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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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Atıf Yapan Yayın
Effect of Drying On Antioxidant Activity, Phenolic Compounds and Mineral Contents of Hawthorn and Wild Pear Fruits
Erwerbs Obstbau Cilt 62 ss. 473-479
Scopus Havuzumuzda 10 atıf almış
The study demonstrated that SD‑4 (3193.894 mg GAE/100 g) followed by SD‑8 (2262.763 mg GAE/100 g) and SD‑7 (1473.956 mg GAE/100 g) had the maximum total phenolic contents. SD‑1 possessed the highest antioxidant activity, which later decreased from 83.067% in fresh fruit to 52.130% following drying. Across all fruits, drying resulted in significant reductions in both total phenolic content and phenolic compounds. Generally, gallic acid and (+)-catechin were the major phenolics in all fruits. Rutin trihydrate content of SD‑4 decreased from 764.980 mg/100 g (fresh) to 0.620 mg/100 g when the fruit was dried. P, K, Ca, Mg and S were the macro elements of all fruits. Across all fruits, drying resulted in significant reductions in both total phenolic content and phenolic compounds. It was observed that dried fruits had the highest mineral contents compared to fresh fruits.
Atıf Yapan Makale Bilgileri
Kurumlar (2)
Necmettin Erbakan Üniversitesi Meram, Turkey
Selçuk Üniversitesi Selçuklu, Turkey