Gas absorbent particle and method for making same

10118153 ยท 2018-11-06

Assignee

Inventors

Cpc classification

International classification

Abstract

The present application discloses method for making air adsorbent particles. The method includes the steps of: providing and mixing porous powder, water, adhesive, and additive agent for obtaining sizing agent; obtaining air adsorbent particles by spray shaping, drying, and screening the sizing agent. The mass ratio between the porous powder, water, adhesive and the additive agent is 1:(0.58):(0.010.16):(0.0010.15). Particles obtained by the method of the present application have higher strength.

Claims

1. A method for making air adsorbent particles, comprising the steps of: providing and mixing porous powder, water, adhesive, and additive agent for obtaining sizing agent; obtaining air adsorbent particles by spray shaping, drying, and screening the sizing agent; wherein the mass ratio between the porous powder, water, adhesive and the additive agent is 1:(0.58):(0.010.16):(0.0010.15).

2. The method for making air adsorbent particles as described in claim 1, wherein the porous powder comprises a molecular sieve.

3. The method for making air adsorbent particles as described in claim 1, wherein the adhesive comprises at least one of a polyvinyl alcohol solution, a polystyrene acrylate emulsion, a polyvinyl acetate-acrylate emulsion, an ylate emulsion, a polyethylene-vinyl acetate emulsion, a polystyrene latex, a polyvinyl pyrrolidone water solvent, a polyacrylic hydrosol, a polybutadiene-styrene emulsion, and a polyacrylamide aqueous solution.

4. The method for making air adsorbent particles as described in claim 3, wherein the adhesive is polystyrene acrylate emulsion and/or polyvinyl acetate-acrylate emulsion.

5. The method for making air adsorbent particles as described in claim 1, wherein the additive comprises tween, glyceride, or polyhydric alcohols.

6. The method for making air adsorbent particles as described in claim 5, wherein the tween is tween 20 or tween 80, the glyceride is polyglycerol-2-triiso-stearate, and the polyhydric alcohol is polyethylene glycol or sorbitol.

7. The method for making air adsorbent particles as described in claim 1, wherein the mass ratio between the porous powder, water, adhesive and the additive agent is 1:(0.74):(0.030.1):(0.0050.07).

8. Air adsorbent particles, wherein the particles are made by the method claimed in claim 1.

9. The air adsorbent particles as described in claim 8, wherein dimeters of the particles are ranged 350 micrometer450 micrometer.

10. A speaker box having a housing with an accommodating space, a spacer in the housing for dividing the accommodating space into a front cavity and a rear cavity, and a speaker received in the front cavity of the accommodating space, wherein the speaker box further comprises air adsorbent particles as described in claim 8, and the particles are filled in the rear cavity.

Description

BRIEF DESCRIPTION OF THE DRAWINGS

(1) Many aspects of the exemplary embodiment can be better understood with reference to the following drawing. The components in the drawing are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present disclosure.

(2) FIG. 1 is a flow chart of a method for making gas adsorbent particles, in accordance with an exemplary embodiment of the present disclosure.

(3) FIG. 2 is a cross-sectional view of a speaker box using the gas adsorbent particles obtained by the method shown in FIG. 1.

DETAILED DESCRIPTION OF THE EXEMPLARY EMBODIMENT

(4) The present disclosure will hereinafter be described in detail with reference to an exemplary embodiment. To make the technical problems to be solved, technical solutions and beneficial effects of the present disclosure more apparent, the present disclosure is described in further detail together with the figure and the embodiment. It should be understood the specific embodiment described hereby is only to explain the disclosure, not intended to limit the disclosure.

(5) Referring to FIG. 1, a flow chart of a method for making gas adsorbent particles in shown. The method includes the steps of:

(6) Step 1: Providing and mixing porous powder, water, adhesive, and additive agent for obtaining sizing agent;

(7) wherein the mass ratio between the porous powder, water, adhesive and the additive agent is 1:(0.58):(0.010.16):(0.0010.15);

(8) wherein the porous powder may be molecular sieve;

(9) wherein the adhesive may comprise polyvinyl alcohol solution, polystyrene acrylate emulsion, polyvinyl acetate-acrylate emulsion, ylate emulsion, polyethylene-vinyl acetate emulsion, polystyrene latex, polyvinyl pyrrolidone water solvent, polyacrylic hydrosol, polybutadiene-styrene emulsion, or polyacrylamide aqueous solution; preferably, the adhesive is polystyrene acrylate emulsion and/or polyvinyl acetate-acrylate emulsion;

(10) wherein the additive comprises tween (e.g. tween 20, or tween 80), glyceride (e.g. Polyglycerol-2-triiso-stearate), or polyhydric alcohols (e.g. polyethylene glycol or sorbitol), and preferably, the additive is polyhydric alcohols; in this embodiment, the mass ratio between the porous powder, water, adhesive and the additive agent is 1:(0.74):(0.030.1):(0.0050.07);

(11) Step 2: Obtaining air adsorbent particles by spray shaping, drying, and screening the sizing agent.

(12) By the method described above, air adsorbent particle with dimeters ranged between 350 micrometer and 450 micrometer have been made.

(13) The present disclosure also provides air adsorbent particles made by the method mentioned above, and air adsorbent particles comprise porous powder, water, adhesive and the additive agent with mass ratio therebetween 1:(0.74):(0.030.1):(0.0050.07).

(14) Specifically, the air adsorbent particles can be made by mixing molecular sieve, water, polyacrylate emulsion, and tween 20 with the mass ratio 1:1.5:0.09:0.005, and after spray shaping, drying screening, particles with diameters ranged 350 micrometer450 micrometer are obtained.

(15) Or specifically, the air adsorbent particles can be made by mixing molecular sieve, water, polyacrylate emulsion, and polyglycerol-2-triiso-stearate with the mass ratio 1:1.5:0.09:0.02, and after spray shaping, drying screening, particles with diameters ranged 350 micrometer450 micrometer are obtained.

(16) Or specifically, the air adsorbent particles can be made by mixing molecular sieve, water, polyacrylate emulsion, and polyethylene glycol with the mass ratio 1:1.5:0.09:0.04, and after spray shaping, drying screening, particles with diameters ranged 350 micrometer450 micrometer are obtained.

(17) The air adsorbent particles made by the method of the present application have high strength compared with related particles.

(18) Referring to FIG. 2, the present application further provides a speaker box 100 having a housing with an accommodating space 10, a spacer 2 in the accommodating space 10, and a speaker 3 received in the accommodating space 10. The spacer 2 divides the accommodating space 10 into a front cavity 11 and a rear cavity 12. The speaker 3 is received in the front cavity 11. Further, the speaker box 100 includes air adsorbent particles 4 described above. The particles 4 are filled in the rear cavity 12.

(19) It is to be understood, however, that even though numerous characteristics and advantages of the present exemplary embodiment have been set forth in the foregoing description, together with details of the structures and functions of the embodiment, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms where the appended claims are expressed.