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首页> 外文期刊>Transactions of the ASABE >USING TERAHERTZ TIME-DOMAIN SPECTROSCOPY TO DISCRIMINATE AMONG WATER CONTAMINATION LEVELS IN DIESEL ENGINE OIL
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USING TERAHERTZ TIME-DOMAIN SPECTROSCOPY TO DISCRIMINATE AMONG WATER CONTAMINATION LEVELS IN DIESEL ENGINE OIL

机译:用TERAHERTZ时域光谱技术区分柴油机油中的水污染水平

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摘要

Terahertz time-domain spectroscopy (THz-TDS) in the range of 0.5 to 2.0 THz was evaluated for discriminating among water contamination levels (0%, 0.1%, and 0.2%) in diesel engine oil (SAE 15W-40). The absorption coefficient demonstrated potential to discriminate among the three water contamination levels with significant differences among all three levels across the 1.111 to 1.332 THz and 1.669 to 1.934 THz ranges. At each of these frequency ranges, each water contamination level was significantly different from the other two. The 0% water contamination level had the lowest absorption coefficient, while 0.2% water had the highest absorption coefficient. The refractive index demonstrated greater potential to discriminate among water contamination levels with significant differences among all three water levels across the 0.5 to 1.5 THz range. The refractive index of 0% water was the lowest and 0.2% water was the highest across the THz range. Linear regression analysis of the refractive index as a predictor of water contamination level yielded a highly significant equation (p < 0.0001, R-2 = 0.99, RMSE = 0.01) when using the refractive indices at 0.5 THz. The refractive indices of these oil samples were promising for discrimination of water contamination. THz spectroscopy should be evaluated for discriminating other engine oil contaminants.
机译:评估了0.5至2.0 THz范围内的太赫兹时域光谱(THz-TDS),以区分柴油机油(SAE 15W-40)中的水污染水平(0%,0.1%和0.2%)。吸收系数表明可以区分三种水污染水平,在1.111至1.332 THz和1.669至1.934 THz范围内,所有三个水平之间均存在显着差异。在这些频率范围的每个频率范围内,每种水污染水平均与其他两个水平显着不同。 0%的水污染水平具有最低的吸收系数,而0.2%的水具有最高的吸收系数。折射率显示出更大的潜力来区分水污染水平,在0.5至1.5 THz范围内的所有三个水位之间都存在显着差异。在THz范围内,0%水的折射率最低,而0.2%水的折射率最高。当使用0.5 THz的折射率时,将折射率作为水污染水平的预测指标进行线性回归分析可得出一个非常有意义的方程(p <0.0001,R-2 = 0.99,RMSE = 0.01)。这些油样品的折射率有望用于区分水污染。应对太赫兹光谱进行评估,以区别于其他机油污染物。

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