A novel process to improve the characteristics of low‐fat ice cream using date fiber powder
Abstract The objective of this study was to improve the characteristics of low‐fat ice cream (LFIC) using date fiber powder (DFP). DFP was added to LFIC mix (3% fat, 14% milk solids nonfat, 15% sucrose, 0.3% stabilizer, and 0.1% vanilla) at a rate of 1.5%, 2.5%, and 3.5%. Control treatment with no D...
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doaj-582d73c15aea4a249b8288504307f6912021-06-11T14:50:07ZengWileyFood Science & Nutrition2048-71772021-06-01962836284210.1002/fsn3.2159A novel process to improve the characteristics of low‐fat ice cream using date fiber powderAli I. A. Mansour0Mahmoud A. Ahmed1Mohamed Salem Elfaruk2Khalid A. Alsaleem3Ahmed R. A. Hammam4Yaser M. A. El‐Derwy5Dairy Science Department Faculty of Agriculture Al‐Azhar University Assiut EgyptDairy Science Department Faculty of Agriculture Al‐Azhar University Assiut EgyptDairy and Food Science Department South Dakota State University Brookings SD USADairy and Food Science Department South Dakota State University Brookings SD USADairy and Food Science Department South Dakota State University Brookings SD USADairy Science Department Faculty of Agriculture Assiut University Assiut EgyptAbstract The objective of this study was to improve the characteristics of low‐fat ice cream (LFIC) using date fiber powder (DFP). DFP was added to LFIC mix (3% fat, 14% milk solids nonfat, 15% sucrose, 0.3% stabilizer, and 0.1% vanilla) at a rate of 1.5%, 2.5%, and 3.5%. Control treatment with no DFP was also manufactured for comparison. The LFIC mix was analyzed for physicochemical and microbiological analyses. After manufacture, microbiological, rheological, and sensory characteristics of LFIC were evaluated during storage at −18˚C for 30 days. The addition of DFP to the LFIC mix led to increasing (p < .05) the density and weight per gallon (lb) of final product. Thus, a 3.5% of DFP led to increasing the density of LFIC from 0.6 to 1.0 g/cm3 and weight per gallon from 5.2 to 9.0 lb, while the overrun of LFIC was decreased (p < .05) from 50.0% to 24.0%. Additionally, the melting resistance of LFIC made with DFP was higher (p < .05) as compared to control. Approximately 60% of LFIC made with DFP was melted after 50 min compared to 100% in control. The total bacterial count (TBC) and yeast and molds' count slightly increased in LFIC with adding DFP. However, there was a slight decrease in these counts during storage for 30 days. Psychrotrophic and coliform bacteria were not detected in the LFIC. Organoleptically, LFIC made with DFP showed higher scores (p < .05) of body and texture, melting quality, and appearance as compared to control during the 30 days of storage. However, the flavor was slightly decreased (p < .05) as the concentration of DFP was increased. The overall scores were increased with increasing the DFP concentrations up to 15 days as compared to control, followed by a decrease at 30 days of storage.https://doi.org/10.1002/fsn3.2159dates fiber powderlow‐fat ice creamrheological characteristicssensory qualityshelf‐life |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ali I. A. Mansour Mahmoud A. Ahmed Mohamed Salem Elfaruk Khalid A. Alsaleem Ahmed R. A. Hammam Yaser M. A. El‐Derwy |
spellingShingle |
Ali I. A. Mansour Mahmoud A. Ahmed Mohamed Salem Elfaruk Khalid A. Alsaleem Ahmed R. A. Hammam Yaser M. A. El‐Derwy A novel process to improve the characteristics of low‐fat ice cream using date fiber powder Food Science & Nutrition dates fiber powder low‐fat ice cream rheological characteristics sensory quality shelf‐life |
author_facet |
Ali I. A. Mansour Mahmoud A. Ahmed Mohamed Salem Elfaruk Khalid A. Alsaleem Ahmed R. A. Hammam Yaser M. A. El‐Derwy |
author_sort |
Ali I. A. Mansour |
title |
A novel process to improve the characteristics of low‐fat ice cream using date fiber powder |
title_short |
A novel process to improve the characteristics of low‐fat ice cream using date fiber powder |
title_full |
A novel process to improve the characteristics of low‐fat ice cream using date fiber powder |
title_fullStr |
A novel process to improve the characteristics of low‐fat ice cream using date fiber powder |
title_full_unstemmed |
A novel process to improve the characteristics of low‐fat ice cream using date fiber powder |
title_sort |
novel process to improve the characteristics of low‐fat ice cream using date fiber powder |
publisher |
Wiley |
series |
Food Science & Nutrition |
issn |
2048-7177 |
publishDate |
2021-06-01 |
description |
Abstract The objective of this study was to improve the characteristics of low‐fat ice cream (LFIC) using date fiber powder (DFP). DFP was added to LFIC mix (3% fat, 14% milk solids nonfat, 15% sucrose, 0.3% stabilizer, and 0.1% vanilla) at a rate of 1.5%, 2.5%, and 3.5%. Control treatment with no DFP was also manufactured for comparison. The LFIC mix was analyzed for physicochemical and microbiological analyses. After manufacture, microbiological, rheological, and sensory characteristics of LFIC were evaluated during storage at −18˚C for 30 days. The addition of DFP to the LFIC mix led to increasing (p < .05) the density and weight per gallon (lb) of final product. Thus, a 3.5% of DFP led to increasing the density of LFIC from 0.6 to 1.0 g/cm3 and weight per gallon from 5.2 to 9.0 lb, while the overrun of LFIC was decreased (p < .05) from 50.0% to 24.0%. Additionally, the melting resistance of LFIC made with DFP was higher (p < .05) as compared to control. Approximately 60% of LFIC made with DFP was melted after 50 min compared to 100% in control. The total bacterial count (TBC) and yeast and molds' count slightly increased in LFIC with adding DFP. However, there was a slight decrease in these counts during storage for 30 days. Psychrotrophic and coliform bacteria were not detected in the LFIC. Organoleptically, LFIC made with DFP showed higher scores (p < .05) of body and texture, melting quality, and appearance as compared to control during the 30 days of storage. However, the flavor was slightly decreased (p < .05) as the concentration of DFP was increased. The overall scores were increased with increasing the DFP concentrations up to 15 days as compared to control, followed by a decrease at 30 days of storage. |
topic |
dates fiber powder low‐fat ice cream rheological characteristics sensory quality shelf‐life |
url |
https://doi.org/10.1002/fsn3.2159 |
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