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碾后白米形变消除规律试验 被引量:2

Experiment on deformation relief of rice after milling process
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摘要 为解决碾后白米抛光时碎米多的问题,该研究以碾后的白米为原料,研究温度、相对湿度以及含水率对白米形变消除时间的影响规律,采用二次旋转组合试验方法设计试验,比较了白米形变消除后抛光与碾后直接抛光的整精米率。用EXCEL软件和SAS软件处理数据,建立相关数学方程。结果表明:在试验参数范围内(温度5~45℃,含水率13%~17%,相对湿度25%~85%),碾后白米的形变经过46~69min可以消除;含水率、环境温度和相对湿度对形变消除时间影响显著;白米消除形变后抛光的整精米率明显高于直接抛光的整精米率。所建数学模型对碾后白米形变消除具有指导作用。 In order to increase the percentage of head milled rice after polishing process, the effects of temperature, relative humidity and initial water content on the time of deformation relief were studied by quadratic regression rotary combination experiments. Taking rice as raw material, the head rice rate of polished rice after deformation relief were compared with that of traditional method. Excel and SAS software were employed to analyze the experimental data, and the relative mathematical model was established. The results showed that within the experimental parameters rang (temperature 5-45℃,water content 13%-17% and relative humidity 25%-85%), 46-69 min could relieve deformation of milled rice, the initial water content, temperature and relative humidity have significant effect on the time of deformation relief. The head rice rate of polishing process after deformation relief is obviously higher than that of directly polishing process. The mathematical model can provide a theoretical support for deformation relief process of rice.
出处 《农业工程学报》 EI CAS CSCD 北大核心 2011年第8期383-386,共4页 Transactions of the Chinese Society of Agricultural Engineering
基金 东北农业大学科技创新计划资助(CXT001-3-2) 黑龙江省自然科学基金资助(200809)
关键词 形变 温度 模型 整精米率 相对湿度 初始含水率 deformation temperature models head rice rate relative humidity initial water content
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  • 1贾富国,白士刚.糙米加湿调质过程中最佳一次加湿量的研究[J].中国粮油学报,2005,20(6):1-3. 被引量:28
  • 2贾富国,邓华玲,郑先哲,白士刚,王福林.糙米加湿调质对其碾米性能影响的试验研究[J].农业工程学报,2006,22(5):180-183. 被引量:24
  • 3南景富,贾富国,白士刚.糙米加湿调质最适宜加工水分含量研究[J].农机化研究,2007,29(2):159-161. 被引量:4
  • 4GB/T21719-2008:稻谷整精米率检验法[S].
  • 5Cao W, Nishiyama Y, Koide S. Physicochemical, mechanical and thermal properties of brown rice grain with various moisture contents[J]. International Journal of Food Science and Technology, 2004, 39(9): 899-906.
  • 6Das M, Gupta S, Kapoor V, et al. Enzymatic polishing of rice- A new processing technology[J]. LWT-Food Science and Technology, 2008, 41: 2079-2084.
  • 7Das M, Banerjee R, Bal S. Evaluation of physicochemical properties of enzyme treated brown rice (Part B)[J]. LWT- Food Science and Technology, 2008, 41: 2092-2096.
  • 8Arora G, Sehgal V K, Arora M. Optimization of process parameters for milling of enzymatically pretreated Basmati rice[J]. Journal of Food Engineering, 2007, 82: 153-159.
  • 9贾富国. 一种改善糙米碾米性能的酶法预处理工艺[P]. 中国专利:ZL201110268371.4, 2013-07-10.
  • 10Hegde S, Kavitha S, Varadaraj M C, et al. Degradation of cereal bran polysaccharide-phenolic acid complexes by Aspergillus niger CFR 1105[J]. Food Chemistry, 2006, 96(1): 14-19.

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