固体相微萃取法现场定量火箭燃料不对称二甲肼在空气中的转化产物

IF 2.8 3区 工程技术 Q2 CHEMISTRY, ANALYTICAL
Bauyrzhan Bukenov, Nurbi Karimkyzy, Aruzhan Smail, Tolkyn Kurmanbayeva, Bulat Kenessov
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引用次数: 0

摘要

尽管利用火箭燃料不对称二甲肼(UDMH)的转化产物(TPs)监测UDMH泄漏地区的空气污染非常重要,但缺乏简单、快速和准确的方法来定量空气中UDMH TPs。本研究旨在建立采用固相微萃取(SPME)和便携式氮磷检测器气相色谱仪(GC-NPD)现场定量空气中UDMH TPs的新方法。当使用已知方法对充满空气的20 ml小瓶进行SPME时,便携式GC-NPD的检测限(lod)范围为4至10µg/m3,比固定式GC-MS高一个数量级,并且可能不足以检测实际空气样品中的UDMH TPs。为了获得更低的lod,将样本量增加到250 mL。根据建模和实验结果,250-mL气体取样灯泡的最佳提取时间为15 min。在lod为0.3-2µg/m3时,将样本量增加到250 mL,提取时间为15 min。为了加强现场测量,对暴露在露天的尾管(内径4.6 mm)进行了24小时SPME初步筛选。根据建模,这样的提取参数应能使纤维涂层中的分析物量增加2.0-3.5倍。经过筛选,用这种方法对“质子- m”运载火箭第一级最近坠落的地方,没有检测到分析物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On-Site Quantification of Transformation Products of Rocket Fuel Unsymmetrical Dimethylhydrazine in Air Using Solid-Phase Microextraction

Despite the high importance of the monitoring of air pollution with transformation products (TPs) of rocket fuel unsymmetrical dimethylhydrazine (UDMH) in the regions of UDMH spills, there is a lack of simple, fast, and accurate methods for quantitation of UDMH TPs in air. This study was aimed at the development of the new method for on-site quantitation of UDMH TPs in air using solid-phase microextraction (SPME) and a portable gas chromatograph with nitrogen–phosphorus detector (GC-NPD). When using a known approach based on SPME from 20-mL vials filled with air, limits of detection (LODs) with a portable GC-NPD ranged from 4 to 10 µg/m3 that is about one order of magnitude higher than with a stationary GC–MS and can be insufficient for detecting UDMH TPs in real air samples. For achieving lower LODs, the sample volume has been increased to 250 mL. According to the modeling and experimental results, the optimal extraction time from 250-mL gas sampling bulbs was 15 min. Increase in the sample volume to 250 mL and extraction time to 15 min provided LODs 0.3–2 µg/m3. To enhance on-site measurements, preliminary screening using 24-h SPME from the liner (internal diameter 4.6 mm) exposed to the open air has been implemented. According to the modeling, such extraction parameters should provide 2.0–3.5 times greater amounts of analytes in the fiber coating. After screening, using this approach on the recent fall place of the first stage of the “Proton-M” carrier rocket, no analytes have been detected.

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来源期刊
Journal of separation science
Journal of separation science 化学-分析化学
CiteScore
6.30
自引率
16.10%
发文量
408
审稿时长
1.8 months
期刊介绍: The Journal of Separation Science (JSS) is the most comprehensive source in separation science, since it covers all areas of chromatographic and electrophoretic separation methods in theory and practice, both in the analytical and in the preparative mode, solid phase extraction, sample preparation, and related techniques. Manuscripts on methodological or instrumental developments, including detection aspects, in particular mass spectrometry, as well as on innovative applications will also be published. Manuscripts on hyphenation, automation, and miniaturization are particularly welcome. Pre- and post-separation facets of a total analysis may be covered as well as the underlying logic of the development or application of a method.
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