首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Characterization of Nile Red as a Tracer for Laser-Induced Fluorescence Spectroscopy of Gasoline and Kerosene and Their Mixture with Biofuels
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Characterization of Nile Red as a Tracer for Laser-Induced Fluorescence Spectroscopy of Gasoline and Kerosene and Their Mixture with Biofuels

机译:尼罗红作为示踪剂用于汽油和煤油及其与生物燃料混合的激光诱导荧光光谱的表征

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摘要

Suitable fluorescence tracers (“dyes”) are needed for the planar measurement of droplet sizes by using a combination of laser-induced fluorescence (LIF) and Mie scattering. Currently, no suitable tracers have been characterized for application in planar droplet sizing in gasoline and kerosene fuels, as well as biofuel blends. One promising tracer is nile red, which belongs to the fluorophore group. For its utilization for droplet size measurements, preliminary characterization of the fluorescence of the respective fuel tracer mixtures are mandatory. For this purpose, the fluorescence and absorption behavior of nile red dissolved in the surrogate fuels Toliso and Jet A-1 as well as in biofuel blends was investigated. The fluorescence signal for nile red that was dissolved in the two base fuels Toliso and Jet A-1 showed a linear behavior as a function of dye concentration. The temperature effect on spectral absorption and emission of nile red was investigated in a specially designed test cell. An ethanol admixture to Toliso led to a spectral shift towards higher wavelengths. The absorption and emission bands were shifted towards lower wavelengths with increasing temperature for all fuels. Both absorption and fluorescence decreased with increasing temperature for all fuels, except for E20, which showed an increased fluorescence signal with increasing temperature. Jet A-1 and its blends with hydroprocessed esters and fatty acids (HEFA) and farnesane did not exhibit explicit variations in spectral absorption or emission, but these blends showed a more distinct temperature dependence compared to the Toliso-ethanol-blends. The effect of photo-dissociation of the LIF signal of the fuel tracer mixtures was studied, and all fuel mixtures besides Toliso showed a more or less distinct decay in the fluorescence signal with time. In summary, all investigated fuel-tracer mixtures are suitable for LIF/Mie ratio droplet sizing in combination with nile red at moderate temperatures and low evaporation cooling rates.
机译:通过结合使用激光诱导荧光(LIF)和Mie散射对液滴大小进行平面测量,需要合适的荧光示踪剂(“染料”)。当前,没有合适的示踪剂被表征用于汽油和煤油燃料以及生物燃料混合物中的平面液滴定径。一种有前途的示踪剂是尼罗红,它属于荧光团。为了将其用于液滴尺寸测量,必须对各个燃料示踪剂混合物的荧光进行初步表征。为此,研究了溶解在替代燃料Toliso和Jet A-1以及生物燃料混合物中的尼罗红的荧光和吸收行为。尼罗红的荧光信号溶解在两种基础燃料Toliso和Jet A-1中,显示出线性行为随染料浓度的变化。在专门设计的测试池中研究了温度对尼罗红光谱吸收和发射的影响。乙醇与Toliso的混合物导致光谱向更高波长移动。对于所有燃料,随着温度的升高,吸收带和发射带向较低波长移动。除E20外,所有燃料的吸收和荧光都随温度升高而降低,但E20随温度升高显示出增强的荧光信号。 Jet A-1及其与加氢处理的酯和脂肪酸(HEFA)和法呢烷的混合物在光谱吸收或发射方面未显示出明显的变化,但是与Toliso-乙醇混合物相比,这些混合物表现出更明显的温度依赖性。研究了燃料示踪剂混合物的LIF信号的光离解效应,除Toliso以外的所有燃料混合物均显示出荧光信号随时间或多或少的明显衰减。总而言之,所有研究的燃料-示踪剂混合物都适合在中等温度和低蒸发冷却速率下与尼罗红结合使用,用于LIF / Mie比液滴定径。

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