Material and methods are disclosed involving the generation and containment of solutions incorporating reactive precursors and reactive treatment agents. Formulations of these materials can be applied widely as disinfectants, odor control agents, decontamination and fumigation agents, liquid, gas, a
Material and methods are disclosed involving the generation and containment of solutions incorporating reactive precursors and reactive treatment agents. Formulations of these materials can be applied widely as disinfectants, odor control agents, decontamination and fumigation agents, liquid, gas, and air treatment materials, respiratory agents, food and beverage processing agents, neutralization agents, and in many industrial, residential, medical and military surface treatment operations.
대표청구항▼
1. A composition for the generation and storage of a reactive gas consisting of: one or more particles consisting of one or more super-absorbent polymers, anda solvent containing one or more dissolved reactive gas precursors, wherein the solvent is absorbed to the one or more super-absorbent polymer
1. A composition for the generation and storage of a reactive gas consisting of: one or more particles consisting of one or more super-absorbent polymers, anda solvent containing one or more dissolved reactive gas precursors, wherein the solvent is absorbed to the one or more super-absorbent polymers, andat least one or more of an inhibiting chemical agent able to stabilize the generation of the reactive gas, a suspended agent, and a dissolved agent, wherein the inhibiting chemical agent is a base. 2. The composition of claim 1, wherein the reactive gas precursors are selected from a cation, inorganic acid, organic acid, oxidation agent, reduction agent, base, anion, soluble salt, and combinations thereof. 3. The composition of claim 2, wherein the anion is selected from a chlorite, chlorate, sulfite, bisulfite, sulfide, sulfate, carbonate, bicarbonate, cyanide, hypochlorite, nitrite, nitrate, hydroxide, chloride, bromide, iodide, and fluoride anion. 4. The composition of claim 2, wherein the oxidizing agent is selected from hypochlorite, hypochlorous acid, ozone, peroxide, and monopersulfate. 5. The composition of claim 1, wherein the gas is a halogen-containing gas, a carbon containing gas, an oxygen-containing gas, a phosphorous-containing gas, a sulfur-containing gas, or a nitrogen-containing gas. 6. The composition of claim 5, wherein the gas is chlorine, bromine, iodine, carbon dioxide, oxygen, nitrogen, sulfur dioxide, hydrogen sulfide, hydrogen cyanide, chlorine monoxide, chlorine dioxide, nitrogen monoxide, and nitrogen dioxide. 7. The composition of claim 1, wherein the solvent is a polar liquid, a non-polar liquid, or a combination thereof. 8. The composition of claim 1, wherein the one or more particles is a liquid absorber incorporating natural or synthetic polymers of organic, inorganic, or combined origin. 9. The composition of claim 1, wherein the particle is a liquid absorber incorporating natural or synthetic minerals. 10. The composition of claim 1, wherein the one or more super-absorbent polymers is a polyacrylic acid, a polyacrylamide or a copolymer thereof. 11. The composition of claim 1, wherein the composition is packaged in a gas permeable packaging material that allows gas transport but not liquid transport. 12. The composition of claim 1 wherein the composition comprises a gas concentration high enough to impart color to the composition. 13. The composition of claim 1, wherein the suspended agent comprises polycarbonate, polycarbonate derivatives, or combinations thereof. 14. The composition of claim 1, wherein a first reactive gas precursor is selected from a cation, inorganic acid, organic acid, and oxidation agent, and a second reactive gas precursor is selected from a reduction agent, base, anion, and soluble salt.
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