiln, adopts N to toast that kiln pipe evenly arranges and arranges in the baking chamber, toasts the feed inlet of kiln pipe and is connected with input device's feed line, toasts the discharge gate of kiln pipe and is connected with output device's ejection of compact pipeline, and wherein, toasts the kiln pipe and only is used for splendid attire lime stone, is used for holding fuel in the baking chamber.

Preferably, a preheating chamber is arranged above the baking chamber, a cavity for recovering gas is formed by arranging an inner shell and an outer shell at the periphery and the bottom of the preheating chamber, a feed hole penetrates through the cavity at the bottom, the feed hole is in butt joint with a corresponding baking kiln pipe, an air inlet hole is arranged on the outer shell at the bottom and is in butt joint with an exhaust port on the corresponding baking kiln pipe, so that gas in the gas collecting box enters the cavity through the exhaust port and the air inlet hole; the interior of the inner shell is used for containing limestone to be roasted, and a feeding port is arranged above the inner shell; a gas recovery port is arranged at one position on the cavity. The limestone which enters the baking chamber to be baked enters the cavity through the air outlet and the air inlet, and the limestone which enters the preheating chamber to be baked is coated by the cavity.

Preferably, a regenerative chamber is arranged below the baking chamber, the regenerative chamber is in an inverted cone cavity shape, the regenerative chamber is communicated with a discharge port at the bottom of each baking kiln tube, a discharge port is arranged at the bottom of the regenerative chamber, and a discharger is arranged at the discharge port. The heat in the heat regeneration chamber can be collected and reused by arranging the heat regeneration chamber.

The invention has the beneficial effects that:

1. according to the invention, the baking parameters comprise baking temperature, baking time and finished product hardness, and three curves of baking temperature, baking time and finished product hardness are designed and formed, so that the optimal baking temperature, the optimal baking time and the optimal finished product hardness are realized;

2. limestone is subjected to stepless screening before entering a roasting kiln pipe, so that limestone with different particle size ranges is screened out according to the particle size, the limestone with the same particle size range uses the same roasting parameters, the phenomena of raw burning or overburning cannot occur, and the indexes of the finished product, such as the stability activity, the hardness, the yield and the like of calcium oxide, are all optimal;

3. the kiln tube is made of austenitic stainless steel, so that the service life is long, and the kiln tube can be guaranteed not to be overhauled within 20 years; the kiln tube is made of austenitic stainless steel, and a baking mode is adopted, so that the kiln tube has good heat conduction efficiency, the kiln tube is heated uniformly, the temperature of limestone in the kiln tube is uniform, and the phenomena of raw burning or overburning are not easy to occur, therefore, the powder ash rate of a product baked by the method is extremely low, and the activity of quicklime is stable and is more than 350ml/4 N.HCL;

4. the invention abandons the traditional combustion mode, but adopts limestone to directly bake in the kiln tube, so that the purity of carbon dioxide generated by uniformly heating and decomposing the limestone is extremely high, impurities are not doped, and the decomposed pure carbon dioxide can be recycled for multiple purposes, such as manufacturing products such as dry ice and the like, thereby saving energy, reducing emission and actively responding to the call of environmental protection.

Drawings

FIG. 1 is a schematic view of a simplified structure of the environmentally friendly baking shaft kiln of the present invention.

Fig. 2 is a schematic structural view of the baking chamber of the present invention.

FIG. 3 is a schematic view of the preheating chamber according to the present invention.

FIG. 4 is a schematic view of the structure of a single roasting kiln tube.

In the figure: 1. a tube body; 2. an exhaust hole; 3. a gas collection box; 4. a baking chamber; 5. an exhaust port; 6. a feeding port; 7. an inner housing; 8. an outer housing; 9. a cavity; 10. a feed port; 11. an air inlet; 12. a hopper; 13. a gas recovery port; 14. a preheating chamber; 15. a heat recovery chamber; 16. a discharge opening.

Detailed Description

Examples

In a baking kiln tube shown in fig. 4, a tube body 1 is tubular, and the tube body 1 is made of austenitic stainless steel. The side wall of the tube body 1 is provided with a plurality of exhaust holes 2, a gas collecting box 3 is attached to the positions of the exhaust holes 2, the gas collecting box 3 covers all the exhaust holes 2, and the internal cavity of the gas collecting box 3 is communicated with all the exhaust holes 2 to form a smoke exhaust channel; an exhaust port 5 is arranged at one position of the gas collecting box 3, and the exhaust port 5 is connected with an external gas recovery device through a pipeline.

Exhaust hole 2 is arranged into 4 rows along vertical direction, correspondingly, adopts 4 gas collection boxes, and every gas collection box 3 is rectangular form, and gas vent 5 sets up the top at gas collection box 3.

An environmental protection roasting shaft kiln as shown in fig. 1 comprises a preheating chamber 14, a roasting chamber 4 and a reheating chamber 15. 3 baking kiln pipes are uniformly arranged in the baking chamber 4, as shown in figure 2. Wherein, the baking kiln pipe is only used for containing limestone, and the baking chamber 4 is used for containing fuel.

The preheating chamber 14 is arranged above the baking chamber 4, as shown in fig. 3, a cavity 9 for recovering gas is formed by arranging an inner shell 7 and an outer shell 8 at the periphery and the bottom of the preheating chamber 14, wherein a feed hole 10 penetrates through the cavity at the bottom, the feed hole 10 is in butt joint with a corresponding baking kiln pipe, an air inlet hole 11 is arranged on the outer shell at the bottom, the air inlet hole 11 is in butt joint with an air outlet 5 on the corresponding baking kiln pipe, so that the gas in the gas collecting box 3 enters the cavity 9 through the air outlet 5 and the air inlet hole 11; the interior of the inner shell 7 is used for containing limestone to be roasted, and a feeding port 6 is arranged above the inner shell 7; a gas recovery port 13 is provided at one position on the chamber 9.

The heat recovery chamber 15 is arranged below the baking chamber 4, the heat recovery chamber 15 is in an inverted cone cavity shape, the heat recovery chamber 15 is communicated with a discharge port at the bottom of each baking kiln tube, a discharge port 16 is arranged at the bottom of the heat recovery chamber 15, and a discharger is arranged at the discharge port 16.

The environment-friendly baking process adopts the environment-friendly baking shaft kiln, and comprises the following steps:

(1) firstly, limestone with different particle sizes is subjected to stepless screening, and limestone with different particle size ranges is screened according to the particle size by using a stepless vibration device (patent application number 2021107512123);

(2) the screened limestone firstly enters a preheating chamber 14 for preheating;

(3) the preheated limestone flows into a baking kiln pipe of the baking chamber 4, and the heat generated by the combustion of fuel in the baking chamber 4 is utilized to bake the limestone in the baking kiln pipe;

(3) during baking, baking parameters are selected according to the particle size of limestone in a baking kiln tube, and the baking parameters comprise baking temperature, baking time and finished product hardness;

(4) in the baking kiln pipe, the limestone is uniformly heated and decomposed into calcium oxide and carbon dioxide, wherein the calcium oxide product is discharged through a discharge opening 16 after entering a heat return chamber 15, and the carbon dioxide enters a cavity 9 through a gas collecting device and is recycled through a gas recycling opening.

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