Patent classifications
A23C21/00
COMPOSITION AND USES THEREOF
A colostrum-enriched composition comprising at least 0.1 to 12 wt % immunoglobulin (at least 0.1 to 12g per 100 g composition dry weight) isolated from whey.
WHEY PREPARATION OBTAINED BY CAVITATION AND USES THEREOF
The present invention relates to a process for microparticulating of an ideal whey protein in a solution. The present invention relates also to microparticulated ideal whey protein preparation. In addition, the present invention relates to use of the microparticulated ideal whey protein preparation in milk based products and/or dairy products. Further, the present invention relates to a milk based product and/or a dairy product containing a microparticulated whey protein preparation.
WHEY PREPARATION OBTAINED BY CAVITATION AND USES THEREOF
The present invention relates to a process for microparticulating of an ideal whey protein in a solution. The present invention relates also to microparticulated ideal whey protein preparation. In addition, the present invention relates to use of the microparticulated ideal whey protein preparation in milk based products and/or dairy products. Further, the present invention relates to a milk based product and/or a dairy product containing a microparticulated whey protein preparation.
WHEY PROTEIN EXTRACTS AND THEIR USE AS SPHINGOMYELIN SOURCE
Use of an -lactalbumin enriched whey protein extract as a source of sphingomyelin in a synthetic nutritional composition for an infant or child wherein, the -lactalbumin enriched WPE is obtained by a process comprising: a. acidifying a whey protein product to pH 4 or below b. forming a low calcium whey protein product by concentrating the proteins in the acidified whey protein until the calcium to protein ratio is less than about 0.001 and, c. Precipitating -lactalbumin from the low-calcium whey protein product, wherein said precipitating step includes the sub-steps of: I. diluting the low-calcium whey protein product, II. adjusting the pH of the diluted low-calcium whey protein product to between 4 and 5 to form a precipitate and soluble proteins, and III. Separating the precipitate proteins from the soluble proteins.
LOW TEMPERATURE SPRAY DRYING OF CARRIER-FREE COMPOSITIONS
A spray drying process and apparatus for drying a spray dryable liquid composition to a spray dried powder is described, in which the spray dryable liquid composition contains no carrier. The spray dryable liquid composition is processed at a solids concentration not exceeding 80% by weight, based on total weight of the spray dryable liquid composition, being atomized to generate an atomized spray of liquid particles of the spray dryable liquid composition into a spray drying chamber, in which the atomized spray is contacted with a stream of drying fluid flowed at temperature not exceeding 100 C. into the spray drying chamber, to form the spray dried powder.
Whey preparation obtained by cavitation and uses thereof
The present invention relates to a process for microparticulating of an ideal whey protein in a solution by caviataopm. The present invention relates also to microparticulated ideal whey protein preparation. In addition, the present invention relates to use of the microparticulated ideal whey protein preparation in milk based products and/or dairy products. Further, the present invention relates to a milk based product and/or a dairy product containing a microparticulated whey protein preparation.
Whey preparation obtained by cavitation and uses thereof
The present invention relates to a process for microparticulating of an ideal whey protein in a solution by caviataopm. The present invention relates also to microparticulated ideal whey protein preparation. In addition, the present invention relates to use of the microparticulated ideal whey protein preparation in milk based products and/or dairy products. Further, the present invention relates to a milk based product and/or a dairy product containing a microparticulated whey protein preparation.
Novel Modified Acid Compositions as Alternatives to Conventional Acids in the Oil and Gas Industry
An aqueous modified acid composition for industrial activities, said composition comprising: an alkanolamine and strong acid in a molar ratio of not less than 1:15, preferably not less than 1:10; it can also further comprise a metal iodide or iodate. Said composition demonstrates advantages over known conventional acids and modified acids.
Novel Modified Acid Compositions as Alternatives to Conventional Acids in the Oil and Gas Industry
An aqueous modified acid composition for industrial activities, said composition comprising: an alkanolamine and strong acid in a molar ratio of not less than 1:15, preferably not less than 1:10; it can also further comprise a metal iodide or iodate. Said composition demonstrates advantages over known conventional acids and modified acids.
Demineralized whey powders
A demineralised whey powder is suggested which is obtainable by: (a) Separating raw milk, removing the cream; (b) Subjecting the skimmed milk such obtained to microfiltration or microdiafiltration, obtaining a whey protein-rich permeate P1 and a retentate R1 containing casein and GMP in the process; (c) Subjecting the permeate P1 to column chromatography separation, in which the lactoferrin contained therein remains on the column; (d) Subjecting the permeate, from which lactoferrin had been removed, to dialysis; and (e) Dehydrating the diluate such obtained.