干长粒稻谷浸泡过程中的动力学模型 MR297

Q4 Environmental Science
J. Muchlisyiyah, R. Shamsudin, R. Basha, Radhiah Shukri, Syahmeer How, Masmunira Rambli
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引用次数: 0

摘要

本研究旨在评估 MR 297 干燥稻谷在室温和 60 (cid:1) C 热水浸泡两种条件下的浸泡行为。实验涉及将 MR297 干燥稻谷样品在室温下浸泡 0.5 至 8 小时,在 60 (cid:1) C 下浸泡 0.5 至 5 小时。浸泡过程的动力学行为也使用已建立的 25 个预测模型并结合本研究中提出的 5 个新模型进行了模拟。所有预测模型的比较都使用了三种统计量:判定系数(R 方)、估计标准误差(SEE)和均方根误差(RMSE)。Karizaki 10、Midilli Kucuk、Karizaki 8、双项和建议模型被确定为 5 个最有效的预测模型,用于描述 MR297 稻谷在室温下的浸泡行为。此外,这项研究的结果还表明,与其他研究人员采用的常规模型相比,所提出的模型具有更优越的预测性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kinetic Modelling During Soaking of Dried Long Grain Paddy MR297
This study aimed to assess the soaking behaviour of MR 297 dried paddy under two conditions: room temperature and hot water soaking at 60 (cid:1) C. The experiment involved soaking dried MR297 paddy samples in water for 0.5 e 8 h at room temperature and 0.5 e 5 h for soaking at 60 (cid:1) C. The water absorption of MR 297 behaved differently at two different soaking conditions. The kinetic behaviour of the soaking process was also simulated using established 25 predictive models and incorporating 5 novel models presented in this work. The comparison of all prediction models involved using three statistical measures: the coef fi cient of determination (R-squared), standard error of estimates (SEE), and root mean square error (RMSE). The Karizaki 10, Midilli Kucuk, Karizaki 8, Two term, and Proposed Model was determined to be the 5 of most effective predictive models for characterizing the MR297 paddy soaking behaviour at room temperature. While Cubic, Karizaki 11, Karizaki 10, Karizaki 8, and proposed model 5 provided superior predictive capabilities for soaking behaviour of MR 297 at 60 (cid:1) C. Additionally, the fi ndings of this study also indicate that the proposed models exhibit superior predictive performance compared to the convenational models employed by other researchers.
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来源期刊
Asean Journal on Science and Technology for Development
Asean Journal on Science and Technology for Development Environmental Science-Waste Management and Disposal
CiteScore
1.50
自引率
0.00%
发文量
10
审稿时长
14 weeks
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