Patent classifications
C01B15/01
Process of emitting of hydrogen peroxide vapor
Method of emitting peroxide vapors or mixtures thereof, where the hydrogen peroxide is placed into a vessel, whereupon an initiator, catalyst or their precursorferrocene is added, from which the initiator or catalyst is created by reaction with peroxide or peroxide mixture.
Process of emitting of hydrogen peroxide vapor
Method of emitting peroxide vapors or mixtures thereof, where the hydrogen peroxide is placed into a vessel, whereupon an initiator, catalyst or their precursorferrocene is added, from which the initiator or catalyst is created by reaction with peroxide or peroxide mixture.
Compositions comprising ionic liquids for decomposing peroxides
The invention relates to a composition for generating oxygen, comprising at least one oxygen source, and at least one ionic liquid comprising a cation and an anion, wherein the oxygen source is a peroxide compound, the ionic liquid is in the liquid state at least in a temperature range from 10 C. to +50 C., and the anion is selected from metallate anions.
Compositions comprising ionic liquids for decomposing peroxides
The invention relates to a composition for generating oxygen, comprising at least one oxygen source, and at least one ionic liquid comprising a cation and an anion, wherein the oxygen source is a peroxide compound, the ionic liquid is in the liquid state at least in a temperature range from 10 C. to +50 C., and the anion is selected from metallate anions.
METHOD, SYSTEM, AND APPARATUS FOR INHIBITING DECOMPOSITION OF HYDROGEN PEROXIDE IN GAS DELIVERY SYSTEMS
Provided herein are methods, systems, and apparatus for inhibiting decomposition of hydrogen peroxide gas through use of surface modification of production and delivery components.
Solid-phase catalyst for decomposing hydrogen peroxide and method for producing same
The present invention provides a solid-phase catalyst for decomposing hydrogen peroxide comprising a permanganate salt and a manganese (II) salt. The solid-phase catalyst stays a solid state in the form of nanoparticles at the time of hydrogen peroxide decomposition, and thus can be recovered for reuse and also has an excellent decomposition rate. In the method for producing a solid-phase catalyst for decomposing hydrogen peroxide according to the present invention, a solid-phase catalyst is produced from a solution containing a permanganate salt, a manganese (II) salt, and an organic acid, so that the produced solid-phase catalyst is precipitated as a solid component even after a catalytic reaction, and thus is reusable and environmentally friendly, and cost reduction can be achieved through the simplification of a catalyst production technique.
Solid-phase catalyst for decomposing hydrogen peroxide and method for producing same
The present invention provides a solid-phase catalyst for decomposing hydrogen peroxide comprising a permanganate salt and a manganese (II) salt. The solid-phase catalyst stays a solid state in the form of nanoparticles at the time of hydrogen peroxide decomposition, and thus can be recovered for reuse and also has an excellent decomposition rate. In the method for producing a solid-phase catalyst for decomposing hydrogen peroxide according to the present invention, a solid-phase catalyst is produced from a solution containing a permanganate salt, a manganese (II) salt, and an organic acid, so that the produced solid-phase catalyst is precipitated as a solid component even after a catalytic reaction, and thus is reusable and environmentally friendly, and cost reduction can be achieved through the simplification of a catalyst production technique.
ELECTROCHEMICAL REACTOR AND PROCESS
The electrochemical reactors disclosed herein provide novel oxidation and reduction chemistries and employ in-creased mass transport rates of materials to and from the surfaces of electrodes
ELECTROCHEMICAL REACTOR AND PROCESS
The electrochemical reactors disclosed herein provide novel oxidation and reduction chemistries and employ in-creased mass transport rates of materials to and from the surfaces of electrodes
Methods using ionic liquids for decomposing peroxides
The present invention relates to a method for generating oxygen, comprising providing at least one oxygen source, providing at least one ionic liquid, the ionic liquid comprising a cation and an anion, wherein the oxygen source is a hydrogen peroxide adduct compound which is at least partially soluble in the ionic liquid, the ionic liquid is in the liquid state at least in a temperature range from 10 C. to +50 C., and the anion is selected from metallate anions, and contacting the oxygen source and the ionic liquid.