Mechanical activation reactor capable of enhancing polysaccharide high polymer modification

A polymer modification and mechanical activation technology, applied in chemical instruments and methods, chemical/physical processes, mixers with rotating stirring devices, etc., can solve the problem of uneven heating of materials, local temperature rise, and large loss of raw materials and other problems, to achieve the effect of improving the uniformity of replacement, solving the problem of material bonding, and uniform material reaction

Inactive Publication Date: 2015-04-08
GUANGXI UNIV +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] First, because it involves simultaneous constant temperature heating control of internal materials, it is often designed as a separate inner shaft stirring or a separate outer cylinder rotation. Therefore, traditional mechanical activation devices have defects such as large power consumption, large equipment, slow response speed, and low production capacity.
[0007] The second is that when the stirring ball mill is running, due to the impact between a large number of grinding balls, the collision between the balls and the balls and the materials during the ball milling process can generate heat, which may cause the local temperature to rise, resulting in material The heating is uneven, and the phenomenon of material sticking to the wall is easy to occur during the heating process, the loss of raw materials is also large, and product quality control is difficult
[0008] Third, in the solid-phase reaction of pol

Method used

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  • Mechanical activation reactor capable of enhancing polysaccharide high polymer modification
  • Mechanical activation reactor capable of enhancing polysaccharide high polymer modification

Examples

Experimental program
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Effect test

Embodiment 1

[0035]A mechanical activation reactor for strengthening polysaccharide polymer modification, the outer cylinder 5 is a horizontal structure, the outer cylinder 5 is equipped with a grinding inner cylinder 8, the reducer I1 is connected to the stirring shaft 2 through a coupling, and the stirring The shaft 2 is inserted into the grinding inner cylinder 8 through the through hole on the end cover 3 of the outer cylinder 5, and the stirring shaft 2 is fixed on the two ends of the outer cylinder 5 through the bearing seats at both ends; A jacket 6 with a heating device, the heating device includes a heating medium and a heater, wherein the heating medium is heat transfer oil, and the heater is an electric heater. A temperature controller 12 is provided inside the jacket 6 . There is a material inlet and outlet 7 above the outer cylinder 5, and the material inlet and outlet 7 communicates with the grinding inner cylinder 8, and the grinding inner cylinder 8 is provided with grindin...

Embodiment 2

[0038] The difference from Embodiment 1 is that, during installation, the outermost end of the scraping ribbon 10 is at a distance of 2mm from the inner wall of the grinding inner cylinder 8 . The outer cylinder 5 is connected with the driving device, and the driving device includes a reducer II 13 and a gear set 14 installed on the outer cylinder 5; the reducer II 13 controls the rotation of the outer cylinder 5 by meshing with the gear set 14 . The outer ring of the outer cylindrical body 5 is provided with supporting rollers 15 . The heating medium in the jacket 6 is steam. The outer ring of the outer cylinder 5 is equipped with supporting wheels 15, which reduces the loss of the outer cylinder 5 in the turnover movement, improves the service life, and can adjust the inclination of the outer cylinder 5 through the supporting rollers 15 for different materials and modification methods The speed and rotation speed are used to control the residence time of the material in the...

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PUM

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Abstract

The invention discloses a mechanical activation reactor capable of enhancing polysaccharide high polymer modification. An outer barrel is in a horizontal structure and a grinding inner barrel is arranged in the outer barrel; a speed reducer I is connected with a stirring shaft by a shaft coupler; the stirring shaft penetrates through a through hole in an end cover of the outer barrel and is inserted into the grinding inner barrel; the stirring shaft is fixed at the two ends of the outer barrel by bearing seats at the two ends; a jacket is arranged outside the grinding inner barrel; a material inlet/outlet is formed in the outer barrel and is communicated with the grinding inner barrel; the grinding inner barrel is internally provided with grinding balls; the stirring shaft is provided with paddles and a material scraping screw belt; the paddles are mounted on the stirring shaft in a staggered manner; and the material scraping screw belt is mounted on the stirring shaft. The mechanical activation reactor is provided with the paddles and the material scraping screw belt so that the grinding balls in the grinding inner barrel can be driven by the paddles and the material scraping screw belt to move back and forth, and the disturbance of the grinding balls is enhanced, and furthermore, materials can react more uniformly and the surface updating is more rapid; and the reaction time is effectively shortened, the loss of the raw materials is reduced and the quality of a product is improved.

Description

technical field [0001] The invention relates to a stirring ball mill, in particular to a mechanical activation reactor for strengthening the modification of polysaccharide polymers. Background technique [0002] Polysaccharide polymers include starch, lignocellulose, chitosan, etc. Polysaccharide polymers are generally crystalline polymers, consisting of crystalline regions and amorphous regions. Hydrogen bonds are formed to form a highly crystalline structure. Most of the reagents can only reach the amorphous region, but not the crystalline region. Therefore, in order to improve the modification and deep processing efficiency of polysaccharide crystalline polymers, they must be activated. [0003] Mechanical Activation (Mechanical Activation) is a new cross-edge technology, which refers to the change of crystal structure and physical and chemical properties of solid substances under the action of mechanical forces such as friction, collision, impact, and shearing, so that p...

Claims

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Application Information

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IPC IPC(8): B02C17/10B02C17/04B02C17/18B02C25/00B01F7/02B01F15/06
CPCB02C17/04B02C17/10B02C17/18B02C25/00B01F27/60B01F35/90B01F2035/99
Inventor 黄祖强岑忠儒张燕娟刘军胡华宇冯振飞黄爱民杨梅覃宇奔覃杏珍朱园勤沈芳
Owner GUANGXI UNIV
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