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POSITION SPECIFIC ISOTOPE ANALYSIS: THE ULTIMATE TOOL IN ENVIRONMENTAL FORENSICS?

机译:位置特异性同位素分析:环境取证的最终工具?

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The United States Environmental Protection Agency (US EPA)1 has published guidelines for managers of hazardous sites on the use of compound specific isotope analysis (CSIA) for source identification and assessment of biodegradation representing the culmination of over a decade of advancements in stable isotope analysis of environmental contaminants, and introduced CSIA has an accepted and necessary approach in environmental forensics. The classical approach to source apportionment in forensic investigation of organic contaminants is a tiered approach using gas chromatography-flame ionisation detection (GC-FID) and gas chromatography-mass spectrometry (GC-MS) for chemical fingerprinting and quantification followed by multivariate or statistical analysis.2 CSIA is used to complement this approach in cases where the chemical fingerprints of samples of different origins appeared very similar because of a limited range of boiling points3 or where the weathering processes such as volatilisation, sorption or biodegradation had affected the chemical fingerprint to such an extent that it limited the relationship with the original contaminant.3"5 In particular, the carbon stable isotopic signature of polyaromatic hydrocarbons (PAHs) and alkanes appeared little affected by weathering and thus have been successfully employed for source apportionment.4"7
机译:美国环境保护局(US EPA)1已公布的指南上使用复合特定同位素分析(CSIA)的源识别和代表在进步的十年稳定同位素分析大成生物降解的评估有害场所的管理者环境污染物,并引入CSIA在环境法医接受的和必要的方法。的经典方法源解析中的有机污染物的法医调查是使用气相色谱 - 火焰电离检测(GC-FID)和气相色谱 - 质谱(GC-MS),用于化学指纹和定量一种分层的方法,随后多元或统计分析0.2 CSIA用于补充的情况下这种方法,即不同来源的样品的化学指纹图谱显得十分相似,因为沸腾points3或者风化过程,如挥发,吸附和生物降解的有限范围的影响了化学指纹等的程度,即它限制与原始contaminant.3的关系“5特别地,多芳烃(PAHs的)和烷烃的碳的稳定同位素签名出现很少受风化并因此已被成功地用于源apportionment.4” 7

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