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Hawthorn (Crataegus spp.) fruit: Some physical and chemical properties
Journal of Food Engineering Cilt 69 ss. 409-413
Scopus Toplam 115 atıf DOI
The hawthorn (Crataegus spp.) fruits were analysed for some physical (dimensions, geometric mean diameter, sphericity, bulk density, fruit density, volume, terminal velocity, hardness and porosity) and chemical (moisture, crude protein, crude oil, crude energy, crude fiber, ash, pH, acidity, water- and alcohol soluble extract) properties. Mineral content of wild hawthorn growing in Turkey were determined by Inductively Coupled Plasma Atomic Emission Spectrometer (ICP-AES). All materials contained high amounts of Ca, K, Mg, Na and P. These values were found as 3046.37 ppm, 13,531.96 ppm, 1502.55 ppm, 312.18 ppm, 1477.88 ppm and 431,307.29 ppm, respectively. The mean pulp and seeds weight, length, diameter, mass, volume, geometric mean diameter, sphericity and projected area were measured as 2.16 g, 0.87 g, 14.39 mm, 19.34 mm, 3.03 g, 3083.3 mm3, 17.52 mm, 1.22 and 4.19 cm2, respectively. The energy, protein, cellulose, oil, ash, acidity and water-soluble extract values of hawthorn fruits were established as 34.02 kcal/g, 2.48%, 4.67%, 0.87%, 2.28%, 1.98% and 32.31%, respectively. It is very important to evaluate the physical properties for the design of equipment used for harvesting, transportation, storage and processing of fresh fruits. Also, the information supplied on the chemical properties of the hawthorn fruit can be used in human nutrition. © 2004 Elsevier Ltd. All rights reserved.
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Monitoring of changes in physico-chemical properties, fatty acids and phenolic compounds of unroasted and roasted sunflower oils obtained by enzyme and ultrasonic extraction systems
Journal of Food Measurement and Characterization Cilt 17 ss. 849-862
Scopus Havuzumuzda 5 atıf almış
The use of enzymes showed some differences in the physicochemical and bioactive properties of the oils. In the enzyme extraction method, the highest free fatty acid content was 2% proteaose enzyme addition and was determined as 17.50%. Enzyme extraction and ultrasonic extraction methods exhibited significant differences in antioxidant activity, and the antioxidant activity of sunflower oils obtained by two different extraction methods changed between 0.47 and 17.60 µg / mL. In both applications, oleic and linoleic acids were the dominant fatty acids of the oil samples. α-Tocopherol contents of sunflower oils were determined between 11.25 and 345.00 mg/100 g. The total phenol contents of sunflower oils obtained by both extraction methods varied between 0.5 and 12.99 mg GAE/100 g. Additionally, a total of sixteen types of phenolic substances were detected in sunflower oils. The most suitable method of sunflower extraction was determined as enzymatic extraction.
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Kurumlar (1)
Selçuk Üniversitesi Selçuklu, Turkey