D04H1/435

Ultrafiltration process for producing a sulfopolyester concentrate

A process for recovering a primary polymer concentrate stream is provided. The process comprises routing a second mother liquor stream to a primary concentration zone to remove water from the second mother liquor stream to produce the primary polymer concentrate stream; wherein the primary concentration zone comprises at least one ultrafiltration membrane. A process is also provided to recover sulfopolyester from the primary polymer concentrate stream and to produce articles therefrom.

Dimensionally stable nonwoven fibrous webs and methods of making and using the same

Dimensionally stable nonwoven fibrous webs include a multiplicity of continuous fibers formed from one or more thermoplastic polyesters and polypropylene in an amount greater than 0% and no more than 10% by weight of the web. The webs have at least one dimension which decreases by no greater than 10% in the plane of the web when heated to a temperature above a glass transition temperature of the fibers. When the thermoplastic polyester is selected to include aliphatic and aromatic polyesters, a spunbond process may be used to produce substantially continuous fibers that exhibit molecular orientation. When the thermoplastic polyester is selected from aliphatic polyesters, a meltblown process may be used to produce discontinuous fibers that do not exhibit molecular orientation. The webs may be used as articles for filtration, sound absorption, thermal insulation, surface cleaning, cellular growth support, drug delivery, personal hygiene, medical apparel, or wound dressing.

Dimensionally stable nonwoven fibrous webs and methods of making and using the same

Dimensionally stable nonwoven fibrous webs include a multiplicity of continuous fibers formed from one or more thermoplastic polyesters and polypropylene in an amount greater than 0% and no more than 10% by weight of the web. The webs have at least one dimension which decreases by no greater than 10% in the plane of the web when heated to a temperature above a glass transition temperature of the fibers. When the thermoplastic polyester is selected to include aliphatic and aromatic polyesters, a spunbond process may be used to produce substantially continuous fibers that exhibit molecular orientation. When the thermoplastic polyester is selected from aliphatic polyesters, a meltblown process may be used to produce discontinuous fibers that do not exhibit molecular orientation. The webs may be used as articles for filtration, sound absorption, thermal insulation, surface cleaning, cellular growth support, drug delivery, personal hygiene, medical apparel, or wound dressing.

FUNCTIONALIZED AND/OR DOPED FIBERS
20250108146 · 2025-04-03 ·

The disclosure provides a fiber, comprising a biocompatible polymer and melanin, or a fibrous assembly comprising the fiber, a system for fabricating a fibrous assembly, a method for fabricating a fibrous assembly, a method of producing a fiber, and a semiconductor.

FUNCTIONALIZED AND/OR DOPED FIBERS
20250108146 · 2025-04-03 ·

The disclosure provides a fiber, comprising a biocompatible polymer and melanin, or a fibrous assembly comprising the fiber, a system for fabricating a fibrous assembly, a method for fabricating a fibrous assembly, a method of producing a fiber, and a semiconductor.

LIGHT SAFETY SHOE
20250107593 · 2025-04-03 ·

The present invention relates to a light safety shoe (1), comprising:an upper (2); a sole (3) made by means of injection molding directly onto said upper (2); a safety toecap (4) placed at the toe of the shoe (1);a anti-puncture sheet (9) housed in said sole (3);a functional insert (7) placed within said sole (3), below said anti-puncture sheet (9). According to the invention, the light safety shoe (1) has, with reference to a European size 42, a weight lower or equal to 400 grams.

LIGHT SAFETY SHOE
20250107593 · 2025-04-03 ·

The present invention relates to a light safety shoe (1), comprising:an upper (2); a sole (3) made by means of injection molding directly onto said upper (2); a safety toecap (4) placed at the toe of the shoe (1);a anti-puncture sheet (9) housed in said sole (3);a functional insert (7) placed within said sole (3), below said anti-puncture sheet (9). According to the invention, the light safety shoe (1) has, with reference to a European size 42, a weight lower or equal to 400 grams.

NANOPARTICLE FEED SYSTEMS FOR MANUFACTURING FILTER MEDIA
20250100008 · 2025-03-27 ·

Systems, devices and methods are provided for producing a product comprising a filter media, such as a gas or liquid filter. A feed system for conveying nanoparticles comprises a container for receiving clusters of nanoparticles and one or more vibration elements coupled to the container and configured to pulse the clusters of nanoparticles to convey the clusters of nanoparticles through the container. The feed system further comprises one or more components for converting the clusters of nanoparticles into a group of nanoparticles having a smaller mass or volume than the cluster of nanoparticles. The system both conveys and breaks down the clusters of nanoparticles, allowing them to be transported from the bulk bin to the filter manufacturing apparatus to form a filter media with improved quality and yield and reduced cost and time. In addition, the system is scalable and produces filter media with less variation.

NANOPARTICLE FEED SYSTEMS FOR MANUFACTURING FILTER MEDIA
20250100008 · 2025-03-27 ·

Systems, devices and methods are provided for producing a product comprising a filter media, such as a gas or liquid filter. A feed system for conveying nanoparticles comprises a container for receiving clusters of nanoparticles and one or more vibration elements coupled to the container and configured to pulse the clusters of nanoparticles to convey the clusters of nanoparticles through the container. The feed system further comprises one or more components for converting the clusters of nanoparticles into a group of nanoparticles having a smaller mass or volume than the cluster of nanoparticles. The system both conveys and breaks down the clusters of nanoparticles, allowing them to be transported from the bulk bin to the filter manufacturing apparatus to form a filter media with improved quality and yield and reduced cost and time. In addition, the system is scalable and produces filter media with less variation.

NONWOVEN COMPOSITE GEOTEXTILE SILT FENCE FOR TRENCH AND TRENCHLESS INSTALLATION AND GEOTEXTILE THEREFORE
20250101703 · 2025-03-27 ·

A silt fence includes a plurality of spaced stakes; and a nonwoven needle punched geotextile including a combination of a synthetic fiber blend and natural fibers, wherein the synthetic fiber blend includes a blend of polypropylene fibers and high tenacity polyester fibers.