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首页> 外文期刊>Journal of Analytical Toxicology >Measurement of low breath-alcohol concentrations: laboratory studies and field experience.
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Measurement of low breath-alcohol concentrations: laboratory studies and field experience.

机译:低呼气酒精浓度的测量:实验室研究和现场经验。

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摘要

Recent federal rules and traffic law changes impose breath-alcohol thresholds of 0.02 and 0.04 g/210 L upon some classes of motor vehicle operators, such as juveniles and commercial vehicle operators. In federally regulated alcohol testing in the workplace, removal of covered workers from safety-sensitive duties, and other adverse actions, also occur at breath-alcohol concentrations (BrACs) of 0.02 and 0.04 g/210 L. We therefore studied performance of vapor-alcohol and breath-alcohol measurement at low alcohol concentrations in the laboratory and in the field, with current-generation evidential analyzers. We report here chiefly our field experience with evidential breath-alcohol testing of drinking drivers on paired breath samples using 62 Intoxilyzer 5000-D analyzers, for BrACs of 0-0.059 g/210 L. The data from 62 law enforcement breath-alcohol testing sites were collected and pooled, with BrACs recorded to three decimal places, and otherwise carried out under the standard Oklahoma evidential breath-alcohol testing protocol. For 2105 pooled simulator control tests at 0.06-0.13 g/210 L the mean +/- SD of the differences between target and result were -0.001 +/- 0.0035 g/210 L and 0.003 +/- 0.0023 g/210 L for signed and absolute differences, respectively (spans -0.016-0.010, 0.000-0.016). For 2078 paired duplicate breath-alcohol measurements with the Intoxilyzer 5000-D, the mean +/- SD difference (BrAC1-BrAC2) were 0.002 +/- 0.0026 (span 0-0.020 g/210 L). Variability of breath-alcohol measurements was related inversely to the alcohol concentration. Ninety-nine percent prediction limits for paired BrAC measurements correspond to a 0.020 g/210 L maximum absolute difference, meeting the NSC/CAOD recommendation that paired breath-alcohol analysis results within 0.02 g/210 L shall be deemed to be in acceptable agreement. We conclude that the field system for breath-alcohol analysis studied by us can and does perform reliably and accurately at low BrACs.
机译:最近的联邦法规和交通法规变更对某些类型的机动车辆操作员(例如青少年和商用车辆操作员)施加了0.02和0.04 g / 210 L的呼吸酒精阈值。在联邦监管的工作场所酒精测试中,在呼吸酒精浓度(BrACs)为0.02和0.04 g / 210 L的情况下,也会从安全敏感的工作中撤离承保工人和其他不良行为。因此,我们研究了使用当前的证据分析仪,可以在实验室和现场进行低酒精浓度下的酒精和呼吸酒精测量。我们主要在此报告我们的现场经验,使用62台Intoxilyzer 5000-D分析仪对配对呼吸样本上的酒后驾驶者进行证据性呼气酒精测试,BrAC为0-0.059 g / 210L。来自62个执法呼气酒精测试场所的数据收集并合并,将BrAC记录到小数点后三位,否则按照俄克拉荷马州证据呼吸酒精测试协议进行。对于0.06-0.13 g / 210 L的2105个合并模拟器控制测试,目标和结果之间差异的平均值+/- SD为-0.001 +/- 0.0035 g / 210 L和0.003 +/- 0.0023 g / 210 L(有符号)和绝对差(分别为-0.016-0.010、0.000-0.016)。对于使用Intoxilyzer 5000-D进行的2078对重复的呼吸酒精测量,​​平均+/- SD差(BrAC1-BrAC2)为0.002 +/- 0.0026(跨度0-0.020 g / 210 L)。呼气酒精测量值的变化与酒精浓度成反比。 BrAC配对测量的99%预测极限对应于0.020 g / 210 L的最大绝对差,符合NSC / CAOD的建议,即0.02 g / 210 L以内的配对呼吸酒精分析结果应被视为可接受。我们得出的结论是,由我们研究的用于呼吸酒精分析的现场系统在低BrAC下可以而且确实能够可靠,准确地运行。

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