Patent classifications
A23F3/20
ACID-TREATED FILTER AID BLEND
A filter aid composition may include a first acid-treated silica-based filter aid having a first particle size distribution and a second acid-treated silica-based filter aid having a second particle size distribution. A method of making a filter aid composition may include providing a first silica-based filter aid having a first particle size distribution, providing a second silica-based filter aid having a second particle size distribution, and blending the first silica-based filter aid with the second silica-based filter aid to form the filter aid composition. A method of filtering a fluid may include providing a filter aid composition including a first acid-treated silica-based filter aid and a second acid-treated silica-based filter aid and filtering the fluid through the filter aid composition. The filter aid composition may have a multimodal particle size distribution such that the first particle size distribution has a d50 greater than the second particle size distribution.
ACID-TREATED FILTER AID BLEND
A filter aid composition may include a first acid-treated silica-based filter aid having a first particle size distribution and a second acid-treated silica-based filter aid having a second particle size distribution. A method of making a filter aid composition may include providing a first silica-based filter aid having a first particle size distribution, providing a second silica-based filter aid having a second particle size distribution, and blending the first silica-based filter aid with the second silica-based filter aid to form the filter aid composition. A method of filtering a fluid may include providing a filter aid composition including a first acid-treated silica-based filter aid and a second acid-treated silica-based filter aid and filtering the fluid through the filter aid composition. The filter aid composition may have a multimodal particle size distribution such that the first particle size distribution has a d50 greater than the second particle size distribution.
Preparation method of tea water, and tea water obtained thereby
The present invention provides a preparation method of tea water comprising the following steps of: inactivating enzymes of raw tea leaves and juicing the tea leaves to obtain a tea juice; and removing ions of the tea juice obtained from the previous step to obtain tea water. In addition, the present invention provides tea water obtained by removing ions from a tea juice of raw tea leaves of which enzymes are inactivated. Skin-stimulating components are reduced in the tea water.
Preparation method of tea water, and tea water obtained thereby
The present invention provides a preparation method of tea water comprising the following steps of: inactivating enzymes of raw tea leaves and juicing the tea leaves to obtain a tea juice; and removing ions of the tea juice obtained from the previous step to obtain tea water. In addition, the present invention provides tea water obtained by removing ions from a tea juice of raw tea leaves of which enzymes are inactivated. Skin-stimulating components are reduced in the tea water.
ASEPTIC METHOD OF PREPARING FRUIT JUICE AND NON-FRUIT JUICE BEVERAGES TO IMPROVE FLAVOR PROFILES AND RETAIN ORGANOLEPTIC PROPERTIES OF FRUIT JUICE AND NON-FRUIT JUICE BEVERAGES
An aseptic method of preparing high acid and low acid fruit and non-fruit beverages to improve flavor profiles and retain organoleptic properties of the fresh ingredients is provided, as well as the fruit and non-fruit beverages obtained through this process with the benefit of extended shelf-life.
ASEPTIC METHOD OF PREPARING FRUIT JUICE AND NON-FRUIT JUICE BEVERAGES TO IMPROVE FLAVOR PROFILES AND RETAIN ORGANOLEPTIC PROPERTIES OF FRUIT JUICE AND NON-FRUIT JUICE BEVERAGES
An aseptic method of preparing high acid and low acid fruit and non-fruit beverages to improve flavor profiles and retain organoleptic properties of the fresh ingredients is provided, as well as the fruit and non-fruit beverages obtained through this process with the benefit of extended shelf-life.
BEVERAGE CONTAINING TEA POLYMERIZED POLYPHENOL AND REBD AND/OR REBM
Tea polymerized polyphenol-containing beverages having reduced bitterness and astringency of tea polymerized polyphenols while maintaining tea-like preferable flavors, methods of production thereof, and the like are provided. The content of tea polymerized polyphenols in a beverage is adjusted to within a certain range, the total content of RebM and RebD in the beverage is adjusted to within a certain range, and the weight ratio of the total content of RebD and RebM to the content of the tea polymerized polyphenols is adjusted to within a certain range.
BEVERAGE CONTAINING TEA POLYMERIZED POLYPHENOL AND REBD AND/OR REBM
Tea polymerized polyphenol-containing beverages having reduced bitterness and astringency of tea polymerized polyphenols while maintaining tea-like preferable flavors, methods of production thereof, and the like are provided. The content of tea polymerized polyphenols in a beverage is adjusted to within a certain range, the total content of RebM and RebD in the beverage is adjusted to within a certain range, and the weight ratio of the total content of RebD and RebM to the content of the tea polymerized polyphenols is adjusted to within a certain range.
COLD BREWING SYSTEM
Disclosed is a brewing system that utilizes a curved pedestal that allows brewed effluent to drain in a manner that travels toward the center of the curved pedestal to maximize the exposure of the effluent to the organic material used for brewing, while also maximizing yield. The pedestal 112 sits above the lowest effluent level to allow the brewed effluent to drain from the organic material that is used for brewing to maximize the amount of effluent obtained. By allowing the brewed effluent to drain from the organic material, the weight and size of the organic material is reduced, so that the filter bag can be removed from the brewing system without ripping or tearing. The brewing system eliminates the need for a separate mesh bag and allows the effluent to drain without squeezing the filter bag and which would otherwise cause the release of harsh oils and acids, which can also be unsanitary as a result of a user handling the bag filter.
COLD BREWING SYSTEM
Disclosed is a brewing system that utilizes a curved pedestal that allows brewed effluent to drain in a manner that travels toward the center of the curved pedestal to maximize the exposure of the effluent to the organic material used for brewing, while also maximizing yield. The pedestal 112 sits above the lowest effluent level to allow the brewed effluent to drain from the organic material that is used for brewing to maximize the amount of effluent obtained. By allowing the brewed effluent to drain from the organic material, the weight and size of the organic material is reduced, so that the filter bag can be removed from the brewing system without ripping or tearing. The brewing system eliminates the need for a separate mesh bag and allows the effluent to drain without squeezing the filter bag and which would otherwise cause the release of harsh oils and acids, which can also be unsanitary as a result of a user handling the bag filter.