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MDHS 25 Revisited: Part 2, Modified Sampling and Analytical Procedures Applied to HDI-Based Isocyanates

机译:重审MDHS 25:第2部分,适用于基于HDI的异氰酸酯的改进的采样和分析程序

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The method that is probably the most commonly used worldwide for the determination of total organic isocyanates (NCO) in air is the Health and Safety Executive method, MDHS 25/3, Organic Isocyanates in Air, and its variants. This paper summarizes some of the research and development work carried out by Health and Safety Laboratory on this method since its publication in 1999 with the eventual aim of incorporating this work in an updated version of MDHS 25 (i.e. MDHS 25/4). The work falls into two main areas: use of liquid chromatography/mass spectrometry (LC/MS) as an alternative to liquid chromatography with electrochemical and ultraviolet/visible detection (LC/EC/UV) and evaluation of ‘solid-phase’ sampling techniques as an alternative to the impinger–filter combination stated in MDHS 25/3. This paper deals primarily with HDI-based NCO but some comments regarding aromatic NCO (MDI and TDI) are included for completeness. An LC/MS/MS version of MDHS 25/3 has been developed that gives improved performance to the ‘classical’ version of MDHS 25/3 using EC/UV detection. The LC/MS/MS offers significant advantages over the EC/UV version of MDHS 25/3 in that it is more sensitive, provides improved identification, and has been found to be easier to use. The solid-phase samplers evaluated were a double-thickness glass-fibre (GF/B) filter coated with 1-(2-methoxyphenyl)piperazine (MP) reagent in an IOM (Institute of Occupational Medicine) sampling head (‘FIN-MP’ sampler) and an MP-impregnated polyurethane foam sponge (PUF) with an MP-coated glass-fibre (GF/A) backup filter also in an IOM sampling head (‘Rudzinski’ sampler). Both samplers were found to give acceptable performance for the sampling of oligomeric HDI in workplace air and in laboratory simulations when compared to the impinger–filter combination at levels corresponding to the UK short-term limit (70 μg m−3). For practical reasons, the FIN-MP sampler was the preferred alternative.
机译:健康和安全执行方法,MDHS 25/3,空气中的有机异氰酸酯及其变体可能是全球上最常用的测定空气中总有机异氰酸酯(NCO)的方法。本文总结了健康与安全实验室自1999年发布以来对该方法进行的一些研究和开发工作,最终目的是将该工作纳入MDHS 25(即MDHS 25/4)的更新版本中。这项工作分为两个主要领域:使用液相色谱/质谱法(LC / MS)替代具有电化学和紫外/可见光检测的液相色谱法(LC / EC / UV)和评估“固相”采样技术作为MDHS 25/3中所述的冲击器与过滤器组合的替代方案。本文主要涉及基于HDI的NCO,但为了完整起见,还包括一些有关芳族NCO(MDI和TDI)的评论。已经开发了MDHS 25/3的LC / MS / MS版本,可以通过EC / UV检测为“经典”版本的MDHS 25/3提供改进的性能。与MDHS 25/3的EC / UV版本相比,LC / MS / MS具有显着的优势,因为它更灵敏,可提供更好的识别性,并且易于使用。评估的固相采样器是在IOM(职业医学研究所)采样头('FIN-MP)中涂有1-(2-甲氧基苯基)哌嗪(MP)试剂的双厚度玻璃纤维(GF / B)过滤器在IOM采样头中也装有MP浸渍的聚氨酯泡沫海绵(PUF)和带有MP涂层的玻璃纤维(GF / A)备用过滤器(“ Rudzinski”采样器)。与以英国短期限值(70μgm -3 的冲击器-过滤器组合)进行比较时,发现两个采样器在工作场所空气和实验室模拟中的低聚HDI采样性能均可接受。 sup>)。出于实际原因,FIN-MP采样器是首选。

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