Multilayer powder for enhancing the exchange between suspended microparticles and oxygen, and its manufacturing system

A multilayer powder with a plant-derived core and protective layers addresses the inefficacy of existing pollutant reduction methods by enhancing oxygen exchange and adsorbing pollutants, ensuring stable production and improved health outcomes.

DE202025105366U1Active Publication Date: 2025-11-20TOSAKA INT
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Patent Information

Application Number
DE202025105366
Authority / Receiving Office
DE · DE
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-09-10
Publication Date
2025-11-20
Estimated Expiration
2035-09-30

AI Technical Summary

Technical Problem

Existing solutions are inadequate in effectively reducing the impact of environmental pollutants, particularly PM2.5 particles, on human health, and there is a need for a more efficient and safer method to enhance the exchange between suspended microparticles and oxygen.

Method used

A multilayer powder comprising a core with an active ingredient derived from plants like honeysuckle, mint, eucalyptus, platycodon, and grape, coated with a moisture protection and protective layer, produced through a standardized manufacturing system involving a raw material preparation, coating, and packaging process.

Benefits of technology

The multilayer powder effectively adsorbs pollutants, enhances oxygen exchange, and maintains core activity by protecting it from environmental influences, thereby reducing health risks from suspended microparticles and improving lung function.

✦ Generated by Eureka AI based on patent content.

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Abstract

Multilayer powder for enhancing the exchange between suspended microparticles and oxygen (10), comprising: a core (20) which contains at least one active ingredient, the active ingredient being derived from a plant; a moisture protection layer (30) applied to the surface of the core (20); a protective layer (40) applied to the surface of the moisture protection layer (30).
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Description

Technical field

[0001] The present invention relates to an object structure and a system for its production, in particular a multilayer powder for enhancing the exchange between suspended microparticles and oxygen, and its production system. State of the art

[0002] With the development of science and industry, the concentration of pollutants in the air increases year by year and has become one of the major environmental factors affecting human health. In 2013, the World Health Organization classified outdoor air pollution as a Group 1 carcinogen. Outdoor air pollution refers specifically to suspended particles (outdoor particulate matter, PM), such as particles with a diameter of 2.5 micrometers or less (PM2.5) and particles with a diameter of 2.5–10 micrometers (PM10).

[0003] Sources of PM2.5 include exhaust fumes from cars and motorcycles, dust, cigarette smoke, pollen, and polycyclic aromatic hydrocarbons present in the air. Due to their extremely small particle diameter, PM2.5 particles can enter the bloodstream via the respiratory system, potentially causing illnesses such as respiratory inflammation, bronchial diseases, chronic obstructive pulmonary disease (COPD), and a reduction in heart and lung function. In the long term, this leads to an increased rate of lung cancer.

[0004] Due to the aforementioned problems, the state of the art is already focused on developing products to improve air exchange or purification within the body. However, there remains a need to more effectively reduce the impact of environmental pollutants on human health and to provide a more efficient and safer solution for improvement. Contents

[0005] The main purpose of the present invention is to provide a multilayer powder for enhancing the exchange between suspended microparticles and oxygen, and its manufacturing system, wherein a multilayer powder of stable quality is produced by a standardized process, exhibiting activity for adsorbing pollutants in the air, so that it can be used in health foods or in cleaning products for the domestic sector.

[0006] Accordingly, the present invention discloses, for the aforementioned purpose, a multilayer powder for enhancing the exchange between suspended microparticles and oxygen, which essentially comprises a core and a multilayer structure, wherein the core contains at least one active ingredient and the multilayer structure is applied to the surface of the core.

[0007] The active ingredient comes from a plant such as honeysuckle (Lonicera japonica), mint (Mentha), eucalyptus (Eucalyptus), platycodon (Platycodon grandiflorus), grape (Vitis vinifera), loquat (Eriobotrya japonica), pineapple (Ananas comosus) or a combination of two of the aforementioned plants.

[0008] For example, the active ingredient includes loquat leaf extract (Eriobotrya japonica), eucalyptus oil (Eucalyptus), bromelain from pineapple (Ananas comosus) and grape seed extract (Vitis vinifera).

[0009] The multi-layer structure comprises a moisture protection layer and a protective layer, with the moisture protection layer being applied to the surface of the core and the protective layer covering the surface of the moisture protection layer.

