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Biofuel ethanol adulteration detection using an ultrasonic measurement method

机译:使用超声波测量方法检测生物燃料乙醇掺假

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摘要

Hydrous ethanol is a worldwide used biofuel. According to Brazilian regulations, the concentration of eth anol in hydrous ethanol can be accepted at a maximum concentration of 93.8% and a minimum of 92.6% by mass. The aim of this study is to identify the possible changes in hydrous ethanol fuel using ultrasonic attenuation and propagation velocity. The experiments were performed in the Laboratory of Ultrasound of the Brazilian National Institute of Metrology (Inmetro). The experiments and uncertainties in the methodology were evaluated according to the Guide to the Expression of Uncertainty in Measurement, JCGM 100:2008. The test samples used in this study were mixtures of ethanol and water with ethanol concentrations varying from 89.84% to 93.71% by mass; and a commercial fuel ethanol bought from a local distributor. The correlation coefficient between ethanol concentrations and ultrasonic propagation velocity was 0.99 (in modulus), and the maximum combined uncertainty was 0.60 m s-1. Considering attenuation, the correlation coefficient was 0.97, and the maximum combined uncertainty was 0.085 dB cm-1. However, its signal is not stable resulting an unreliable parameter. Within the tested con centration range, the highest concentration that is statistically different (p < 0.002, a = 5%) from 92.60% is 92.25%, considering propagation velocity as parameter. To validate the methodology, a commercial eth anol fuel was tested using the proposed method as well as the gas chromatography analytical method (gold standard). Result was statistically identical for propagation velocity when compared to the gold standard.
机译:含水乙醇是世界范围内使用的生物燃料。根据巴西法规,可以接受最大浓度为93.8%,最小浓度为92.6%的乙醇在含水乙醇中的浓度。这项研究的目的是利用超声衰减和传播速度来确定含水乙醇燃料的可能变化。实验是在巴西国家计量学院(Inmetro)的超声实验室中进行的。方法的实验和不确定性根据《测量不确定度表示指南》 JCGM 100:2008进行评估。本研究中使用的测试样品为乙醇和水的混合物,乙醇浓度为89.84%至93.71%(质量);以及从当地经销商处购买的商业燃料乙醇。乙醇浓度与超声传播速度之间的相关系数为0.99(以模量计),最大组合不确定度为0.60 m s-1。考虑到衰减,相关系数为0.97,最大组合不确定度为0.085 dB cm-1。但是,其信号不稳定,导致参数不可靠。在测试的浓度范围内,以传播速度为参数,与92.60%有统计学差异(p <0.002,a = 5%)的最高浓度为92.25%。为了验证该方法,使用提议的方法以及气相色谱分析方法(金标准)测试了商用乙醇燃料。与金标准物相比,传播速度的结果在统计上是相同的。

著录项

  • 来源
    《Fuel》 |2012年第1期|p.209-212|共4页
  • 作者单位

    Laboratory of Ultrasound (Labus), Directory of Scientific and Industrial Metrology (Dimci), National Institute of Metrology, Standardization, and Industrial Quality (Inmetro),Av. Nossa Sra das Cracas, 50 (Predio 1) - Xerem, Duque de Caxias, 25250-020, RJ, Brazil,Department of Organic Chemistry, Institute of Chemistry, Fluminense Federal University (UFF), Campus ofValonguinho, Outeiro de Saojoao Batista, s, Niteroi, 24020-150, RJ, Brazil;

    Laboratory of Ultrasound (Labus), Directory of Scientific and Industrial Metrology (Dimci), National Institute of Metrology, Standardization, and Industrial Quality (Inmetro),Av. Nossa Sra das Cracas, 50 (Predio 1) - Xerem, Duque de Caxias, 25250-020, RJ, Brazil;

    Laboratory of Ultrasound (Labus), Directory of Scientific and Industrial Metrology (Dimci), National Institute of Metrology, Standardization, and Industrial Quality (Inmetro),Av. Nossa Sra das Cracas, 50 (Predio 1) - Xerem, Duque de Caxias, 25250-020, RJ, Brazil,Biomedical Engineering Program, Federal University of Rio de Janeiro (UFRJ), Hondo Macedo Ave., No. 2030, Center of Technology, Block H - Room/327, Cidade Universitaria,Rio de Janeiro, 21941-914, RJ, Brazil;

    Laboratory of Ultrasound (Labus), Directory of Scientific and Industrial Metrology (Dimci), National Institute of Metrology, Standardization, and Industrial Quality (Inmetro),Av. Nossa Sra das Cracas, 50 (Predio 1) - Xerem, Duque de Caxias, 25250-020, RJ, Brazil;

    Department of Organic Chemistry, Institute of Chemistry, Fluminense Federal University (UFF), Campus ofValonguinho, Outeiro de Saojoao Batista, s, Niteroi, 24020-150, RJ, Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ethanol fuel; adulteration; ultrasonic attenuation; ultrasonic propagation velocity;

    机译:乙醇燃料;掺杂;超声衰减;超声传播速度;

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