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Analytical methods for the determination of oil carryover from CNG/biomethane refueling stations recovered in a solvent

机译:从溶剂中回收CNG / Biomethane加油站测定来自CNG / Biomethane加油站的分析方法

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摘要

Vehicle gas is often compressed to about 200 bar at the refueling station prior to charging to the vehicle's tank. If a high amount of oil is carried over to the gas, it may cause damage to the vehicles; it is therefore necessary to accurately measure oil carryover. In this paper, three analytical methods for accurate quantification of the oil content are presented whereby two methods are based on gas chromatography and one on FTIR. To better evaluate the level of complexity of the matrix, 10 different compressor oils in use at different refueling stations were initially collected and analysed with GC and FTIR to identify their analytical traces. The GC traces could be divided into three different profiles: oils exhibiting some well resolved peaks, oils exhibiting globally unresolved peaks with some dominant peaks on top of the hump and oils exhibiting globally unresolved peaks. After selection of three oils; one oil from each type, the three methods were evaluated with regards to the detection and quantification limits, the working range, precision, trueness and robustness. The evaluation of the three measurement methods demonstrated that any of these three methods presented were suitable for the quantification of compressor oil for samples. The FTIR method and the GC/MS method both resulted in measurement uncertainties close to 20% rel. while the GC/FID method resulted in a higher measurement uncertainty (U = 30% rel.).
机译:车辆气体经常充电到车辆的油箱之前被压缩到约200巴的加油站。如果石油高量结转到气体,它可能会导致对车辆的损坏;因此有必要精确地测量含油量。在本文中,提出了用于油含量的准确定量三种分析方法,由此这两种方法都基于气相色谱法,一个在FTIR。为了更好地评估矩阵的复杂程度,在使用10个不同的压缩机油在不同的加油站最初收集,用气相色谱和红外光谱进行分析,以确定其分析的痕迹。该GC痕迹可分为三种不同的模式:油表现出一些很好的解决高峰,油表现出与在驼峰顶部一些主峰和油可在全球范围悬而未决峰全球悬而未决峰。三个油选择之后;从每种类型的一种油,三种方法用关于检测和定量限,工作范围,精度,正确度和鲁棒性评价。的证明,呈现任何这三种方法的三个测量方法评价是适用于压缩机油的定量样品。的FTIR方法和GC / MS方法都导致测量不确定性接近20%的相对在GC / FID方法导致更高的测量的不确定性(U = 30%相对)。

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  • 来源
    《RSC Advances》 |2020年第20期|共11页
  • 作者单位

    Res Inst Sweden RISE Brinellgatan 4 S-50462 Boras Sweden;

    Res Inst Sweden RISE Brinellgatan 4 S-50462 Boras Sweden;

    Res Inst Sweden RISE Brinellgatan 4 S-50462 Boras Sweden;

    INERIS Parc Alata F-60550 Verneuil En Halatte France;

    INERIS Parc Alata F-60550 Verneuil En Halatte France;

    INERIS Parc Alata F-60550 Verneuil En Halatte France;

    Waverton Analyt Ltd Emerton Bldg Barony Rd Nantwich CW5 5QS Cheshire England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-19 17:45:16

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