A23L21/00

Sugar compositions for tableting by direct compression
10342247 · 2019-07-09 · ·

Directly compressible compositions that include more than 30% by weight of allulose, and tablets obtainable thereof.

Sugar compositions for tableting by direct compression
10342247 · 2019-07-09 · ·

Directly compressible compositions that include more than 30% by weight of allulose, and tablets obtainable thereof.

EXTRACTION METHOD
20190183149 · 2019-06-20 ·

The present invention relates to a process for producing an extract derived from sugar cane, the process comprising: i) mixing a sugar cane derived product with ethanol to produce an extraction mixture comprising at least about 50% v/v ethanol; ii) allowing a precipitate to form in the extraction mixture; iii) removing the precipitate from the extraction mixture to obtain a super-natant; and iv) removing ethanol from the supernatant to produce the extract derived from sugar cane. The present invention further relates to extracts produced according to the process of the invention. The invention also relates to the use of such extracts in a method of lowering the available calorific value of a food or beverage, in treating or preventing disease, and as a nutritional supplement, dietary supplement, sports nutrition product, food coating or pharmaceutical product.

Gelatin/pectin particles
10238603 · 2019-03-26 · ·

Disclosed are particles comprising pectin and gelatin. The particles may be useful for preparing any of a variety products such as, for example, soft pharmaceutical capsules, hard pharmaceutical capsules, and foodstuffs. Also disclosed are methods for preparing the particles, the method comprising: (a) dissolving pectin in an aqueous solution to produce an aqueous solution of dissolved pectin; (b) mixing the aqueous solution of dissolved pectin with liquid gelatin to produce a gelatin/pectin mixture; (c) drying the gelatin/pectin mixture; and (d) milling the gelatin/pectin mixture to produce the plurality of particles.

Gelatin/pectin particles
10238603 · 2019-03-26 · ·

Disclosed are particles comprising pectin and gelatin. The particles may be useful for preparing any of a variety products such as, for example, soft pharmaceutical capsules, hard pharmaceutical capsules, and foodstuffs. Also disclosed are methods for preparing the particles, the method comprising: (a) dissolving pectin in an aqueous solution to produce an aqueous solution of dissolved pectin; (b) mixing the aqueous solution of dissolved pectin with liquid gelatin to produce a gelatin/pectin mixture; (c) drying the gelatin/pectin mixture; and (d) milling the gelatin/pectin mixture to produce the plurality of particles.

Dispersion composition containing carboxymethyl cellulose

This dispersion composition contains a water-based medium and a carboxymethyl cellulose having a carboxymethyl substitution degree of 0.20 or more and a cellulose-I crystallinity index of 50% or more, a water-based medium is easily dispersed even by low mixing power, and has a high viscosity.

REBAUDIOSIDE A AND STEVIOSIDE WITH IMPROVED SOLUBILITIES

The invention describes sweetening compositions and methods to prepare sweetening compositions containing steviol glycosides, salts, and other natural or synthetic sweeteners with improved solubilities and sensory profiles.

FLUID MIXING AND HEAT EXCHANGE DEVICE
20190008196 · 2019-01-10 ·

Methods and systems are provided for mixing and heat exchange of fluids. In one example, a fluid mixing and heat exchange device includes a hot water tank, a mixing chamber spaced away from the hot water tank and fluidly coupled to a first liquid reservoir, a first chilling module fluidly coupled to the mixing chamber, a coolant tank fluidly coupled to the first chilling module, a radiator fluidly coupled to the coolant tank, and a dispensing manifold fluidly coupled to the mixing chamber and adapted to dispense a mixed and chilled fluid mixture to a plurality of fluid vessels.

Fiber-Containing Carbohydrate Composition
20180371514 · 2018-12-27 ·

A food product comprises an oligosaccharide composition that is digestion resistant or slowly digestible. The oligosaccharide composition can be produced by a process that comprises producing an aqueous composition that comprises at least one oligosaccharide and at least one monosaccharide by saccharification of starch, membrane filtering the aqueous composition to form a monosaccharide-rich stream and an oligosaccharide-rich stream, and recovering the oligosaccharide-rich stream. Alternatively, the oligosaccharide composition can be produced by a process that comprises heating an aqueous feed composition that comprises at least one monosaccharide or linear saccharide oligomer, and that has a solids concentration of at least about 70% by weight, to a temperature of at least about 40 C., and contacting the feed composition with at least one catalyst that accelerates the rate of cleavage or formation of glucosyl bonds for a time sufficient to cause formation of non-linear saccharide oligomers, wherein a product composition is produced that contains a higher concentration of non-linear saccharide oligomers than linear saccharide oligomers.

Fiber-Containing Carbohydrate Composition
20180371514 · 2018-12-27 ·

A food product comprises an oligosaccharide composition that is digestion resistant or slowly digestible. The oligosaccharide composition can be produced by a process that comprises producing an aqueous composition that comprises at least one oligosaccharide and at least one monosaccharide by saccharification of starch, membrane filtering the aqueous composition to form a monosaccharide-rich stream and an oligosaccharide-rich stream, and recovering the oligosaccharide-rich stream. Alternatively, the oligosaccharide composition can be produced by a process that comprises heating an aqueous feed composition that comprises at least one monosaccharide or linear saccharide oligomer, and that has a solids concentration of at least about 70% by weight, to a temperature of at least about 40 C., and contacting the feed composition with at least one catalyst that accelerates the rate of cleavage or formation of glucosyl bonds for a time sufficient to cause formation of non-linear saccharide oligomers, wherein a product composition is produced that contains a higher concentration of non-linear saccharide oligomers than linear saccharide oligomers.