Pinsirodom, Praphan
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Pinsirodom, Praphan
Alternative Name
Pinsirodom, P.
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praphan.pi@kmitl.ac.th
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Item type:Publication, Evaluation of the efficiency of various folic acid microencapsulation techniques for rice vermicelli (Khanom Jeen) fortification(2024-05-01) ;Yingleardrattanakul, Phatthira ;Thompson, Anthony Keith ;Taprap, Ruchira; Bindu, CharanThis study evaluated the efficiency of various folic acid microencapsulation techniques, such as gel particle (GP), coacervation (CC), and spray drying (SD), for fortification of rice vermicelli. Of the microcapsules, the GP capsules were rough and 13 % soluble in acid solutions; the CC capsules formed spontaneously and were water-soluble for 120 min; and the SD capsules had spherical shape and the fastest acid solubility. The different microcapsule types had different levels of folic acid loss. CC capsules dissolved in water within 120 min, whereas GP and SD capsules were water-insoluble. SD capsules had the lowest moisture content, water activity, pH, and total acidity. For rice vermicelli fortification 300 µg of SD encapsulate per 100 g of flour. The analysis of fortified rice vermicelli included water content, folic acid, pH, total acid, sensory evaluation by drying, high performance liquid chromatography (HPLC), pH meter, titration respectively, and sensory testing. In the mixing, extrusion, and first and second washing steps, the wet weight basis of 100 g folic acid SD was 342.02, 470.67, 530.07, and 546.25 µg, the acidity was 3.96, 4.09, 4.12, and 4.17, respectively; the total acid was 0.11 %, 0.07 %, 0.07 %, and 0.07 %, respectively; and the loss of folic acid during the processing in each step was 38 %, 55 %, and 60 %. The sensory test results among groups were not significantly different (p > 0.05). In conclusion, SD was the most suitable technique for folic acid microencapsulation in rice vermicelli because SD microcapsules were acid-soluble but water-insoluble, thus preventing the loss of folic acid during processing. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Evaluation of spray drying microencapsulation for folic acid fortification of dried rice vermicelli (Khanom Jeen)(2024-12-01) ;Yingleardrattanakul, Phatthira ;Taprap, RuchiraThis study evaluated spray drying (SD) microencapsulation of folic acid for physicochemical properties and its overall suitability for fortification of dried rice vermicelli. The SD microcapsules were formulated to achieve 30 µg of folic acid per 100 g of flour. The formula was homogenized into a 2% solid phase and made into a dry powder by the SD dryer, and the fortified dough was produced and dried in the final step. Fortified samples were analyzed for chemical and physical attributes, sensory evaluation, folic acid content, and stability in processing. The physical quality testing, water content, and the aw values were significantly different from controls (P < 0.05). The acid content was not significantly different (P > 0.05). Color difference, as assessed by a colorimeter, was significant (P < 0.05). In the mixing, extrusion, and first and second washing steps, the coatings effectively prevented loss of folic acid during processing at 15, 12, 38, and 7% by wet weight, respectively. The folic acid content decreased significantly in the first 2 months of storage. In conclusion, for the fortification of flour this method was suitable and the SD microencapsulating technique can protect against folic acid loss during processing.
