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Mechanistic characterization of adsorption and slow desorption of phenanthrene aged in soils

机译:土壤中菲的吸附和缓慢解吸的力学特性

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Long-term adsorption of phenanthrene to soils was characterized in a silt-loam (LHS), a sandy soil (SBS), and a podzolized soil (CNS) by use of the Polanyi-Manes model, a Langmuir-type model, and a black carbon-water distribution coefficient (KBC) at a relative aqueous concentration (C-e/S-w) of 0.002-0.32. Aqueous desorption kinetic tests and temperature-programmed desorption (TPD) were also used to evaluate phenanthrene diffusivities and desorption activation energies. Adsorption contribution in soils was 48-70% after 30 days and 64-95% after 270 days. Significant increases in adsorption capacity with aging suggest that accessibility of phenanthrene to fractions of SBS soil matrix was controlled by sorptive diffusion at narrow meso- and micropore constrictions. Similar trends were not significant for LHS silt-loam or CNS podzol. Analysis of TPD profiles reveal desorption activation energies of 35-53 kJ/mol and diffusivities of 1.6 x 10(-7-)9.7 x 10(-8) cm(2)/s. TPD tests also indicate that the fraction of phenanthrene mass not diffusing from soils was located within micropores and narrow width mesopores with a corresponding volume of 1.83 x 10(-5-)6.37 x 10(-5) cm(3)/g. These values were consistent with the modeled adsorption contributions, thus demonstrating the need for such complimentary analytical approach in the risk assessment of organic contaminants.
机译:使用Polanyi-Manes模型,Langmuir型模型和A.L.相对水浓度(Ce / Sw)为0.002-0.32时,黑碳水分配系数(KBC)。水脱附动力学测试和程序升温脱附(TPD)也用于评估菲的扩散率和脱附活化能。 30天后在土壤中的吸附贡献为48-70%,270天后为64-95%。随着年龄的增长,吸附能力的显着增加表明,菲在SBS土壤基质中的可及性受狭窄中观和微孔收缩区的吸附扩散控制。对于LHS粉砂壤土或CNS podzol,类似趋势并不显着。 TPD曲线分析显示解吸活化能为35-53 kJ / mol,扩散率为1.6 x 10(-7-)9.7 x 10(-8)cm(2)/ s。 TPD测试还表明,未从土壤中扩散的菲部分位于微孔和窄宽度的中孔内,相应体积为1.83 x 10(-5-)6.37 x 10(-5)cm(3)/ g。这些值与模拟的吸附贡献一致,因此表明在有机污染物的风险评估中需要这种互补的分析方法。

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