Patent classifications
A23B7/10
Stable compositions of uncomplexed iodine and methods of use
The present invention is directed to a composition in solution (often, an aqueous solution) which comprises a combination of molecular iodine (I.sub.2) and an acceptable source of iodate (IO.sub.3), and an acid (inorganic or organic), wherein iodide and iodate are present in the composition at a molar ratio of about 0.1 to about 25, the concentration of uncomplexed molecular iodine is a disinfectant, biocidal and/or antimicrobial (depending upon the end use of the composition) effective amount the concentration of acid in the composition is effective to provide a buffering pH in the composition ranging from about 1.5 to about 6.5. Compositions according to the present invention are storage stable for unexpectedly long periods of time (up to about 5 years), and find use as disinfecting solutions, as germicides and/or biocides (e.g. antiviral, antibacterial, antifungal, antispore etc.) for various surfaces and solutions including living and inanimate surfaces and are particularly useful because of their low cost, their reduced use of iodine, their activity (because of the high concentration of free molecular iodine in solution), their reduced environmental impact, their long term storage stability and their reduced toxicity. They also have particular utility in treating food surfaces to retard spoilage, increase useful shelf-life and minimize the human and economic cost of food waste. The compositions inactivate viruses, bacteria (both gram negative and positive), spores and fungi. Compositions according to the present invention may be used and stored in a variety of materials, given the substantial absence of corrosion (non-corrosive) these compositions display. Dental compositions (e.g. preprocedure rinses and other compositions) and methods related thereto are also disclosed.
Stable compositions of uncomplexed iodine and methods of use
The present invention is directed to a composition in solution (often, an aqueous solution) which comprises a combination of molecular iodine (I.sub.2) and an acceptable source of iodate (IO.sub.3), and an acid (inorganic or organic), wherein iodide and iodate are present in the composition at a molar ratio of about 0.1 to about 25, the concentration of uncomplexed molecular iodine is a disinfectant, biocidal and/or antimicrobial (depending upon the end use of the composition) effective amount the concentration of acid in the composition is effective to provide a buffering pH in the composition ranging from about 1.5 to about 6.5. Compositions according to the present invention are storage stable for unexpectedly long periods of time (up to about 5 years), and find use as disinfecting solutions, as germicides and/or biocides (e.g. antiviral, antibacterial, antifungal, antispore etc.) for various surfaces and solutions including living and inanimate surfaces and are particularly useful because of their low cost, their reduced use of iodine, their activity (because of the high concentration of free molecular iodine in solution), their reduced environmental impact, their long term storage stability and their reduced toxicity. They also have particular utility in treating food surfaces to retard spoilage, increase useful shelf-life and minimize the human and economic cost of food waste. The compositions inactivate viruses, bacteria (both gram negative and positive), spores and fungi. Compositions according to the present invention may be used and stored in a variety of materials, given the substantial absence of corrosion (non-corrosive) these compositions display. Dental compositions (e.g. preprocedure rinses and other compositions) and methods related thereto are also disclosed.
<i>Leuconostoc mesenteroides </i>CJLM181 strain producing reduced amount of gas, and kimchi production method using same
The present application relates to a Leuconostoc mesenteroides CJLM181 strain (KCTC 13042BP) producing decreased amounts of gas, a fermentation starter composition comprising the same, and a method for preparing kimchi using the strain.
MASON JAR VALVED-LID COMPONENT AND KIT FOR USE IN FERMENTATION
The present disclosure is directed to a lid component for use with a jar and a band. The jar and band may be a mason jar and a band for a mason jar. The lid component is made of an air-impermeable material and is dimensioned and configured to be releasably attachable to the jar by the band and to seal a wide mouth opening of the jar in an air-tight manner. The lid component comprises a one-way valve adapted to allow gas to escape from the jar while, at the same time, prevent air from entering the jar, when the lid component is releasably attached to the jar. The one-way valve comprises a bottom opening and a protruding top wall. The lid component further comprises a sealing wall that extends radially outwardly from the bottom opening. The sealing wall is substantially flat.
Synergistic antibrowning-antimicrobial composition
A synergistic composition of oxalic acid, citric acid, ascorbic acid, lactic acid, and hydrogen peroxide that has a combination of antimicrobial and antibrowning properties.
Synergistic antibrowning-antimicrobial composition
A synergistic composition of oxalic acid, citric acid, ascorbic acid, lactic acid, and hydrogen peroxide that has a combination of antimicrobial and antibrowning properties.
SHORT-TERM WASH TREATMENT OF PRODUCE
A method of washing a food product with a short-term, intense treatment solution. One example method generally includes: applying, using a short-term wash device, a short-term wash treatment solution to the food product; and applying, using a wash device coupled to the short-term wash device, a wash treatment to the food product such that the wash treatment rinses the short-term wash treatment solution from the food product, wherein: the short-term wash treatment solution is applied to the food product for a shorter duration than the wash treatment is applied to the food product; the short-term wash treatment solution is chemically different from the wash treatment; and the short-term wash treatment solution comprises an acidulant and a polyol.
SHORT-TERM WASH TREATMENT OF PRODUCE
A method of washing a food product with a short-term, intense treatment solution. One example method generally includes: applying, using a short-term wash device, a short-term wash treatment solution to the food product; and applying, using a wash device coupled to the short-term wash device, a wash treatment to the food product such that the wash treatment rinses the short-term wash treatment solution from the food product, wherein: the short-term wash treatment solution is applied to the food product for a shorter duration than the wash treatment is applied to the food product; the short-term wash treatment solution is chemically different from the wash treatment; and the short-term wash treatment solution comprises an acidulant and a polyol.
METHOD FOR PRESERVING FRESH PRODUCE, SOLID COMPOSITION FOR APPLICATION IN A METHOD FOR PRESERVING FRESH PRODUCE AND PRESERVED FRESH PRODUCE
A solid composition for the preservation of food includes a source of potassium cations selected from at least one of potassium carbonate and potassium hydrogen carbonate; and at least one of a source of ascorbate ions and a source of isoascorbate ions, wherein the source of ascorbate ions is selected from at least one of ascorbic acid, a salt of ascorbic acid and acerola or from any other suitable ascorbic acid rich source, wherein the source of isoascorbate is selected from at least one of isoascorbic acid and a salt of isoascorbic acid, and wherein a molar ratio of potassium cations to ascorbate anions and/or potassium cations to isoascorbate anions in the solid composition is within the range from 1.00:0.95 to 1.00:0.50, preferably 1.00: ≤0.78 to 1.00:0.50.
METHOD FOR PRESERVING FRESH PRODUCE, SOLID COMPOSITION FOR APPLICATION IN A METHOD FOR PRESERVING FRESH PRODUCE AND PRESERVED FRESH PRODUCE
A solid composition for the preservation of food includes a source of potassium cations selected from at least one of potassium carbonate and potassium hydrogen carbonate; and at least one of a source of ascorbate ions and a source of isoascorbate ions, wherein the source of ascorbate ions is selected from at least one of ascorbic acid, a salt of ascorbic acid and acerola or from any other suitable ascorbic acid rich source, wherein the source of isoascorbate is selected from at least one of isoascorbic acid and a salt of isoascorbic acid, and wherein a molar ratio of potassium cations to ascorbate anions and/or potassium cations to isoascorbate anions in the solid composition is within the range from 1.00:0.95 to 1.00:0.50, preferably 1.00: ≤0.78 to 1.00:0.50.