[0010] In a further embodiment of the present invention, a manufacturing system for a multilayer powder for enhancing the exchange between suspended microparticles and oxygen is disclosed, which serves to produce the aforementioned multilayer powder. The manufacturing system essentially comprises a raw material preparation unit and a coating unit, wherein the raw material preparation unit serves to subject a plant-based starting material to a processing process in order to produce a core. The coating unit is arranged downstream of the raw material preparation unit and is designed to receive the core and subject it to a coating process in order to produce a powder with a multilayer structure.

[0011] The coating unit comprises a first coating unit and a second coating unit.

[0012] In a further embodiment of the present invention, the manufacturing system for the multilayer powder for enhancing the exchange between suspended microparticles and oxygen further comprises a packaging unit which is arranged behind the coating unit and serves to receive the powder with the multilayer structure and to subject it to packaging processing in order to produce a product. Drawing description Fig. Figure 1 is a schematic representation of the multilayer powder disclosed in the first embodiment of the present invention for enhancing the exchange between suspended microparticles and oxygen. Fig. Figure 1 is a schematic representation of the manufacturing system for the multilayer powder disclosed in the second embodiment of the present invention for enhancing the exchange between suspended microparticles and oxygen. Designs

[0013] The present invention discloses a multilayer powder for enhancing the exchange between suspended microparticles and oxygen, and its manufacturing system. Specifically, the manufacturing system disclosed within the scope of the present invention for a multilayer powder for enhancing the exchange between suspended microparticles and oxygen essentially comprises a raw material preparation unit and a coating unit, which serve to process at least one plant-based starting material into a multilayer powder through a processing and a coating process. The manufacturing system disclosed within the scope of the present invention for a multilayer powder for enhancing the exchange between suspended microparticles and oxygen is capable of producing the powder through a standardized process, thus achieving stable production quality and reducing production costs.

[0014] Furthermore, the multilayer powder comprises a core and a layered structure. The core exhibits activity for adsorbing suspended microparticles and increasing the exchange rate between suspended microparticles and oxygen. The layered structure is applied to the surface of the core and serves to prevent environmental influences from impairing the core's activity.

[0015] The layered structure comprises a moisture protection layer and a protective layer, which are arranged on the surface of the core in the order mentioned.

[0016] For a more detailed explanation of the present invention, a preferred embodiment is described below with reference to illustrations.

[0017] With reference to Fig. Figure 1 shows a preferred embodiment of the present invention, the multilayer powder for enhancing the exchange between suspended microparticles and oxygen (10), which essentially comprises a core (20), a moisture protection layer (30) and a protective layer (40), wherein: The core (20) contains an active ingredient, the active ingredient being derived from several plants and comprising a loquat leaf extract (Eriobotrya japonica), eucalyptus oil (Eucalyptus), bromelain from pineapple (Ananas comosus) and grape seed extract (Vitis vinifera). The moisture protection layer (30) is applied to the surface of the core (20) and serves to prevent damage to the core (20) from ambient moisture. The moisture protection layer is made from one of the following materials: ethylcellulose, chitosan, gelatin, alginate, pectin, or a substance known to a person skilled in the art in the field of the present invention for repelling moisture.

[0018] The protective layer (40) is applied to the surface of the moisture barrier layer (30) and serves to block undesirable flavors and / or to modify the appearance or feel of the powder in order to increase consumer acceptance and recognition. For example, the protective layer is made from one of the following materials: food-grade silicon dioxide, hydroxypropyl methylcellulose, β-carotene, curcumin, microcrystalline cellulose powder, food-grade menthol, or a natural colorant known to a person skilled in the art in the technical field of the present invention.

[0019] Due to the composition of the aforementioned components, the multilayer powder disclosed within the scope of the present invention for enhancing the exchange between suspended microparticles and oxygen (10) via the core (20) exhibits activities such as the adsorption of suspended microparticles and the increase of the exchange rate between suspended microparticles and oxygen. Therefore, by using a composition containing the multilayer powder (10) disclosed within the scope of the present invention, the harmful effects of suspended microparticles in the air on the lungs or bronchi can be reduced, thereby promoting heart and lung function and improving health.

[0020] Furthermore, the double-layer structure formed by the moisture protection layer (30) and the protective layer (40) prevents direct contact of the core (20) with the air and protects it from impairment by environmental influences such as humidity or temperature. This not only ensures the continued activity of the core (20) but also improves its durability and transportability.

