Novel non-woven fabric capable of absorbing ammonia and deodorizing
By designing a three-layer inner layer and a honeycomb-groove breathable structure in the non-woven fabric, and embedding capsules and silver ion strips, the adsorption capacity of the non-woven fabric is enhanced, solving the problem of poor ammonia and deodorization effects, and achieving efficient filtration and diffusion as well as a skin-friendly feel.
Patent Information
- Application Number
- CN202520011497.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-01-03
AI Technical Summary
Existing non-woven fabrics are not effective in removing ammonia and odors, and their adsorption capacity is insufficient, failing to meet the needs of users.
It adopts a three-layer non-woven fabric inner layer and a honeycomb groove design for breathability, and has an embedded capsule body and silver ion strips to form a porous suction cup structure, which enhances adsorption capacity and deodorization effect.
It improves the adsorption tension and ammonia and odor removal effect of non-woven fabric, achieves good filtration and diffusion effect, meets the needs of users, and provides a skin-friendly feel.
Smart Images

Figure CN223701928U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to non - woven technology field, concretely is a novel ammonia -adsorbing and deodorization non - woven fabric. BACKGROUND
[0002] Non - woven fabric is suitable for agricultural film, shoemaking, tanning, mattress, mother and child quilt, decoration, chemical industry, printing, automobile, building material, furniture and other industries, and clothing lining, medical health disposable surgical gown, mask, cap, bed sheet, hotel disposable tablecloth, beauty, sauna and even today's fashion gift bag, boutique bag, shopping bag, advertising bag and so on. Environmental protection product, wide application, economic and practical.
[0003] The existing non - woven fabric has certain adsorption effect, but its ammonia removal and deodorization effect is not very obvious, and the adsorption energy tension of the non - woven fabric is poor, which cannot reach good practical filtering diffusion effect, so that the needs of the users cannot be met. UTILITY MODEL CONTENT
[0004] In view of the defects of the prior art, the utility model provides a novel ammonia -adsorbing and deodorization non - woven fabric to solve the problem that the existing non - woven fabric has certain adsorption effect, but its ammonia removal and deodorization effect is not very obvious, and the adsorption energy tension of the non - woven fabric is poor, which cannot reach good practical filtering diffusion effect, so that the needs of the users cannot be met.
[0005] To achieve the above object, the utility model is realized by the following technical scheme: a novel ammonia -adsorbing and deodorization non - woven fabric, including non - woven fabric inner layer, non - woven fabric outer layer, honeycomb slot, bottom lining, the top surface of non - woven fabric inner layer is closely attached to non - woven fabric outer layer, the honeycomb slot is equipped with two or more and is all laid in the inside of bottom lining, the non - woven fabric inner layer is closely attached to the top of honeycomb slot and bottom lining, the non - woven fabric inner layer and honeycomb slot are mutually breathable.
[0006] Through the mutual ventilation of the non - woven fabric inner layer and the honeycomb slot, the ammonia adsorption and deodorization in the honeycomb slot can be realized by the capsule body and the petal block matched with the specific structure, so that the non - woven fabric inner layer and the non - woven fabric outer layer are laid uniformly and adapt to the use stability of the bottom lining.
[0007] Preferably, the non - woven fabric inner layer is provided with three layers and is layered gradient composite superposition into an integral whole, so that the non - woven fabric inner layer can cover the honeycomb slot and be closely attached to the bottom lining together.
[0008] Through the three layers of non - woven fabric inner layer covering the honeycomb slot and the bottom lining, the ammonia gas emission is wrapped and collected into the ammonia adsorption effect of the honeycomb slot.
[0009] Preferably, the non - woven fabric outer layer is provided with three layers and is layered gradient composite superposition into an integral whole, so that the non - woven fabric outer layer can be closely attached to the non - woven fabric inner layer together.
[0010] The six-layer non-woven fabric surface is realized by three layers of non-woven fabric inner layer and three layers of non-woven fabric outer layer, ammonia gas overflow is prevented, ammonia absorption and ammonia removal are achieved.
[0011] Preferably, the honeycomb slot is provided with capsule bodies, petal blocks and through-hole bodies, the capsule bodies are inserted into the petal blocks, the petal blocks are provided with two upper and lower sides which are tightly attached to the through-hole bodies, and the petal blocks and the through-hole bodies are combined and arranged in the bottom lining.
[0012] The petal blocks in the through-hole bodies are arranged in the honeycomb slot, the petal blocks in the through-hole bodies are arranged in the honeycomb slot, a clamping opening is formed, and the small structure of the capsule body is pressed and absorbed to achieve the deep absorption effect of the non-woven fabric ammonia absorption porous suction cup.
