Patent classifications
A23P10/25
FLAVOR COMPOSITION CONTAINING D-ALLULOSE AND A PREPARATION METHOD THEREFOR
A method of preparing a flavor composition containing D-allulose includes: (1) weighing D-allulose, mogroside, steviol glycoside and trichlorosucrose in parts by weight, and mixing them evenly to obtain a mixed powder; (2) degassing, compressing, and rolling the mixed powder, and extruding the raw materials into flakes; and (3) crushing and granulating the shaped flakes to obtain the flavor composition. D-allulose is used as the main raw material, and added high-intensity sweeteners as auxiliary raw materials. After the raw materials are mixed evenly, dry granulation is adopted, and the powder is degassed and pre-compressed by using the crystal water in the raw materials, and squeezed by a hydraulic roller to form a bonding force between the various sweetener molecules to form flakes, and the flakes are processed by processes such as crushing and granulating to obtain the flavor composition granules containing D-allulose with the various sweeteners integrated uniformly as a whole.
PEARL ARARE STRUCTURE AND MANUFACTURING METHOD THEREOF
A pearl arare structure includes a biscuit body that is in a three-dimensional form having a predetermined thickness and a mixture that is mixed in the biscuit body. The mixture includes a cotton-like sweety filling and a plurality of pearls, so that the pearl arare, when being consumed, exhibits a new mouthfeel of both arare and pearls to thereby enhance the product value of the arare. A manufacturing method of the pearl arare includes steps of subjecting a pearl raw material to stirring, steaming, and sugar adding so as to be shaped into pearls; steps of subjecting a cotton candy raw material to cooking, and whisking and stirring to form a cotton-like sweety filling; a step of mincing biscuit into biscuit flakes; and steps of subjecting a predetermined amount of the pearls, the cotton-like sweety filling, and the biscuit flakes to mixing, cooling, rolling, and then cutting.
PEARL ARARE STRUCTURE AND MANUFACTURING METHOD THEREOF
A pearl arare structure includes a biscuit body that is in a three-dimensional form having a predetermined thickness and a mixture that is mixed in the biscuit body. The mixture includes a cotton-like sweety filling and a plurality of pearls, so that the pearl arare, when being consumed, exhibits a new mouthfeel of both arare and pearls to thereby enhance the product value of the arare. A manufacturing method of the pearl arare includes steps of subjecting a pearl raw material to stirring, steaming, and sugar adding so as to be shaped into pearls; steps of subjecting a cotton candy raw material to cooking, and whisking and stirring to form a cotton-like sweety filling; a step of mincing biscuit into biscuit flakes; and steps of subjecting a predetermined amount of the pearls, the cotton-like sweety filling, and the biscuit flakes to mixing, cooling, rolling, and then cutting.
APPARATUS AND METHOD FOR PROCESSING KELP
Disclosed is an apparatus for processing kelp comprising a material chamber, a stripper peg inside the material chamber, a shaft, wherein a portion of the shaft has threads for urging kelp forward, wherein the threads have notches in the outside edge of the threads, a perforated screen, an outer screen, a support beam, an outlet, and a faceplate. The apparatus can be used for a method to remove iodine from kelp using non-chemical means.
APPARATUS AND METHOD FOR PROCESSING KELP
Disclosed is an apparatus for processing kelp comprising a material chamber, a stripper peg inside the material chamber, a shaft, wherein a portion of the shaft has threads for urging kelp forward, wherein the threads have notches in the outside edge of the threads, a perforated screen, an outer screen, a support beam, an outlet, and a faceplate. The apparatus can be used for a method to remove iodine from kelp using non-chemical means.
MANUFACTURING METHOD AND MANUFACTURING DEVICE FOR TRACE ELEMENT SUPPLEMENT GRANULES
A manufacturing method and manufacturing device for micronutrient supplement granules involve sequentially performing physically extruding, grinding and sieving of trace elements to obtain micronutrient supplement granules having a granule size of 35-380 m and a granule strength greater than 10 N with a tablet press, a first grinding and granulating machine and a sieving unit including primary and secondary sieving machines. A discharge end of the tablet press is connected to a feed end of the first grinding and granulating machine, of which a discharge end is connected to a feed end of the sieving unit. Feed and discharge ends of the primary sieving machine are respectively connected to discharge end of the first grinding and granulating machine and feed end of the secondary sieving machine. The primary and secondary sieving machines have sieving meshes respectively with square and circular mesh holes.
Granulation of a stevia sweetener
A method for making a granulated Stevia sweetener is described. The resulting sweetener has a desirably high solubility level.
Granulation of a stevia sweetener
A method for making a granulated Stevia sweetener is described. The resulting sweetener has a desirably high solubility level.
METHOD FOR THE PRODUCTION OF A DOSAGE FORM
A method is described for producing a dosage form. Also described, are granules and tablets obtained by the method. The use of a surface-reacted calcium carbonate in such a method, a dosage form comprising the granules, the use of the granules, or the tablets and/or capsules, or the dosage form in a pharmaceutical product, a nutraceutical product, an agricultural product, a cosmetic product, a home product, a food product, a packaging product and a personal care product as well as pharmaceutical product, a nutraceutical product, an agricultural product, a cosmetic product, a home product, a food product, a packaging product and a personal care product including such granules, or the tablets and/or capsules, or the dosage form are also described.
METHOD FOR THE PRODUCTION OF A DOSAGE FORM
A method is described for producing a dosage form. Also described, are granules and tablets obtained by the method. The use of a surface-reacted calcium carbonate in such a method, a dosage form comprising the granules, the use of the granules, or the tablets and/or capsules, or the dosage form in a pharmaceutical product, a nutraceutical product, an agricultural product, a cosmetic product, a home product, a food product, a packaging product and a personal care product as well as pharmaceutical product, a nutraceutical product, an agricultural product, a cosmetic product, a home product, a food product, a packaging product and a personal care product including such granules, or the tablets and/or capsules, or the dosage form are also described.