首页> 外文期刊>Remediation: The Journal of Environmental Cleanup Costs, Technologies & Techniques >Isotope applications in environmental investigations: theory and use in chlorinated solvent and petroleum hydrocarbon studies
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Isotope applications in environmental investigations: theory and use in chlorinated solvent and petroleum hydrocarbon studies

机译:同位素在环境研究中的应用:在氯化溶剂和石油烃研究中的理论和用途

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摘要

Isotope applications are gaining acceptance for use in surface water and groundwater investigations; complementing traditional geochemistry and physical hydrology techniques. Recent developments in analytical methodologies and in the understanding of isotope dynamics now allow the use of isotopes to investigate sources and fate of common groundwater contaminants such as chlorinated solvents and petroleum hydrocarbons. Contaminants with unique isotopic signatures may facilitate the determination of contaminant sources in complex plumes. Degradation of chlorinated solvents and some petroleum hydrocarbons impart unique isotopic signatures on both the original contaminant and the degradation product or products that provide verification of degradation. Use of a Rayleigh-type model may allow determination of degradation extent. Coupled with models of contaminant fate and transport, degradation extent may be useful for determining degradation rates.
机译:同位素应用正被用于地表水和地下水研究;对传统地球化学和物理水文学技术的补充。分析方法学和对同位素动力学的理解的最新发展现在允许使用同位素来研究常见地下水污染物(例如氯化溶剂和石油烃)的来源和归宿。具有独特同位素特征的污染物可能有助于确定复杂羽状流中的污染物来源。氯化溶剂和某些石油烃的降解会在原始污染物和降解产物或提供降解验证的产物上赋予独特的同位素特征。使用瑞利型模型可以确定降解程度。结合污染物归宿和运输模型,降解程度可能对确定降解速率很有用。

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