加工条件对卡拉巴什肉豆蔻油点压力的影响

A.A. Ogundeji, O.J. Babatunde, P. O. Ogunsina, O.E. Edu, B. Ogunsina, A.A. Salami
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摘要

考虑到粒度、含水量、加热温度和加热时间,对卡拉巴什肉豆蔻(Monodora myristica)的油点压力进行了研究。对从伊巴丹当地市场获得的新鲜种子进行去皮处理,并清除所有杂质。获得的果核经过碾磨,分级为细粒和粗粒。实验采用中心复合设计,考虑了两个水平的水分含量(17% 和 21%wb)、加热温度(50 和 70 ̊C)和时间(5 和 15 分钟)。获得的数据使用 Design Expert 6.0.8 版进行了分析。结果表明,油点压力随时间而增加,但随着加热温度和含水量的增加而降低。对于细集料,在温度、时间和含水量组合分别为 60 ℃、10 分钟和 23%wb 时,获得的最小油点压力为 0.116 兆帕。然而,对于粗集料,在温度为 70 ℃、加热时间为 5 分钟、含水量为 21%(湿重)的条件下,油点压力最小,为 0.144 兆帕。结果表明,细集料的油点压力低于粗集料。从方差分析来看,加热时间对油点压力有显著影响(p<0.05)。在最佳温度、时间和含水量分别为 64 ̊C 、5 分钟和 21% (w.b) 时,卡巴肉豆蔻的最小油点压力为 0.116 兆帕。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Processing Conditions on Oil Point Pressure of Calabash Nutmeg
The oil point pressure of calabash nutmeg (Monodora myristica) was investigated considering particle size, moisture content, heating temperature and heating time. Freshly harvested seeds obtained from a local market in Ibadan were decorticated and cleaned of all extraneous matter. The kernels obtained were milled and graded into fine and coarse aggregates. The experiment was a central composite design in which two levels of moisture content (17 and 21%wb), heating temperature (50 and 70 ̊C) and time (5 and 15 mins) were considered. The data obtained were analyzed using Design Expert Version 6.0.8. The results showed that oil point pressure increased with time but decreased as heating temperature and moisture content increased. For fine aggregates, the minimum oil point pressure of 0.116 MPa was obtained at a temperature, time and moisture content combination of 60 ̊C, 10 mins and 23%wb, respectively. However, for coarse aggregates, the minimum oil point pressure of 0.144 MPa was obtained at 70 ̊C, 5 mins of heating time and moisture content of 21% (w.b). The results showed that the oil point pressure of fine aggregates was lower than that of the coarse aggregates. From the analysis of variance, heating time had significant effect on the oil point pressure (p<0.05). The minimum oil point pressure of calabash nutmeg was obtained as 0.116 MPa at an optimal temperature, time and moisture content of 64 ̊C, 5 mins and 21% (w.b), respectively.
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