A23P20/25

APPARATUS AND METHOD FOR POST-EXTRUSION FILLING AND CLOSURE OF AN EXTRUDATE
20200100523 · 2020-04-02 ·

An apparatus and method for post-extrusion filling and closing of an extrudate includes a feeder arranged in relation to an extruded rope of material flowing from an extrusion die of an extruder, wherein the rope of material has an opening that can receive a filler material. The feeder deposits the filler material into the opening of the rope of material as the rope of material flows by the feeder. A former receives the rope of material after the feeder has deposited the filler material into the opening of the rope. The former shapes the rope of material and close a portion or all of the rope around at least a portion of the deposited filler material to retain the filler material within the rope. A cutter may axially cut the rope to form the opening. A finisher may cut the shaped rope into portions containing the deposited filler material.

Fruit snack with probiotics and method of manufacturing a fruit snack with probiotics

A fruit snack with probiotics that is stable at room temperature is manufactured by combining various ingredients including fruit juices/purees to produce a slurry and cooking the slurry to produce a center that contains a high moisture content. The fruit snack center is covered with a barrier layer which in turn is covered by an outer layer that contains heat sensitive ingredients, such as probiotic cultures. The barrier layer substantially prevents migration of moisture from the center to the outer layer, and the fruit snack is cooled prior to applying the outer layer to minimize damage/harm to the heat sensitive ingredients. In addition to including probiotic cultures and being stable at room temperature, the fruit snack has other desirable characteristics including a chewy soft texture and fruit-flavorings, and may be manufactured using traditional processes.

Fruit snack with probiotics and method of manufacturing a fruit snack with probiotics

A fruit snack with probiotics that is stable at room temperature is manufactured by combining various ingredients including fruit juices/purees to produce a slurry and cooking the slurry to produce a center that contains a high moisture content. The fruit snack center is covered with a barrier layer which in turn is covered by an outer layer that contains heat sensitive ingredients, such as probiotic cultures. The barrier layer substantially prevents migration of moisture from the center to the outer layer, and the fruit snack is cooled prior to applying the outer layer to minimize damage/harm to the heat sensitive ingredients. In addition to including probiotic cultures and being stable at room temperature, the fruit snack has other desirable characteristics including a chewy soft texture and fruit-flavorings, and may be manufactured using traditional processes.

CONFECTIONERY ITEM
20200068918 · 2020-03-05 ·

Products and associated methods relate to a confectionery item having a boundary layer configured to prevent spun sugar of the confectionery item from breaking down. In an illustrative example, a confectionery item may include a frozen food core, a boundary layer configured to wrap the frozen food core, and a spun sugar layer configured to surround the boundary layer. In some embodiments, the boundary layer may be pliable at room temperature and hard at freezing temperatures. By adding the boundary layer, the frozen food core may, in some embodiments, not dissolve (e.g., burn or eat through) the spun sugar.

CONFECTIONERY ITEM
20200068918 · 2020-03-05 ·

Products and associated methods relate to a confectionery item having a boundary layer configured to prevent spun sugar of the confectionery item from breaking down. In an illustrative example, a confectionery item may include a frozen food core, a boundary layer configured to wrap the frozen food core, and a spun sugar layer configured to surround the boundary layer. In some embodiments, the boundary layer may be pliable at room temperature and hard at freezing temperatures. By adding the boundary layer, the frozen food core may, in some embodiments, not dissolve (e.g., burn or eat through) the spun sugar.

EDIBLE NUTRITION SYSTEM, METHOD OF PREPARATION AND USE THEREOF
20200037655 · 2020-02-06 · ·

The present invention relates to an edible composition, particularly an edible nutrition system, comprising an edible filling material (2) and an edible outer shell material (1), and the use thereof for the provision and/or transportation of edible materials. Additionally, in some embodiments, the edible nutrition system comprises an edible or potable substance (3). Further, the disclosure relates to a method for preparing said edible nutrition system.

EDIBLE NUTRITION SYSTEM, METHOD OF PREPARATION AND USE THEREOF
20200037655 · 2020-02-06 · ·

The present invention relates to an edible composition, particularly an edible nutrition system, comprising an edible filling material (2) and an edible outer shell material (1), and the use thereof for the provision and/or transportation of edible materials. Additionally, in some embodiments, the edible nutrition system comprises an edible or potable substance (3). Further, the disclosure relates to a method for preparing said edible nutrition system.

Three-dimensional decorating system for edible items

In one aspect, the present disclosure relates to the decorating and printing of three-dimensional edible media on a printable base media based on a user selected image. A base can be determined to support and couple the printed 3D edible media based on the user selected image to the printable base media. Using a user interface, the user selected image can be modified and adapted to print based on a 3D printer's capabilities. Maneuvers of either a platform or a printhead of the 3D printer can be tracked for secondary treatments to either the printed 3D edible media or the printable base media.

Brineless, low-acid packaged olives

The invention relates to olive processing, and includes methods for producing low-acid olives, as well as the olives produced thereby. In one aspect, the invention provides compositions directed towards packaged olive preparations having novel and beneficial characteristics, for example, olive preparations that are free of packing liquids such as brine solutions. In other aspects, the packaged olive preparations of the invention can have other beneficial properties, such as extended shelf life, have flavor infusions, and/or can be stuffed with various flavored stuffings.

Brineless, low-acid packaged olives

The invention relates to olive processing, and includes methods for producing low-acid olives, as well as the olives produced thereby. In one aspect, the invention provides compositions directed towards packaged olive preparations having novel and beneficial characteristics, for example, olive preparations that are free of packing liquids such as brine solutions. In other aspects, the packaged olive preparations of the invention can have other beneficial properties, such as extended shelf life, have flavor infusions, and/or can be stuffed with various flavored stuffings.