[0013] Preferably, the capsule body is provided with a silver ion strip and a capsule core, the silver ion strip is spirally attached to the outer surface of the capsule core, and the capsule core is inserted into the petal block.
[0014] The silver ion strip contains silver ions, which are spirally wound on the outer surface of the capsule core to achieve the effect of diffusion of the silver ions, thereby achieving the effects of capsule pressure absorption, ammonia absorption and silver ion deodorization and ammonia removal.
[0015] The utility model provides a novel ammonia absorption and deodorization non-woven fabric, has the following beneficial effects:
[0016] The novel ammonia absorption and deodorization non-woven fabric is pressed and combined on the honeycomb slot by the non-woven fabric inner layer and the non-woven fabric outer layer, and then attached to the bottom lining, so that the embedded petal blocks in the capsule body are distributed in the upper and lower ends of the through-hole body hole, the silver ion strip and the capsule core form the deodorization and adsorption effect of silver ions, the composite core body of the absorption core is in the form of a capsule-shaped ellipsoid, the adsorption tension is also increased, the integrated effect of ammonia gas elimination and absorption is guaranteed, the adsorption tension of the multiple capsule cores matched with the petal blocks in the through-hole body for ammonia removal and deodorization is combined with the filtering diffusion effect, thereby meeting the needs of users for ammonia removal and deodorization, and the adsorption uses the skin feeling, which is excellent. ACCOUT OF DRAWINGS
[0017] Figure 1 It is a three-dimensional structure schematic diagram of the novel ammonia absorption and deodorization non-woven fabric of the utility model;
[0018] Figure 2 It is an explosion layered three-dimensional structure schematic diagram of the non-woven fabric inner layer of the utility model;
[0019] Figure 3 It is an explosion layered three-dimensional structure schematic diagram of the non-woven fabric outer layer of the utility model;
[0020] Figure 4 It is the three-dimensional structure schematic view of the honeycomb slot of the utility model;
[0021] Figure 5 It is the three-dimensional structure schematic view of the capsule body of the utility model.
[0022] In the drawing: non-woven fabric inner layer 1, non-woven fabric outer layer 2, honeycomb slot 3, bottom lining surface 4, capsule body 31, petal block 32, through-hole body 33, silver ion strip 311, capsule core 312. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0024] Please refer to Figures 1-5 The utility model provides a novel ammonia-absorbing deodorization non-woven fabric, including non-woven fabric inner layer 1, non-woven fabric outer layer 2, honeycomb slot 3, bottom lining surface 4, the non-woven fabric inner layer 1 top surface is closely attached with non-woven fabric outer layer 2, the honeycomb slot 3 is equipped with two or more and all is laid in the inside of bottom lining surface 4, the non-woven fabric inner layer 1 is closely attached to the top of honeycomb slot 3 and bottom lining surface 4, the non-woven fabric inner layer 1 and honeycomb slot 3 are mutually breathable.
[0025] Because the existing non-woven fabric has certain adsorption effect, but its ammonia-removing and deodorization effect is not very obvious, and the adsorption tension of non-woven fabric is poor, cannot reach good practical filtering diffusion effect, leads to the defect that cannot satisfy the demand of user.
[0026] It should be noted that the ammonia-absorbing deodorization in the honeycomb slot 3 can be realized by the capsule body 31 and petal block 32 matched through the specific structure, and the non-woven fabric inner layer 1 and the non-woven fabric outer layer 2 are laid homogeneously and adapt to the bottom lining surface 4 for stable use.
[0027] The non-woven fabric inner layer 1 is provided with three layers and is layered gradient composite and is integrated, so that the non-woven fabric inner layer 1 can cover the honeycomb slot 3 and be closely attached to the bottom lining surface 4 together.
[0028] It should be noted that the non-woven fabric inner layer 1 covers the honeycomb slot 3 and the bottom lining surface 4 by three layers, so that the ammonia gas emission is wrapped and collected into the ammonia-absorbing effect of the honeycomb slot 3.
[0029] The non-woven fabric outer layer 2 is provided with three layers and is layered gradient composite and is integrated, so that the non-woven fabric outer layer 2 can be closely attached to the non-woven fabric inner layer 1 together.
[0030] Need to explain, through the non-woven fabric inner layer 1 three layer superposition non-woven fabric outer layer 2 three layer realize ultra-thin six layer non-woven fabric surface can be wrapped to prevent ammonia gas overflow to ammonia absorption and ammonia removal cooperation coverage effect.
