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SPME determination of low concentration levels of monoaromatic chemical markers in soils after remediation by supercritical fluid extraction

机译:超临界流体萃取修复后的SPME测定土壤中低浓度的单芳族化学标志物

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Soil contamination by organic compounds has been a serious concern over the years. Among the various forms of pollutant release, gas station contamination has been widely emphasized. The presence of simple aromatic compounds in soils sampled near gas stations may indicate contamination, considering that such compounds are frequently found in petroleum-derived products. The present paper reports on the development of a process that uses pressurized fluids for the remediation of contaminated soils. Supercritical fluid extraction (SFE) employing CO2 as the solvent and an 11.0 g capacity extraction cell was utilized. In order to demonstrate the efficiency of the process, an analytical procedure employing headspace-solid phase micro extraction (HS-SPME) as the sample preparation method and GC-MS as the separation technique was optimized and validated. Limits of quantification and detection obtained were in agreement with the values established by national and international regulatory agencies. The linear range obtained was from 10 to 260 ??g kga?’1, with determination coefficients r2 0.98 for all analyses. Different removal rates were observed for the contaminants studied, the best results being achieved by employing CO2 in a supercritical state.
机译:多年来,有机化合物对土壤的污染一直是一个严重的问题。在各种形式的污染物释放中,加油站污染得到了广泛的重视。考虑到在石油衍生产品中经常发现这样的化合物,在加油站附近的土壤中存在简单的芳香族化合物可能表明存在污染。本文报道了使用加压流体修复污染土壤的方法的发展。使用了以CO2为溶剂的超临界流体萃取(SFE)和容量为11.0 g的萃取池。为了证明该方法的效率,优化和验证了采用顶空-固相微萃取(HS-SPME)作为样品制备方法和GC-MS作为分离技术的分析程序。获得的定量和检测极限与国家和国际监管机构确定的值一致。获得的线性范围是10到260 g·kg·a-1,所有分析的测定系数r2> 0.98。对于所研究的污染物,观察到了不同的去除率,通过在超临界状态下使用CO2可获得最佳结果。

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