B01J20/264

SORBENT PARTICLES FOR SAMPLE TREATMENT

Novel sorbents, devices, kits and methods useful for sample treatment are disclosed herein.

Composite granules including metal-containing polymeric materials

Composite granules that include metal-containing polymeric materials, and composite granules that include metal complex-containing polymeric materials are provided. The polymeric materials are divinylbenzene/maleic anhydride polymers, partially hydrolyzed divinylbenzene/maleic anhydride polymers, or fully hydrolyzed divinylbenzene/maleic anhydride polymers. Additionally, methods of using the composite granules that include metal-containing polymeric materials to capture volatile, basic nitrogen-containing compounds and methods of using composite granules that include zinc-containing polymeric material to detect the presence of water vapor are provided.

Organic polymer adsorbent, composition of organic polymer adsorbent and method of manufacturing thereof
11413602 · 2022-08-16 · ·

The present invention relates to an organic polymer adsorbent, an organic polymer adsorbent composition, and a method for preparing an organic polymer adsorbent and, more specifically, to an organic polymer adsorbent to be used for a ventilation device such as a desiccant dehumidifier. According to the present invention, an adsorbent material is changed to an organic polymer adsorbent such that the mechanical stability and durability of the material itself can be ensured, and the specific surface area of interconnected inner pores and adsorbents and the size of formed pores can be controlled since toluene is contained as a pore generator of the adsorbent. Therefore, the adsorbent of the present invention has superior adsorption performance over that of other conventional organic polymer adsorbents containing a salt-type carboxyl group and has remarkably improved desorption performance, and thus has an effect of very remarkable energy efficiency.

Sorbent particles for sample treatment

Sorbents, devices, kits and methods useful for sample treatment are disclosed herein. In particular embodiments, described are inorganic/organic hybrid sorbent particles comprising (a) a core region that comprises a silica component and (b) a surface region that comprises an organic copolymer comprising at least one hydrophobic organic monomer and at least one hydrophilic organic monomer.

POROUS ORGANIC CAGES FOR QUANTUM SIEVING

The present invention relates to methods of preferentially sorbing, from a target mixture, one or more target substance(s) over one or more non-target substance(s). In particular, porous organic cages (POCs) may be deployed in the quantum sieving of mixtures of hydrogen isotopes to selectively sorb heavy hydrogen isotopes (e.g. diatomic deuterium) over lighter isotopes (diatomic protium).

Polymers, methods for preparing same, and uses thereof particularly for metal capture

Disclosed are novel polymers that contain monomer units derived from 4-vinylpyridine and monomer units derived from a co-monomer. The polymers may be complexed with a metal, and linear or crosslinked. Also disclosed are methods for preparing these polymers by radical polymerization, as well as to their use for metal capture in aqueous media, particularly uranium capture in seawater or in final nuclear waste from nuclear power plants.

BLOOD PURIFIER

Provided is a blood purifier which includes a porous formed body and which has excellent blood compatibility, in which platelets are unlikely to adhere, has good cytokine adsorption capacity, and low pressure loss before and after treating blood, and can be safely used. Disclosed is a blood purifier having a body container, and a porous formed body accommodated in the body container. The porous formed body contains a hydrophobic polymer and a hydrophilic polymer, the low-melting-point water content per 1 g of dry weight of the porous formed body is 0.12-2.00 g, the rate of contact change of the porous formed body is 0-0.2%, and the adhering amount of platelets per 1 mL of blood is 0.400 billion/mL or less when brining the blood into contact with the porous formed body.

BLOOD PURIFIER

A blood purifier includes a porous molded body; exhibits an excellent blood compatibility wherein platelet adherence is inhibited and exhibits a good cytokine adsorption capacity and a low pressure loss before and after blood treatment; and can be safely used. A blood purifier includes a main vessel and a porous molded body housed in the main vessel. The porous molded body contains a hydrophobic polymer and a hydrophilic polymer. The amount of low-melting-point water per 1 g of dry weight of the porous molded body is 0.12 g to 2.00 g. The contact change ratio for the porous molded body is 0% to 0.2%. The ratio L/D is 1.00 to 2.30 where, for the region taken up by the porous molded body in the main vessel, L is the length in the flow direction and D is the circle-equivalent diameter of the cross section in the direction perpendicular to the flow direction.

Absorbent material composition, manufacture, and method of use
11285457 · 2022-03-29 ·

A method for absorbing liquids, such as liquid hydrocarbons, includes applying recycled carpet material to the liquid. The recycled carpet material is prepared by shredding carpet and removing fibers from the shredded carpet to obtain carpet backing material. The carpet backing material may be further treated to remove fibers. The carpet backing material is then applied to the liquid.

SUPER-ADSORBING POROUS THERMO-RESPONSIVE DESICCANTS

The present disclosure relates to thermo-responsive hydrogel composite (TRHC) desiccants having high adsorption capacities, fast adsorption/desorption rates, and low regeneration temperatures (T.sub.reg) compared to traditional desiccants. In some embodiments of the present disclosure, TRHC desiccants may be synthesized by freeze drying. In some embodiments of the present disclosure, the porous structures resulting from freeze drying copolymers of thermo-responsive polymers and/or hygroscopic agents may be combined with hygroscopic inorganic salts, resulting in TRHC desiccants having superior performance properties.