[0031] The said honeycomb slot 3 is provided with capsule body 31, petal block 32, through hole body 33, the said capsule body 31 is provided with two or more and is inserted in the inside of petal block 32, the said petal block 32 is provided with two and is respectively close to the upper and lower sides in the through hole body 33, the said petal block 32 and through hole body 33 combination all have two or more and are all laid in the inside of bottom lining 4.
[0032] Need to explain, through the capsule body 31 multiple built-in petal block 32, let the petal block 32 in the through hole body 33 alignment set up forms a clamp and cooperate capsule body 31 small structure capsule pressure adsorption tension, reach non-woven fabric ammonia absorption porous suction cup type depth adsorption effect.
[0033] The said capsule body 31 is provided with silver ion strip 311, capsule core 312, the said silver ion strip 311 is spirally close together around the outer surface of capsule core 312, the said capsule core 312 is provided with two or more and is inserted in the inside of petal block 32.
[0034] Need to explain, through the silver ion strip 311 contains silver ion in the outer surface of capsule core 312 forms spiral winding after the diffusion effect of silver ion, thereby achieving capsule pressure adsorption ammonia absorption and silver ion deodorization ammonia removal effect, silver ion for ammonia gas oxidation degradation and high efficiency of odor oxidation decomposition.
[0035] The staff through the non-woven fabric inner layer 1 and non-woven fabric outer layer 2 in honeycomb slot 3 after sticking bottom lining 4, make the capsule body 31 embedded petal block 32 present multiple distribution in the upper and lower ends of through hole body 33 hole, let silver ion strip 311 and capsule core 312 form silver ion deodorization adsorption effect, and the composite core of absorption core itself is also increased adsorption tension, guarantee ammonia gas elimination absorption integrated effect, improve multiple capsule core 312 matching petal block 32 in through hole body 33 ammonia removal and deodorization adsorption tension combination filtering diffusion effect, thereby meeting the needs of users to remove ammonia and deodorization, and adsorption use skin feel is excellent.
[0036] The above, only for the specific embodiments of the present application, but the protection scope of the present application is not limited to this, any skilled in the art of the technical personnel in the technical range disclosed in the present application, can easily think of changes or replacement, should be covered in the protection scope of the present application.
Claims
1. A novel ammonia-adsorbable deodorizing nonwoven fabric, characterized by comprising: a nonwoven fabric; and an ammonia-adsorbable deodorizing agent applied to the nonwoven fabric. The utility model provides a honeycomb groove (3), bottom lining (4), non -woven fabric inner layer (1), non -woven fabric outer layer (2) are included, non -woven fabric inner layer (1) top face is closely attached with non -woven fabric outer layer (2), the honeycomb groove (3) is equipped with two or more and is laid in the inside of bottom lining (4), and non -woven fabric inner layer (1) is closely attached to the top of honeycomb groove (3) and bottom lining (4), and non -woven fabric inner layer (1) and honeycomb groove (3) are mutually breathable.
2. A novel ammonia-adsorbable deodorizing nonwoven fabric according to claim 1, characterized by: The non -woven fabric inner layer (1) is provided with three layers and is layered gradient composite superposition into an organic whole, so that the non -woven fabric inner layer (1) can cover the honeycomb groove (3) and be closely attached together with the bottom lining (4).
3. A novel ammonia-adsorbable deodorizing nonwoven fabric according to claim 1, characterized in that: The non -woven fabric outer layer (2) is provided with three layers and is layered gradient composite superposition into an organic whole, so that the non -woven fabric outer layer (2) can be closely attached together with the non -woven fabric inner layer (1).
4. The novel ammonia-adsorbable deodorant nonwoven fabric according to claim 1, wherein: The honeycomb groove (3) is provided with capsule body (31), petal block (32), through-hole body (33), the capsule body (31) is provided with two or more and is inserted in the inside of petal block (32), the petal block (32) is provided with two and is closely attached to the upper and lower sides in through-hole body (33) respectively, and the petal block (32) and through-hole body (33) combination all are two or more and are laid in the inside of bottom lining (4).
5. A novel nonwoven ammonia-adsorbing and deodorizing fabric according to claim 4, characterized in that: The capsule body (31) is provided with silver ion strip (311), capsule core (312), the silver ion strip (311) is closely attached together around the outer surface of capsule core (312) spiral, and the capsule core (312) is provided with two or more and is inserted in the inside of petal block (32).