[0021] With reference to Fig. The second embodiment of the present invention discloses a manufacturing system for a multilayer powder for enhancing the exchange between suspended microparticles and oxygen (90), which essentially comprises a raw material preparation unit (91), a coating unit (92) and a packaging unit (93), wherein: The raw material processing unit (91) serves to receive a plant-based starting material and to process it into a core particle through a processing process. A coating unit (92) is arranged behind the raw material preparation unit (91) and comprises a first coating unit (921) which serves to receive the core particles and subject them to a first coating process, so that a first outer layer is applied to the surface of the core particles, and a second coating unit (922) which serves to receive the core particles and subject them to a second coating process, so that a second outer layer is applied to the surface of the first outer layer, thereby producing a powder with a multilayer structure. A packaging unit (93) is arranged behind the coating unit (92) and serves to receive the powder with the multilayer structure and subject it to a packaging process to obtain a product. The packaging process includes, for example, placing the powder into a container or mixing it with other components to form mixtures in different dosage forms.

[0022] The composition of the aforementioned components enables the manufacturing system disclosed within the scope of the present invention for the multilayer powder for enhancing the exchange between suspended microparticles and oxygen (90) to standardize the individual processing steps in the manufacturing process, thus ensuring the production of a product with stable quality while effectively controlling manufacturing efficiency and costs. The foregoing explanations based on preferred embodiments of the present invention serve only to clarify the patent claim and description and do not constitute a limitation of the purpose of the present invention. Therefore, simple modifications or variations with respect to the disclosed technical features are also intended to fall within the scope of protection of the present invention.

[0023] The present invention relates to a multilayer powder for enhancing the exchange between suspended microparticles and oxygen, and its manufacturing system. The disclosed multilayer powder for enhancing the exchange between suspended microparticles and oxygen comprises a core and a layered structure, wherein the core has the effect of increasing the efficiency of the exchange of oxygen with suspended microparticles; the layered structure is applied to the surface of the core. The disclosed manufacturing system essentially comprises a raw material preparation unit and a coating unit, which serve to process at least one plant-based starting material into the said multilayer powder by means of a processing process and a coating process.

Claims

[1] Multilayer powder for enhancing the exchange between suspended microparticles and oxygen (10), comprising: a core (20) which contains at least one active ingredient, the active ingredient being derived from a plant; a moisture protection layer (30) applied to the surface of the core (20); a protective layer (40) applied to the surface of the moisture protection layer (30). [2] Multilayer powder for enhancing the exchange between suspended microparticles and oxygen (10) according to claim 1, characterized by that the plant is honeysuckle (Lonicera japonica), mint (Mentha), eucalyptus (Eucalyptus), platycodon (Platycodon grandiflorus), grape (Vitis vinifera), loquat (Eriobotrya japonica), pineapple (Ananas comosus) or a combination of at least two of the aforementioned plants. [3] Multilayer powder for enhancing the exchange between suspended microparticles and oxygen (10) according to claim 2, characterized by , that the active ingredient includes an extract of loquat leaves (Eriobotrya japonica), eucalyptus oil (Eucalyptus), bromelain from pineapple (Ananas comosus) and grape seed extract (Vitis vinifera). [4] Multilayer powder for enhancing the exchange between suspended microparticles and oxygen (10) according to claim 1, characterized by that the moisture barrier layer consists of at least one of the following materials: ethylcellulose, chitosan, gelatin, alginate and pectin. [5] Multilayer powder for enhancing the exchange between suspended microparticles and oxygen (10) according to claim 1, characterized by , that the protective layer consists of at least one of the following materials: food-grade silicon dioxide, hydroxypropyl methylcellulose, β-carotene, curcumin and microcrystalline cellulose powder. [6] System for producing a multilayer powder to enhance the exchange between suspended microparticles and oxygen (90) comprising: a raw material processing unit (91) which serves to receive a plant-based starting material and to process it into a core particle by means of a processing step; a coating unit (92) which is arranged downstream of the raw material preparation unit (91) and serves to receive the core particle and subject it to a coating process in order to obtain a powder with a multilayer structure. [7] System for producing a multilayer powder for enhancing the exchange between suspended microparticles and oxygen (90) according to claim 6, characterized by , that the coating unit (92) comprises a first coating unit (921) and a second coating unit (922). [8] System for producing a multilayer powder for enhancing the exchange between suspended microparticles and oxygen (90) according to claim 6, characterized by , further comprising a packaging unit (93) arranged behind the coating unit (92) to receive the multilayer powder and subject it to a packaging treatment, thereby obtaining a product.