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Evaluation of Total Petroleum Hydrocarbons (TPH) Measurement Methods for Assessing Oil Contamination in Soil

机译:评价土壤中石油污染的总石油烃(TPH)测量方法的评价

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摘要

The most commonly used total petroleum hydrocarbons (TPH) analysis method measures petroleum hydrocarbon concentrations in soil by carbon range that can be detected by gas chromatography/flame ionization detection (GC/F1D). Different cleanup procedures have been performed for removing some naturally occurring organics from petrogenic hydrocarbons prior to GC/FID analysis. To evaluate the different pre-treatment methods, more than 60 samples (including background soil and plant samples, as well as oil contaminated soil samples) were sampled from 2008 to 2010 in Canada. TPH values without cleanup (TPH-T), with column cleanup (TPH-F_3) and with in-situ cleanup (TPH-F) were compared to evaluate the effects of different pre-treatment methods on the TPH analysis values. Different total solvent extractable materials (TSEM) loading amounts were applied for in-situ silica gel cleanup method to evaluate the effect of the TSEM loading amount on the measured TPH-F values. The column cleanup method was evaluated by comparing the representative polar biogenic organic compounds (BOCs) and TPH in polar fraction (designated as TPH-F_4). Qualitatively, cleanup procedures removed most of the BOCs for background samples with high content of BOCs, but the GC/FID chromatograms did not show significant alteration for samples with heavy oil contamination. The quantified TPH-T, TPH-F3 and TPH-F showed good agreement for oil contaminated samples, even though the loading dosage exceeded the maximum TSEM limits of silica gel (16.7 mg TSEM on per gram silica gel). For background samples, the measured TPH values were ranked as: TPH-T > TPH-F > TPH-F_3 when the TSEM loading amount exceeded 16.7 mg/g of silica gel, but no obvious difference was observed when the TSEM loading amount was less than 16.7 mg/g. Therefore, the TSEM loading capacity played an important role for the cleanup of background samples. The comparison of the measured TPH-T and TPH-F_3 obtained from background soil and plant samples did not show an obvious relationship, thus TPH values of soil samples can not be replaced by those from plants grown in the soil sampled area. The evaluation of column cleanup method showed that this method can effectively remove most of the BOCs, but the removal of the hydrocarbons which contribute to the measured TPH-F_3 can be negligible.
机译:最常用的总石油烃(TPH)分析方法通过可通过气相色谱/火焰电离检测(GC / F1D)检测到的碳范围来测量土壤中的石油烃浓度。在进行GC / FID分析之前,已经执行了不同的净化程序以从生烃中去除一些天然存在的有机物。为了评估不同的预处理方法,从2008年至2010年在加拿大采样了60多个样本(包括背景土壤和植物样本以及受油污染的土壤样本)。比较了未纯化(TPH-T),有柱纯化(TPH-F_3)和有原位纯化(TPH-F)的TPH值,以评估不同预处理方法对TPH分析值的影响。将不同的总溶剂可萃取材料(TSEM)装载量应用于原位硅胶净化方法,以评估TSEM装载量对测得的TPH-F值的影响。通过比较极性部分中的代表性极性生物有机化合物(BOC)和TPH(称为TPH-F_4)来评估柱净化方法。从质量上讲,清除程序去除了具有高BOC含量的背景样品的大多数BOC,但GC / FID色谱图未显示重油污染样品的显着变化。定量的TPH-T,TPH-F3和TPH-F对油污样品显示出良好的一致性,即使加样剂量超过了硅胶的最大TSEM限值(每克硅胶16.7 mg TSEM)。对于本底样品,当TSEM上样量超过16.7 mg / g硅胶时,测得的TPH值排名为:TPH-T> TPH-F> TPH-F_3,而当TSEM上样量小于硅胶时,则没有明显的差异。超过16.7 mg / g。因此,TSEM的负载量对于背景样品的净化起着重要作用。从背景土壤和植物样品中测得的TPH-T和TPH-F_3的比较没有明显的关系,因此土壤样品中的TPH值不能被土壤采样区中生长的植物所替代。色谱柱净化方法的评估表明,该方法可以有效去除大部分BOC,但对测得的TPH-F_3有贡献的碳氢化合物的去除可以忽略不计。

著录项

  • 来源
    《Environmental forensics》 |2013年第3期|193-203|共11页
  • 作者单位

    Institute of Environment Engineering and Science, Key Laboratory of Catalysis and Materials Science of the State Ethnic Affairs Commission & Ministry of Education, College of Chemistry and Material Science, South-Central University for Nationalities, 708 Mingzhu Road, Wuhan 430074, People's Republic of China, and Emergencies Science and Technology Section (ESTS), EOALRSD, Science and Technology Branch, Environment Canada, 335 River Road, Ottawa K1A 0H3, ON, Canada,Emergencies Science and Technology Section (ESTS), EOALRSD, Science and Technology Branch, Environment Canada, Ottawa, ON, Canada;

    Emergencies Science and Technology Section (ESTS), EOALRSD, Science and Technology Branch, Environment Canada, Ottawa, ON, Canada;

    Emergencies Science and Technology Section (ESTS), EOALRSD, Science and Technology Branch, Environment Canada, Ottawa, ON, Canada;

    Emergencies Science and Technology Section (ESTS), EOALRSD, Science and Technology Branch, Environment Canada, Ottawa, ON, Canada;

    Emergencies Science and Technology Section (ESTS), EOALRSD, Science and Technology Branch, Environment Canada, Ottawa, ON, Canada;

    Emergencies Science and Technology Section (ESTS), EOALRSD, Science and Technology Branch, Environment Canada, Ottawa, ON, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    total petroleum hydrocarbons; column cleanup; in-situ cleanup; without cleanup; measurement method;

    机译:总石油烃;列清理;原位清理;不清理测量方法;

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