Ma Huilian, Jin Jing, Li Yun, Chen Jiping
Chinese Academy of Sciences(CAS) Key Laboratory of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.
Se Pu. 2017 Oct 8;35(10):1094-1099. doi: 10.3724/SP.J.1123.2017.06023.
A method of comprehensive screening of the target and non-target volatile organic compounds (VOCs) in industrial exhaust gas using thermal desorption-gas chromatography-mass spectrometry (TD-GC-MS) has been developed. In this paper, two types of solid phase adsorption column were compared, and the Tenex SS TD Tube was selected. The analytes were enriched into the adsorption tube by constant flow sampling, and detected by TD-GC-MS in full scan mode. Target compounds were quantified by internal standard method, and the quantities of non-target compounds were calculated by response coefficient of toluene. The method detection limits (MDLs) for the 24 VOCs were 1.06 to 5.44 ng, and MDLs could also be expressed as 0.004 to 0.018 mg/m assuming that the sampling volume was 300 mL. The average recoveries were in the range of 78.4% to 89.4% with the relative standard deviations (RSDs) of 3.9% to 14.4% (=7). The established analytical method was applied for the comprehensive screening of VOCs in a waste incineration power plant in Dalian city. Twenty-nine VOCs were identified. In these compounds, only five VOCs were the target compounds set in advance, which accounted for 26.7% of the total VOCs identified. Therefore, this study further proved the importance of screening non-target compounds in the analysis of VOCs in industrial exhaust gas, and has certain reference significance for the complete determination of VOCs distribution.
建立了一种采用热脱附-气相色谱-质谱联用(TD-GC-MS)技术对工业废气中目标和非目标挥发性有机化合物(VOCs)进行全面筛查的方法。本文比较了两种类型的固相吸附柱,选用了Tenex SS TD管。通过恒流采样将分析物富集到吸附管中,并采用全扫描模式的TD-GC-MS进行检测。目标化合物采用内标法进行定量,非目标化合物的含量通过甲苯的响应系数进行计算。24种VOCs的方法检出限(MDLs)为1.06至5.44 ng,假设采样体积为300 mL,MDLs也可表示为0.004至0.018 mg/m³。平均回收率在78.4%至89.4%之间,相对标准偏差(RSDs)为3.9%至14.4%(n = 7)。将所建立的分析方法应用于大连市某垃圾焚烧发电厂VOCs的全面筛查,共鉴定出29种VOCs。在这些化合物中,只有5种VOCs是预先设定的目标化合物,占鉴定出的总VOCs的26.7%。因此,本研究进一步证明了在工业废气VOCs分析中筛查非目标化合物的重要性,对全面确定VOCs分布具有一定的参考意义。