一种硫铵颗粒分离装置

By designing an ammonium sulfate particle separation device, the particle size separation and sludge removal of ammonium sulfate particles are achieved by using a separator and screen structure. This solves the problems of ammonium sulfate particle classification and sludge removal in the existing technology, and improves the quality and sales efficiency of ammonium sulfate.

CN224507595UActive Publication Date: 2026-07-17DONGMING RISUN CHEM CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGMING RISUN CHEM CO LTD
Filing Date
2025-07-28
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing ammonium sulfate production processes cannot effectively classify large-particle ammonium sulfate from small-particle ammonium sulfate, and the ammonium sulfate lumps and impurities generated by the drying bed cannot be removed, resulting in a decrease in the quality of ammonium sulfate.

Method used

An ammonium sulfate particle separation device was designed, including a separator, a first conveying pipe, a second conveying pipe and a third conveying pipe. The ammonium sulfate particles are separated according to their particle size by a baffle and a screen in the separator, and the screening efficiency is improved by a vibrator and a regulating component to remove lumpy impurities.

Benefits of technology

It enables the automatic separation of ammonium sulfate particles of different sizes and the removal of lumpy impurities, thereby improving the quality and sales efficiency of ammonium sulfate particles.

✦ Generated by Eureka AI based on patent content.

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Abstract

本申请提供了一种硫铵颗粒分离装置,其分离器用于承接待分离的硫铵颗粒,并对硫铵颗粒按照颗粒从小到大的顺序进行分离;第一输送管道的一端与分离器的底部连接,第一输送管道用于输送经所述分离器分离得到的第一粒径大小的硫铵颗粒;第二输送管道的一端与分离器的底部连接,第二输送管道用于输送经分离器分离得到的第二粒径大小的硫铵颗粒,其中,第二粒径大于第一粒径;第三输送管道与分离器的顶部连接,第三输送管道用于输送经分离器分离得到的疤块。可以实现不同颗粒大小硫铵的自动分离,并去除硫铵颗粒中的疤块杂质,提高硫铵颗粒的品质。
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Claims

1. An ammonium sulfate granule separation apparatus characterized by, include: A separator is used to receive ammonium sulfate particles for separation and to separate the ammonium sulfate particles in order of increasing particle size. A first conveying pipe, one end of which is connected to the bottom of the separator, is used to convey ammonium sulfate particles of a first particle size obtained by the separator. A second conveying pipe is connected at one end to the bottom of the separator. The second conveying pipe is used to convey ammonium sulfate particles of a second particle size obtained by the separator, wherein the second particle size is larger than the first particle size. A third conveying pipe is connected to the top of the separator, and the third conveying pipe is used to convey the scabs obtained by the separator. The first connecting pipe has its two ends connected to the first conveying pipe and the second conveying pipe respectively, and the first connecting pipe is inclined. A first three-way valve is located on the first connecting pipe. When the first three-way valve is opened, ammonium sulfate particles in the first conveying pipe enter the second conveying pipe through the first connecting pipe. The second connecting pipe has its two ends connected to the first conveying pipe and the second conveying pipe respectively, and the second connecting pipe is inclined. The second three-way valve is located on the second connecting pipe. When the second three-way valve is opened, ammonium sulfate particles in the second conveying pipe enter the first conveying pipe through the second connecting pipe.

2. The ammonium sulphur granule separating device according to claim 1, characterized in that The separator includes a separation tank and a partition plate, wherein the partition plate is disposed inside the separation tank to divide the separation tank into a first separation tank and a second separation tank; The top of the first separation tank has a first opening, the first opening is inclined downward in a first direction, and the first opening is provided with a first screen, the mesh size of the first screen being a first aperture. The second separation tank is arranged side by side with the first separation tank along a first direction to receive ammonium sulfate particles from the first separation tank whose particle size is larger than the first pore size; the second separation tank has a second opening that is inclined downward along the first direction, and the second opening is provided with a second screen with a mesh size that is larger than the first pore size.

3. The ammonium sulfate granulation apparatus of claim 2, wherein, The bottom of the first separation tank has a first discharge port, which is connected to one end of the first conveying pipe to convey ammonium sulfate particles of the first particle size that have fallen into the first separation tank after being screened by the first screen to the first conveying pipe. The bottom of the second separation tank has a second discharge port, which is connected to one end of the second conveying pipe to convey ammonium sulfate particles of the second particle size that have fallen into the second separation tank after being screened by the second screen to the second conveying pipe.

4. The ammonium sulfate granulation apparatus of claim 2, wherein Both the first screen and the second screen are inclined. The inclination of the first screen is adjusted by a first adjusting component, and the inclination of the second screen is adjusted by a second adjusting component.

5. The ammonium sulfate granulation apparatus of claim 2, wherein, The separator also includes a protective plate disposed on the first opening and the second opening, the protective plate extending upward from the first opening and the second opening.

6. The ammonium sulfate granulation apparatus of claim 1, wherein, The separator is equipped with an oscillator, which drives the separator to vibrate when it vibrates.

7. The ammonium sulfate granulation apparatus of claim 6, wherein, An isolation plate is provided on the outer periphery of the oscillator, which is used to isolate ammonium sulfate particles from the oscillator.

8. The ammonium sulfate particle separation device according to claim 1, characterized in that, The ammonium sulfate particle separation device further includes a first silo and a second silo, wherein the first silo is connected to the other end of the first conveying pipeline, and the second silo is connected to the other end of the second conveying pipeline.

9. The ammonium sulfate particle separation device according to claim 1, characterized in that, The ammonium sulfate particle separation device further includes a fourth conveying pipe, one end of which is connected to the bottom of the separator for conveying ammonium sulfate particles of a third particle size obtained by the separator; wherein the third particle size is larger than the first particle size and smaller than the second particle size.