A23V2200/132

FLAVOR WATER HAVING IMPROVED TASTE QUALITIES OF SUGAR AND SWEETENER

The present invention pertains to a flavor water that comprises: (a) a natural sugar in an amount corresponding to sweetness intensity X1; (b) a high intensity sweetener in an amount corresponding to sweetness intensity X2; (c) sodium in an amount of less than 40 mg/100 ml; and (d) potassium in an amount of less than 70 mg/100 ml and/or calcium in an amount of less than 70 mg/100 ml, wherein the high intensity sweetener comprises at least one high intensity sweetener b1 selected from the group consisting of Rebaudioside M, Rebaudioside D, Rebaudioside N, Rebaudioside O, Rebaudioside E, an extract of Momordica grosvenori, Mogroside V and Thaumatin, and (X1+X2) is larger than 1 and not larger than 20.

FLAVOR WATER HAVING IMPROVED TASTE QUALITIES OF SUGAR AND SWEETENER

The present invention pertains to a flavor water that comprises: (a) a natural sugar in an amount corresponding to sweetness intensity X1; (b) a high intensity sweetener in an amount corresponding to sweetness intensity X2; (c) sodium in an amount of less than 40 mg/100 ml; and (d) potassium in an amount of less than 70 mg/100 ml and/or calcium in an amount of less than 70 mg/100 ml, wherein the high intensity sweetener comprises at least one high intensity sweetener b1 selected from the group consisting of Rebaudioside M, Rebaudioside D, Rebaudioside N, Rebaudioside O, Rebaudioside E, an extract of Momordica grosvenori, Mogroside V and Thaumatin, and (X1+X2) is larger than 1 and not larger than 20.

SOLID FUNCTIONALLY IMPROVED ISOMALT
20210360954 · 2021-11-25 ·

The present invention relates to a solid isomalt composition, which comprises 6-O-alpha-D-glucopyranosyl-D-sorbitol (1,6-GPS) and 1-O-alpha-D-glucopyranosyl-D-mannitol (1,1-GPM) and the additional glycosylated isomalt components 1-O-(6′-O-alpha-D-glucopyranosyl)-alpha-D-glucopyranosyl-D-mannitol (6′-g-1,1-GPM), 6-O-(6′-O-alpha-D-glucopyranosyl)-alpha-D-glucopyranosyl-D-sorbitol (6′-g-1,6-GPS), 1,6-di-O-alpha-D-glucopyranosyl-D-sorbitol (1-g-1,6-GPS) and 1,6-di-O-alpha-D-glucopyranosyl-D-mannitol (6-g-1,1-GPM).

SOLID FUNCTIONALLY IMPROVED ISOMALT
20210360954 · 2021-11-25 ·

The present invention relates to a solid isomalt composition, which comprises 6-O-alpha-D-glucopyranosyl-D-sorbitol (1,6-GPS) and 1-O-alpha-D-glucopyranosyl-D-mannitol (1,1-GPM) and the additional glycosylated isomalt components 1-O-(6′-O-alpha-D-glucopyranosyl)-alpha-D-glucopyranosyl-D-mannitol (6′-g-1,1-GPM), 6-O-(6′-O-alpha-D-glucopyranosyl)-alpha-D-glucopyranosyl-D-sorbitol (6′-g-1,6-GPS), 1,6-di-O-alpha-D-glucopyranosyl-D-sorbitol (1-g-1,6-GPS) and 1,6-di-O-alpha-D-glucopyranosyl-D-mannitol (6-g-1,1-GPM).

EFFERVESCENT BEVERAGE HAVING IMPROVED TASTE QUALITIES OF SUGAR AND SWEETENER

The present invention relates to an effervescent beverage in which the quality of taste resulting from sugars and sweeteners is improved, and a method for producing the effervescent beverage.

EFFERVESCENT BEVERAGE HAVING IMPROVED TASTE QUALITIES OF SUGAR AND SWEETENER

The present invention relates to an effervescent beverage in which the quality of taste resulting from sugars and sweeteners is improved, and a method for producing the effervescent beverage.

SWEETENER AND FLAVOR COMPOSITIONS, METHODS OF MAKING AND METHODS OF USE THEREOF

Sweetener and flavor compositions with improved taste profiles are disclosed. Also disclosed are methods of making and methods of using such sweetener and flavor compositions.

SWEETENER AND FLAVOR COMPOSITIONS, METHODS OF MAKING AND METHODS OF USE THEREOF

Sweetener and flavor compositions with improved taste profiles are disclosed. Also disclosed are methods of making and methods of using such sweetener and flavor compositions.

CONFECTIONERY COMPOSITION COMPRISING BRAN-LIKE MATERIAL

There is described an confectionery composition comprising edible particulate material comprising from 80% to 100% by weight based on total weight of the material of a processable, microbially released, flavour acceptable bran-like material, characterized by the following parameters: (i) mean particle size by volume (Vol. MPS) of from 5 to 100 microns; (ii) volume particle size distribution (Vol. PSD) characterized by the parameters: D90.3 less than or equal to 350 microns, and D50.3 less than or equal to 50 microns, and optionally D10.3 less than or equal to 15 microns, (iii) mean particle sphericity as measured by a Smean of greater than or equal to 0.75; (iv) where processable means has oil holding capacity (OHC) of from 0.7 to 1.5; (v) where microbially released means material has common microbes below given limits (preferably free of common microbes) (vi) where flavour acceptable denotes a lipase activity (LA) and a peroxidase activity (PA) both less than or equal to 2 U/g and optionally a low degree of roasted flavour notes as defined herein. The bran-like material used in the confectionery compositions may added as a bulk ingredient to replace sugar and/or to provide confectionery fillings and/or coatings having improved hiding ability when used as layers in multilayer confectionery products.

Sugar-reduced food cream composition using native pea starch
11172689 · 2021-11-16 · ·

The invention is related to a sugar-reduced food cream composition comprising fat, sugar and starch, wherein the starch is native starch having an average particle size between 20 μm and 30 μm, preferably between 22 μm and 28 μm, even more preferably between 23 μm and 26 μm, with a D90 smaller than 40 μm, preferably smaller than 36 μm. The invention also relates to a method of preparation of a sugar-reduced food cream composition comprising the steps of: selecting a recipe of a food cream composition comprising fat and sugar, replacing between 25% to 40%, preferably 25% to 35%, more preferably about 30% by weight of the total sugar content of said food cream composition by native starch having an average particle size between 20 μm and 30 μm, preferably between 22 μm and 28 μm, even more preferably between 23 μm and 26 μm, with a D90 smaller than 40 μm, preferably smaller than 36 μm.