A23C19/08

Methods for making heat-treated cheeses

Disclosed are methods for producing cheeses having the desirable properties of process cheese, using phospholipase enzyme(s), without the addition of emulsifying salts to produce such cheeses. The methods of the invention allow a cheese processor to produce a reduced-sodium process-type cheese without losing the recognized meltability and texture of processed cheese.

HIGH ESTERS PRODUCING STRAIN OF MONASCUS PURPUREUS AND ITS APPLICATION IN PRODUCTION OF ESTER FLAVOR MONASCUS FERMENTED CHEESE

The invention discloses a strain of Monascus purpureus with high esters producing activity and the application in the production of ester flavored Monascus cheese. The strain was deposited in China General Microbiological Culture Collection Center (CGMCC) on Oct. 17, 2019, with the preservation number of CGMCC 18589. The strain can make the cheese flavor having less pungent, and richer, significantly improve the odor quality of cheese, thus more in line with the taste of Chinese people. Moreover, some secondary metabolites responsible for health benefits including hypolipidemia, antihypertensive, antioxidant, and antihyperglycemic effects and prevention of obesity and diabetes development have been recognized in Monascus-fermented cheese.

HIGH ESTERS PRODUCING STRAIN OF MONASCUS PURPUREUS AND ITS APPLICATION IN PRODUCTION OF ESTER FLAVOR MONASCUS FERMENTED CHEESE

The invention discloses a strain of Monascus purpureus with high esters producing activity and the application in the production of ester flavored Monascus cheese. The strain was deposited in China General Microbiological Culture Collection Center (CGMCC) on Oct. 17, 2019, with the preservation number of CGMCC 18589. The strain can make the cheese flavor having less pungent, and richer, significantly improve the odor quality of cheese, thus more in line with the taste of Chinese people. Moreover, some secondary metabolites responsible for health benefits including hypolipidemia, antihypertensive, antioxidant, and antihyperglycemic effects and prevention of obesity and diabetes development have been recognized in Monascus-fermented cheese.

Whole grain composition comprising hydrolyzed starch

A composition comprising a whole grain with hydrolyzed starch. Although the starch can shift from relatively higher molecular weight moieties to relatively lower molecular weight moieties during hydrolysis, the relative proportions of the principal anatomical components of the caryopses of the grain—the starchy endosperm, germ and bran—remain approximately the same as evinced, for example, by the weight percentages and relative mass ratios of starch, fat, protein, dietary fiber, beta-glucan, and sugar in the composition. Additionally, the whole grain composition can be a powder, for example, a flour, and the whole grain composition can be granulated to a desired size to provide a powder that is highly dispersible in liquid. When gelatinized, hydrated and dispersed in a liquid, the whole grain with hydrolyzed starch can have a lower viscosity, grittiness, and graininess compared to the same variety of whole grain with unhydrolyzed starch.

Whole grain composition comprising hydrolyzed starch

A composition comprising a whole grain with hydrolyzed starch. Although the starch can shift from relatively higher molecular weight moieties to relatively lower molecular weight moieties during hydrolysis, the relative proportions of the principal anatomical components of the caryopses of the grain—the starchy endosperm, germ and bran—remain approximately the same as evinced, for example, by the weight percentages and relative mass ratios of starch, fat, protein, dietary fiber, beta-glucan, and sugar in the composition. Additionally, the whole grain composition can be a powder, for example, a flour, and the whole grain composition can be granulated to a desired size to provide a powder that is highly dispersible in liquid. When gelatinized, hydrated and dispersed in a liquid, the whole grain with hydrolyzed starch can have a lower viscosity, grittiness, and graininess compared to the same variety of whole grain with unhydrolyzed starch.

DEVICE AND SYSTEM FOR CONTROLLED MIXING OF FLUID TEXTURED MATERIAL ALONG A LINEAR PATH BY MEANS OF VARIABLE OHMIC CONTROL

The invention herein pertains to a device and system for controlled mixing of textured material along a linear path by means variable ohmic controls. The device comprising the following components: a dual auger unit wherein two linear augers are held within a single linear casing, each said linear augers having an increased diameter pitch along its length, perforations along the length of said single linear casing, electro-conductive plates attachable to each said perforation. The preferred embodiment of this invention is intended to be used for mixing pasta filata cheese curds to form a singular cheese mass with consistent texture. The device may also be used to mix other types of fluid textured material including food and non-food substances.

PROCESS FOR USING THERMAL TREATMENT TO MODIFY AND CONTROL THE MELT PROPERTIES OF NATURAL CHEESE

Heating the natural cheese to cause at least one of modification of the structural chemistry of the proteins, completely or partially denaturing proteins, and inactivating proteolytic enzymes, lipolytic enzymes, and microbial organisms within the cheese allows for the cheese to be fried or grilled while maintaining its consistency and shape, baked as Juustoleipa; heated and mechanically processed as in cooking-stretching process used for mozzarella. The method produces cheese with various structural and melting properties using a single recipe and manufacturing facility.

PROCESS FOR USING THERMAL TREATMENT TO MODIFY AND CONTROL THE MELT PROPERTIES OF NATURAL CHEESE

Heating the natural cheese to cause at least one of modification of the structural chemistry of the proteins, completely or partially denaturing proteins, and inactivating proteolytic enzymes, lipolytic enzymes, and microbial organisms within the cheese allows for the cheese to be fried or grilled while maintaining its consistency and shape, baked as Juustoleipa; heated and mechanically processed as in cooking-stretching process used for mozzarella. The method produces cheese with various structural and melting properties using a single recipe and manufacturing facility.

METHOD AND DEVICE FOR PRODUCING HERB CHEESE
20200390121 · 2020-12-17 · ·

A method for producing herb cheese, in particular for producing hard cheese, which is enriched with herbs, spices or the like, with the herbs introduced by machine. For this purpose, raw cheese mass having about 80% milk removed is filled into cheese molds, which are preferably arranged in a vat of a cartridge press, and subsequently pressed. At the same time, respectively, herbs, spices or the like are introduced uniformly into the cheese molds parallel to the raw cheese mass.

METHOD AND DEVICE FOR PRODUCING HERB CHEESE
20200390121 · 2020-12-17 · ·

A method for producing herb cheese, in particular for producing hard cheese, which is enriched with herbs, spices or the like, with the herbs introduced by machine. For this purpose, raw cheese mass having about 80% milk removed is filled into cheese molds, which are preferably arranged in a vat of a cartridge press, and subsequently pressed. At the same time, respectively, herbs, spices or the like are introduced uniformly into the cheese molds parallel to the raw cheese mass.