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低温热解吸柴油污染土壤:温度和土壤质地对污染物去除动力学的影响。

Low-temperature thermal desorption of diesel polluted soil: influence of temperature and soil texture on contaminant removal kinetics.

机构信息

Department of Civil and Environmental Engineering, University of Catania, Viale A Doria, 6 - 95125, Catania, Italy.

出版信息

J Hazard Mater. 2011 Jan 15;185(1):392-400. doi: 10.1016/j.jhazmat.2010.09.046. Epub 2010 Sep 22.

Abstract

Five soil size aggregate fractions, corresponding to coarse (500-840 μm), medium (200-350 μm), fine (75-200 μm) sand, silt (10-75 μm) and clay (<4 μm), were artificially contaminated with diesel, and thermally treated using a laboratory scale apparatus to investigate the effect of soil texture on contaminant adsorption and removal. Ex situ thermal process was simulated using helium as the carrier gas at a flow rate of 1.5 L min(-1), different temperatures (100-300 °C) and different treatment times (5-30 min). The amount of contaminant adsorbed on the soil and the residual amount after thermal treatment was determined by gas chromatography. Results showed that adsorption phenomena and desorption efficiency were affected by the soil texture and that temperature and time of treatment were key factors in remedial process. A temperature of 175 °C is sufficient to remedy diesel polluted sandy and silty soils, whereas a higher temperature (250 °C) is needed for clays. Thermal desorption of diesel polluted soil was shown to be governed by first-order kinetics. Results are of practical interest and may be used in scaling-up and designing desorption systems for preliminary cost and optimal condition assessment.

摘要

将 5 种土壤大小的团聚体(对应粗砂(500-840 μm)、中砂(200-350 μm)、细砂(75-200 μm)、粉土(10-75 μm)和粘土(<4 μm))人为地用柴油污染,并使用实验室规模的设备进行热处理,以研究土壤质地对污染物吸附和去除的影响。使用氦气作为载气,流速为 1.5 L min(-1),在不同温度(100-300 °C)和不同处理时间(5-30 min)下模拟了异位热过程。通过气相色谱法确定污染物在土壤上的吸附量和热处理后的残留量。结果表明,吸附现象和解吸效率受土壤质地的影响,而处理的温度和时间是补救过程中的关键因素。175°C 的温度足以修复柴油污染的砂质和粉质土壤,而对于粘土则需要更高的温度(250°C)。柴油污染土壤的热解吸受一级动力学控制。结果具有实际意义,可用于放大和设计解吸系统,以初步评估成本和最佳条件。

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