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Mathematical modeling for the annatto (Bixa orellana L.) seed drying process

机译:安纳托(Bixa orellana L.)种子干燥过程的数学模型

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The pigment extraction process using annatto (Bixa orellana L.) seed produces a large amount of seed waste. Although most of these seeds are discarded, a number of studies report promising results with their use in animal feed. The good fiber content also suggests human nutrition applications, with possible incorporation in dietary foods. In the present study, annatto seeds derived from color extraction were dried, with and without the layer of oil left over from the process. Seeds were dried at 40, 50, 60 and 70 °C. Drying data were fitted to the Diffusion Approximation, Two Term, Midilli, Page and Thompson models. Drying was carried out up to a moisture content of approximately 5% wet basis. All the models studied exhibited adequate fit to the drying kinetics data of the annatto seeds, with coefficients of determination above 0.98 and root mean squared error (RMSE) below 1.0. Seeds with oil had longer drying times at 40 and 50 °C and shorter times at 60 and 70 °C. The coefficients of diffusion showed values between 2.67 x 10-11 and 9.50 x 10-11 m2 s-1 and between 2.7 x 10-11 and 6.21 x 10-11 m2 s-1, while activation energies for liquid diffusions were 38.04 and 23.52 kJ mol-1, for residual seed drying with and without oil, respectively.
机译:使用annatto(Bixa orellana L.)种子的色素提取过程会产生大量种子废物。尽管这些种子中的大多数被丢弃了,但许多研究报告称它们在动物饲料中的应用前景可观。良好的纤维含量还暗示了人类的营养应用,并可能将其掺入饮食中。在本研究中,将得自颜色提取物的安纳托种子进行干燥,无论有无过程中残留的油层。种子在40、50、60和70°C下干燥。将干燥数据拟合到扩散近似,二项,Midilli,Page和Thompson模型。进行干燥直至水分含量约为5%湿基。所有研究的模型均显示出与安纳托种子干燥动力学数据的充分拟合,测定系数高于0.98,均方根误差(RMSE)低于1.0。带油种子在40和50°C的干燥时间更长,在60和70°C的干燥时间更短。扩散系数显示值介于2.67 x 10-11和9.50 x 10-11 m2 s-1之间,以及介于2.7 x 10-11和6.21 x 10-11 m2 s-1之间,而液体扩散的活化能分别为38.04和23.52 kJ mol-1,分别用于有油和无油的残留种子干燥。

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