首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >DETERMINATION OF FORMALDEHYDE BY CONVERSION TO HEXAHYDROOXAZOLO[3,4-A]PYRIDINE IN A DENUDER TUBE WITH RECOVERY BY THERMAL DESORPTION, AND ANALYSIS BY GAS CHROMATOGRAPHY MASS SPECTROMETRY
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DETERMINATION OF FORMALDEHYDE BY CONVERSION TO HEXAHYDROOXAZOLO[3,4-A]PYRIDINE IN A DENUDER TUBE WITH RECOVERY BY THERMAL DESORPTION, AND ANALYSIS BY GAS CHROMATOGRAPHY MASS SPECTROMETRY

机译:通过热脱附回收并在反吹管中转化为六羟基恶唑啉[3,4-A]吡啶的甲醛含量测定方法及气相色谱-质谱法

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The implications for formaldehyde analysis arising from a recent study where the inter-laboratory relative standard deviation for formaldehyde [CAS Registry number: 50-00-0] monitoring was reported to fall in the range 20 to 605 are discussed, ii thermal desorption approach is proposed as a possible way to address the requirement for less intensive sample processing in formaldehyde analysis; as well as meeting other important criteria such as reduced sample handling and increased overall sensitivity, A denuder tube coated with 2-hydroxymethylpiperidine [CAS Registry number: 3433-37-2] and connected to an adsorbent sampler packed with Tenax TA was used to derivatise formaldehyde vapour, The volatile derivative, hexahydrooruazolo[3,4-a]pyridine [CAS Registry number: 274-50-0], was retained on the adsorbent trap, Analysis of the derivative was accomplished using a thermal desorption technique coupled to gas chromatography-mass spectrometry. To test the approach a test atmosphere generator based on a permeation tube containing alpha-polyoxgmethylene was constructed, A dilution chamber heated to 80 degrees C was used to prevent repolymerisation of the released formaldehyde, Gravimetric measurements indicated that formaldehyde was generated at a rate of 1.9 x 10(-4) g h(-1) (95% confidence limits = +/- 1 x 10(-6) h(-1)) and atmospheres of formaldehyde at concentrations of 5.92, 3.35 and 1.79 mg m(-3), with a water concentration less than 17 mg m(-3) at 20 degrees C and 1.013 kPa mere validated using NIOSH Method 3500 for formaldehyde determination, Formaldehyde masses in the range 0.1 to 16 mu g were sampled using the system described, The contents of the adsorbent trap were then analysed. The data obtained supported the hypothesis that formaldehyde derivatives could be recovered in an analytically useful way by thermal desorption, Mass spectrometric data confirmed previous assignments for hexahydrooxazolo[3,4-a]pyridine and that thermal decomposition did not occur to a detectable extent during desorption, The relationships between mass sampled and instrument response were linear up to the point of breakthrough, with limits of detection in the range 0.03 to 0.51 mg m(-3) formaldehyde in air. [References: 22]
机译:讨论了最近一项研究对甲醛分析的影响,该研究报告了实验室间的甲醛相对标准偏差[CAS注册号:50-00-0]监测值在20至605范围内。提出了一种可能的方法来解决甲醛分析中对强度较低的样品处理的要求;除了满足其他重要标准(例如减少样品处理和提高整体灵敏度)之外,还使用了涂有2-羟甲基哌啶的CAS登记号:3433-37-2并连接到装有Tenax TA的吸附剂取样器的剥蚀管进行衍生化。甲醛蒸气,将挥发性衍生物六氢原氮杂[3,4-a]吡啶[CAS注册号:274-50-0]保留在吸附阱上,使用热脱附技术结合气相色谱法对衍生物进行分析-质谱。为了测试该方法,构建了一个基于包含α-聚氧亚甲基的渗透管的测试气氛发生器,使用了一个加热到80摄氏度的稀释室来防止释放的甲醛发生再聚合,重量测量表明甲醛的生成速率为1.9 x 10(-4)gh(-1)(95%置信度= +/- 1 x 10(-6)h(-1))和浓度为5.92、3.35和1.79 mg m(-3)的甲醛气氛),在20摄氏度和1.013 kPa的水浓度下小于17 mg m(-3),仅通过NIOSH方法3500进行甲醛测定验证,使用所述系统取样的甲醛质量为0.1至16微克。然后分析吸附阱的含量。获得的数据支持以下假说:甲醛衍生物可以通过热解吸以分析上有用的方式回收。质谱数据证实了六氢恶唑并[3,4-a]吡啶的先前赋值,并且在解吸过程中未发生可检测程度的热分解。 ,采样质量与仪器响应之间的关系一直线性直至达到突破点,空气中的甲醛检测极限在0.03至0.51 mg m(-3)甲醛范围内。 [参考:22]

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