Viscosity Reduction of Beverages and Foods Containing High Fiber Fruit and Vegetable Materials
A method for enzymatically treating pomace involves subjecting pomace to at least one enzyme in an amount between 0.15-1.0 wt % of the pomace. The pomace-enzyme mixture is heated to 25-57° C. for 10-60 minutes before the at least one enzyme is deactivated to form the enzymatically-treated pomace. Thereafter, the enzymatically-treated pomace may be added to food and beverage products.
1 . A beverage product comprising:
liquid; and
about 1-40 wt % enzymatically-treated pomace, wherein the enzymatically-treated pomace is derived from pomace selected from a group consisting of at least one fruit, at least one vegetable, or combinations thereof; and
wherein the enzymatically-treated pomace comprises an amount of fiber that is the same before and after enzymatic treatment.
2 . The beverage product of claim 1 , wherein the beverage product has a viscosity between 20-4000 cP at 20° C.
3 . The beverage product of claim 1 , wherein the enzymatically-treated pomace is between 1-30 wt %, and wherein the beverage product has a viscosity between 60-250 cP at 20° C.
4 . The beverage product of claim 1 , wherein the enzymatically-treated pomace is between 25-40 wt %, and wherein the beverage product has a viscosity between 700-1800 cP at 20° C.
5 . The beverage product of claim 1 , wherein the enzymatically-treated pomace is about 36 wt %, and wherein the viscosity is between 1300-1500 cP at 20° C.
6 . The beverage product of claim 1 , further comprising:
between 20-40 wt % of a viscous ingredient; and
wherein the viscosity of the beverage product is between 2000-4000 cP at 20° C.
7 . The beverage product of claim 1 , further comprising:
between 1-20 wt % of a viscosity-building ingredient.
8 . The beverage product of claim 1 wherein the liquid comprises a juice selected from a group comprising orange, pineapple, apple, mango, cranberry, grapefruit, blueberry, acai, strawberry, grape, passion fruit, tomato, cucumber, kale, spinach, broccoli, carrot, lemons, limes, tangerine, mandarin orange, tangelo, pomelo, celery, beets, lettuce, spinach, cabbage, artichoke, broccoli, Brussels sprouts, cauliflower, watercress, peas, beans, lentils, asparagus, radish, peach, banana, pear, guava, apricot, watermelon, pomegranate, blackberry, papaya, lychee, plum, prune, fig and combinations thereof.
9 . The beverage product of claim 1 wherein the pomace is derived from at least one fruit or vegetable selected from the group comprising orange, pineapple, apple, mango, cranberry, grapefruit, blueberry, acai, strawberry, grape, passion fruit, tomato, lemon, lime, tangerine, mandarin orange, tangelo, pomelo, peach, banana, pear, guava, apricot, watermelon, pomegranate, blackberry, papaya, lychee, plum, prune, fig, cucumber, kale, spinach, broccoli, carrot, celery, beets, lettuce, spinach, cabbage, artichoke, coconut, broccoli, Brussels sprouts, cauliflower, watercress, peas, beans, lentils, asparagus, radish, wheat grass and combinations thereof.
10 . The beverage product of claim 1 wherein the enzymatically-treated pomace is obtained by treating the pomace with enzymes selected from the group consisting of pectinase, cellulase, hemicellulase or combinations thereof.
11 . The beverage product of claim 1 , wherein the fiber in the enzymatically-treated pomace has a shorter chain length than native fiber in the pomace before the enzymatic treatment.
12 . The beverage product of claim 1 , wherein the beverage product is a reduced calorie beverage comprising a non-nutritive sweetener, and wherein a taste profile of the reduced calorie beverage product is similar to a full-calorie beverage lacking the non-nutritive sweetener.
13 . The beverage product of claim 8 , wherein the beverage product further comprises at least one grain.
14 . The beverage product of claim 13 , wherein the liquid further comprises dairy.
15 . The beverage product of claim 1 , wherein the liquid comprises dairy, and wherein the beverage product further comprises a viscosity-building ingredient.
16 . A food product comprising:
about 1-40 wt % enzymatically-treated pomace, wherein the pomace is derived from the group consisting of at least one fruit, at least one vegetable, or combinations thereof;
wherein the amount of fiber in the pomace remains the same before and after enzymatic treatment; and
wherein the food product exhibits a microbial shelf stability of 6 months.
17 . The food product of claim 16 wherein the pomace is derived from at least one fruit or vegetable selected from the group comprising orange, pineapple, apple, mango, cranberry, grapefruit, blueberry, acai, strawberry, grape, passion fruit, tomato, lemons, limes, tangerine, mandarin orange, tangelo, pomelo, peach, banana, pear, guava, apricot, watermelon, pomegranate, blackberry, papaya, lychee, plum, prune, fig, cucumber, kale, spinach, broccoli, carrot, celery, beets, lettuce, spinach, cabbage, artichoke, coconut, broccoli, Brussels sprouts, cauliflower, watercress, peas, beans, lentils, asparagus, radish, wheat grass and combinations thereof.
18 . A method comprising:
subjecting pomace to at least one enzyme to form a pomace-enzyme mixture, wherein the pomace comprises fiber and the pomace-enzyme mixture comprises the at least one enzyme in an amount between 0.15-1.0 wt % of the pomace;
heating the pomace-enzyme mixture to 25-57° C. for 10-60 minutes; and
deactivating the at least one enzyme to form the enzymatically-treated pomace.
19 . The method of claim 18 wherein the range of the at least one enzyme is between 0.15-0.75 wt % of the pomace.
20 . The method of claim 18 wherein the pomace contains a fiber content of between 3-8 wt %, and wherein the fiber content is the same before and after enzyme treatment.
21 . The method of claim 18 , further comprising:
deactivating the enzyme by heating the pomace-enzyme mixture to 75-107° C. for 6-600 seconds.
22 . The method of claim 18 wherein the enzyme is pectinase, hemicellulase, cellulase, or any combination thereof.
23 . The method of claim 18 , further comprising:
reducing a particle size of the enzymatically-treated pomace.
24 . The method of claim 23 , wherein the particle size of the enzyme-treated pomace is reduced by processes selected from the group consisting of micronization, homogenization, or combinations thereof.
25 . The method of claim 19 , further comprising:
agitating the pomace-enzyme mixture during the heating step.
26 . The method of claim 18 , further comprising:
adding the enzymatically-treated pomace to juice to form a high fiber beverage product, wherein the enzymatically-treated pomace is added in an amount between 1-40 wt % of the high fiber beverage product, and wherein a viscosity of the high fiber beverage product has a viscosity of 20-4000 cP measured at 20° C.
27 . The method of claim 26 , wherein the amount of enzymatically-treated pomace is 36 wt % of the high fiber beverage product, and wherein the viscosity of the high fiber beverage product is between 1300-1500 cP at 20° C.
28 . The method of claim 18 , further comprising:
adding the enzymatically-treated pomace to food to form a high fiber food product, wherein the food product exhibits a microbial shelf stability of 6 months.