Carnauba Wax and Beeswax as Structuring Agents for Water-in-Oleogel Emulsions without Added Emulsifiers
收藏资源简介:
This dataset contains the data used in the publication: <br> <strong><em>"Carnauba Wax and Beeswax as Structuring Agents for Water-in-Oleogel Emulsions without Added Emulsifiers</em>" </strong> (https://doi.org/10.3390/foods12091850) Important abbreviations: #CRW: Indicates the concentration of carnauba wax in the fat phase (e.g., 5CRW - indicates 5%w/w of carnauba wax in the fat phase) #BZW: Indicates the concentration of beeswax in the fat phase (e.g., 5BZW - indicates 5%w/w of beeswax in the fat phase) #W: The number preceding indicates the percentage of water in the sample (e.g., 40W indicates 40%w/w of water in the emulsion) t#: Indicates the number of days in storage (e.g. t1 indicates the sample was measured after 1 day of storage time) LS: Indicates that the sample was prepared on a lab scale PS: Indicates that the sample was prepared on a pilot scale This dataset contains: Microscopies PLM <strong>Figure 6A</strong> - Pilot scale emulsion - 5% carnauba wax - 40% water <strong>Figure 6D</strong> - Pilot scale oleogel - 5% carnauba wax<br> <strong>Figure 7A</strong> - Pilot scale emulsion - 5% beeswax - 20% water <strong>Figure 7D </strong>- Pilot scale oleogel - 5% beeswax<br> <strong>Figure 8A </strong>- CRW-S - Lab scale oleogel - 5% carnauba wax <strong>Figure 8B - </strong>CRW-D<strong> - </strong>Pilot scale oleogel - 5% carnauba wax <strong>Figure 8C - </strong>BZW-S<strong>- </strong>Lab scale oleogel - 5% beeswax <strong>Figure 8D</strong> - BZW-D - Pilot scale oleogel - 5% beeswax<br> Cryo-SEM <strong>Figure 6B </strong>- Pilot scale emulsion - 5% carnauba wax - 40% water <strong>Figure 6E</strong> - Pilot scale oleogel - 5% carnauba wax<br> <strong>Figure 7B</strong> - Pilot scale emulsion - 5% beeswax - 20% water <strong>Figure 7E</strong> - Pilot scale oleogel - 5% beeswax<br> CLSM <strong>Figure 6C</strong> - Lab scale emulsion - 5% carnauba wax - 40% water <strong>Figure 6F</strong> - Lab scale oleogel - 5% carnauba wax<br> <strong>Figure 7C</strong> - Lab scale emulsion - 5% beeswax - 40% water <strong>Figure 7F </strong>- Lab scale oleogel - 5% beeswax Rheology data Strain sweeps <strong>LS_2.5CRW_20W_t1.txt</strong> - Lab scale emulsion - 2.5% carnauba wax - 20% water - day 1 <strong>LS_5CRW_0W_t1.txt</strong> - Lab scale oleogel - 5% carnauba wax - day 1 <strong>LS_5CRW_20W_t1.txt</strong> - Lab scale emulsion - 5% carnauba wax - 20% water - day 1 <strong>LS_5CRW_30W_t1.txt</strong> - Lab scale emulsion - 5% carnauba wax - 30% water - day 1 <strong>LS_5CRW_40W_t1.txt</strong> - Lab scale emulsion - 5% carnauba wax - 40% water - day 1 <strong>LS_7.5CRW_20W_t1.txt</strong> - Lab scale emulsion- 7.5% carnauba wax - 20% water - day 1<br> <strong>LS_1.5BZW_20W_t1.txt</strong> - Lab scale emulsion - 1.5% beeswax - 20% water - day 1 <strong>LS_2.25BZW_20W_t1.txt</strong> - Lab scale emulsion - 2.25% beeswax - 20% water - day 1 <strong>LS_5BZW_0W_t1.txt</strong> - Lab scale oleogel - 5% beeswax - day 1 <strong>LS_5BZW_20W_t1.txt</strong> - Lab scale emulsion - 5% beeswax - 20% water - day 1 <strong>LS_5BZW_30W_t1.txt</strong> - Lab scale emulsion - 5% beeswax - 30% water - day 1 <strong>LS_5BZW_40W_t1.txt</strong> - Lab scale emulsion - 5% beeswax - 40% water - day 1<br> <strong>PS_5BZW_0W_t1.txt</strong> - Pilot scale oleogel - 5% beeswax - day 1 <strong>PS_5BZW_20W_t1.txt</strong> - Pilot scale emulsion - 5% beeswax - 20% water - day 1 <strong>PS_5BZW_40W_t1.txt</strong> - Pilot scale emulsion - 5% beeswax - 40% water - day 1 <strong>PS_5CRW_0W_t1.txt</strong> - Pilot scale oleogel - 5% carnauba wax - day 1 <strong>PS_5CRW_20W_t1.txt</strong> - Pilot scale emulsion - 5% carnauba wax - 20% water - day 1 <strong>PS_5CRW_40W_t1.txt</strong> - Pilot scale emulsion - 5% carnauba wax - 40% water - day 1<br> Data compilation: <strong>Rheology - Average.csv</strong><br> Please consider the following abbreviations in the file CGC = Critical gelling concentration G' = Storage modulus G'' = Loss modulus G* = Complex modulus Strain LVE = Yield strain COP = Crossover point NaN = indicates that the system was not stable and thus not measured Data is presented as Avgerave ± Standard Deviation (of the three repetitions)



