Javascript must be enabled to continue!
Oleogels Based on a Vegetable Oil Blend Structured by a Binary Beeswax–Monoglyceride System
View through CrossRef
The aim of this study was to produce oleogels based on a vegetable oil blend (high-oleic sunflower, safflower, and linseed oils at a ratio of 60:30:10, respectively) structured with a binary beeswax–monoglyceride system (1:1), as well as to examine the effect of the total structuring agent concentration (3, 6, 9 and 12% (w/w)) on the textural, oil-binding, microstructural, thermal, and rheological characteristics of the resulting oleogels, in order to determine the rational total concentration of the binary structuring agent system. The structuring capacity of the binary system was concentration-dependent: at 6 and 9% (w/w), the hardness of the oleogels exceeded the values of the corresponding single-component systems, whereas at 12% (w/w), no further increase in hardness was observed compared with the monoglyceride oleogel. Increasing the concentration altered crystal morphology: at 6 and 9% (w/w) a more uniform, finely dispersed structure was formed, whereas at 12% (w/w), crystal coarsening and elongation were noted. Overall, a total concentration of 6% (w/w) was considered rational, providing the required balance of characteristics at a relatively low structuring agent content. The resulting oleogel may be regarded as a potential fat base for further research on the development of spreads.
Title: Oleogels Based on a Vegetable Oil Blend Structured by a Binary Beeswax–Monoglyceride System
Description:
The aim of this study was to produce oleogels based on a vegetable oil blend (high-oleic sunflower, safflower, and linseed oils at a ratio of 60:30:10, respectively) structured with a binary beeswax–monoglyceride system (1:1), as well as to examine the effect of the total structuring agent concentration (3, 6, 9 and 12% (w/w)) on the textural, oil-binding, microstructural, thermal, and rheological characteristics of the resulting oleogels, in order to determine the rational total concentration of the binary structuring agent system.
The structuring capacity of the binary system was concentration-dependent: at 6 and 9% (w/w), the hardness of the oleogels exceeded the values of the corresponding single-component systems, whereas at 12% (w/w), no further increase in hardness was observed compared with the monoglyceride oleogel.
Increasing the concentration altered crystal morphology: at 6 and 9% (w/w) a more uniform, finely dispersed structure was formed, whereas at 12% (w/w), crystal coarsening and elongation were noted.
Overall, a total concentration of 6% (w/w) was considered rational, providing the required balance of characteristics at a relatively low structuring agent content.
The resulting oleogel may be regarded as a potential fat base for further research on the development of spreads.
Related Results
Study of the Oxidative Stability of Oleogels Structured with Beeswax Fractions
Study of the Oxidative Stability of Oleogels Structured with Beeswax Fractions
Combining the beeswax fractions is an effective way of structuring edible oils. However, their effect on oleogel oxidative stability is still not studied. Thus, the study on the in...
Chitosan-Based Oleogels: Emulsion Drying Kinetics and Physical, Rheological and Textural Characteristics of Olive Oil Oleogels
Chitosan-Based Oleogels: Emulsion Drying Kinetics and Physical, Rheological and Textural Characteristics of Olive Oil Oleogels
Oleogels are of high interest as promising substitutes for trans fats in foods. An emulsion-templated method was used to trap olive oil in the chitosan crosslinked with vanillin ma...
Effects of Various Adulterants Materials on Properties of Beeswax
Effects of Various Adulterants Materials on Properties of Beeswax
Beeswax is one of the best valued bee products and its demand is high these times in the world market. Adulteration of beeswax with inexpensive materials has become a challenge for...
The effect of addition of high-melting monoacylglycerol and candelilla wax on pea and faba bean protein foam-templated oleogelation
The effect of addition of high-melting monoacylglycerol and candelilla wax on pea and faba bean protein foam-templated oleogelation
Oleogels prepared from hydrocolloids have recently gained a lot of
attention as an alternative for trans and saturated fats. Previously we
have demonstrated that the freeze-dried f...
SELECTION OF STRUCTURING AGENTS FOR THE PRODUCTION OF FOOD OLEOGELS
SELECTION OF STRUCTURING AGENTS FOR THE PRODUCTION OF FOOD OLEOGELS
The paper presents the results of a study on the production of food oleogels based on beeswax, monoglyceride and their binary mixture (50:50) used as structure-forming agents. The ...
Testing of Image Compression Methods
Testing of Image Compression Methods
Seven console codecs BMF 2.01 (BMF.exe), WebP (cwebp.exe, dwebp.exe), PAQ8L (paq-8l_intel.exe), PAQ8P (paq8p_sse2.exe), JPEG-LS (jpeg.exe), JPEG2000 (convert.exe), PNG (opting.exe)...
Oleogels in Pharmaceutical Sciences: A Comprehensive Review
Oleogels in Pharmaceutical Sciences: A Comprehensive Review
Oleogels are gel-based semisolid systems that exhibit desirable rheological, physical, and chemical stability, making them highly suitable for formulation development. They have wi...
Structural Build-Up and Stability of Hybrid Monoglyceride–Triglyceride Oleogels
Structural Build-Up and Stability of Hybrid Monoglyceride–Triglyceride Oleogels
Oleogelation is an alternative oil structuring route to formulate (semi-)solid fats with a reduced amount of saturated fats. Monoglycerides have been identified as effective gelato...

