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Smart NMR Method of Measurement of Moisture Content of Vegetables During Microwave Vacuum Drying

机译:微波真空干燥过程中蔬菜水分含量测量的智能NMR方法

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Microwave drying is usually combined with vacuum environment in conjunction with hot air flow to draw the moisture rapidly. The moisture content of the vegetables undergoing drying is hard to measure online. This research designed a microwave vacuum drying (MVD)-low-field nuclear magnetic resonance (NMR) smart device and investigated the feasibility of NMR method for online measurement of state of moisture during MVD. The relation between the signal amplitude (A (2)) and the true moisture content (M (1)) of six kinds of vegetables (mushroom, carrot, potato, lotus, edamame, vegetable corn) was fitted to estimate if NMR can measure the M (1) of vegetables directly. Results showed that A (2) and M (1) of different fresh vegetables had no single empirical mathematical model to fit. However, for each kind of these vegetables, the A (2) and corresponding M (1) in different MVD stages showed a significant linear relationship. The predicted moisture content (M (2)) of mushroom: M (2) = 5.25351 x 10(-4) A (2) - 0.34042, R = 0.996; carrot: M (2) = 5.78756 x 10(-4) A (2) - 0.14108, R = 0.998; potato: M (2) = 3.10019 x 10(-4) A (2) - 0.10612, R = 0.991; lotus: M (2) = 2.32415 x 10(-4) A (2) - 0.01573, R = 0.998; edamame: M (2) = 3.13310 x 10(-4) A (2) - 0.4198, R = 0.996; vegetable corn: M (2) = 1.69461 x 10(-4) A (2) - 0.09063, R = 0.995. The linear models between M (2) and A (2) were able to estimate the end point (M (1) 8%) of MVD with a high accuracy (P > 0.950).
机译:微波干燥通常与真空环境结合使用热空气流动,迅速地吸收水分。正在进行干燥的蔬菜的水分含量很难在线测量。本研究设计了一种微波真空干燥(MVD) - 流场核磁共振(NMR)智能装置,并研究了MVD期间水分状态的NMR方法的可行性。信号幅度(A(2))与六种蔬菜(蘑菇,胡萝卜,马铃薯,莲花,射灯,蔬菜玉米)的真实水分含量(M(1))的关系被安装到估计NMR可以测量直接蔬菜的m(1)。结果表明,(2)和M(1)的不同新鲜蔬菜没有单一的经验数学模型。然而,对于各种这些蔬菜,不同MVD阶段的A(2)和相应的M(1)显示出显着的线性关系。蘑菇的预测水分含量(m(2)):m(2)= 5.25351×10(-4)a(2) - 0.34042,r = 0.996;胡萝卜:M(2)= 5.78756 x 10(-4)a(2) - 0.14108,r = 0.998;土豆:M(2)= 3.10019 x 10(-4)A(2) - 0.10612,r = 0.991;莲花:M(2)= 2.32415 x 10(-4)a(2) - 0.01573,r = 0.998;射灯:M(2)= 3.13310 x 10(-4)a(2) - 0.4198,r = 0.996;蔬菜玉米:M(2)= 1.69461 x 10(-4)a(2) - 0.09063,r = 0.995。 M(2)和(2)之间的线性模型能够以高精度(P> 0.950)估计MVD的终点(m(1)<8%)。

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