Abstract
Crambe abyssinica is a plant with potential for use in industrial
(non-food) plant oil production. The side stream from this oil production is ahigh-protein
crambe meal that has limited value, as it is not fit for food or feed use.
However, it contains proteins that could potentially makeit a suitable raw
material for higher-value products. The purpose of this study was to find
methods of making this side stream into extrudedfilms, showing that products
with a higher value can be produced. The study mainly considered the
development of material compositions andmethods of preparing and extruding the
material. Wheat gluten was added as a supportive protein matrix material,
together with glycerol as aplasticizer and urea as a denaturant. The extrudate
was evaluated with respect to mechanical (tensile testing) and oxygen barrier
properties,and the extrudate structure was revealed visually and by scanning
electron microscopy. A denser, more homogeneous material had a loweroxygen
transmission rate, higher strength, and higher extensibility. The most
homogeneous films were made at an extruder die temperature of125-130 °C. It is
shown here that a film can be extruded with promising mechanical and oxygen
barrier properties, the latter especially after afinal compression
molding step.
| Original language | English |
|---|---|
| Article number | e54770 |
| Number of pages | 6 |
| Journal | Journal of Visualized Experiments |
| Volume | 119 |
| Issue number | 119 |
| DOIs | |
| Publication status | Published - 2017 |
Keywords
- Bioengineering
- Issue 119
- Crambe meal
- side stream
- barrier
- packaging
- extrusion
- gluten
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