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Laboratory study of creosote removal from sand at elevated temperatures

机译:高温下从沙子中去除杂酚的实验室研究

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In situ thermal treatment (ISTT) technologies have been applied at sites impacted by non-aqueous phase liquids (NAPLs). There is a need to establish expectations for the treatment of semi-volatile NAPLs, including those consisting primarily of polycyclic aromatic hydrocarbons (PAHs), and the potential benefits and limitations of partial NAPL removal. A series of laboratory experiments was conducted to investigate NAPL removal and soil concentrations during the heating of creosote-impacted sand, as well as aqueous concentrations during post heating dissolution. The results showed co-boiling near the water boiling temperature due to the low volatility of most creosote components, with limited decreases in NAPL saturation (from 30% to 21% of the pore space). Decreases in soil concentration were more substantial than decreases in NAPL saturation (by a factor of 2-180), with greater removal for higher-volatility components at higher treatment temperatures. Results of the dissolution experiments showed mixed results, with decreases in the aqueous concentrations for 12 of 15 components, but increases in aqueous concentrations for phenanthrene, fluoranthene and pyrene after heating to 205 degrees C or 320 degrees C. Overall, the results illustrate the utility of bench-scale treatability tests in helping to establish ISTT goals and expectations.
机译:原位热处理(ISTT)技术已应用于受非水相液体(NAPL)影响的地点。有必要建立对半挥发性NAPL(包括主要由多环芳烃(PAH)组成的半挥发性NAPL)的处理的期望,以及部分去除NAPL的潜在益处和局限性。进行了一系列实验室实验,以研究杂酚油影响的砂加热过程中NAPL的去除和土壤浓度,以及加热后溶解过程中的水溶液浓度。结果表明,由于大多数杂酚油组分的低挥发性,在沸水温度附近共沸,NAPL饱和度下降幅度有限(从孔隙空间的30%降至21%)。土壤浓度的降低要比NAPL饱和度的降低要大得多(降低了2-180倍),在较高的处理温度下,较高挥发性的组分的去除量更大。溶出度实验的结果显示出混合的结果,其中15种组分中的12种的水溶液浓度降低,但是加热到205摄氏度或320摄氏度后,菲,荧蒽和pyr的水溶液浓度增加。规模可治疗性测试有助于建立ISTT目标和期望。

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