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首页> 外文期刊>Journal of Contaminant Hydrology >Distribution of carbonaceous matter in lithofacies: Impacts on HOC sorption nonlinearity
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Distribution of carbonaceous matter in lithofacies: Impacts on HOC sorption nonlinearity

机译:岩相中碳质物质的分布:对HOC吸附非线性的影响

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摘要

Both the composition and distribution of the lithocomponents within an aquifer impact hydrophobic organic compound (HOC) transport. Using samples from the sandy, low fraction organic carbon content (f_∝~0.02%) Borden aquifer, we demonstrate how HOC sorption is controlled by the carbonaceous matter (CM) associated with calcareous sedimentary lithocomponents. Two-point isotherms using perchloroethene (PCE) as a sorbate showed that medium-grained lithofacies have a broader range of K_f (Freundlich coefficient), 1 (Freundlich parameter) and f_∝c than fine-grained facies. Dual-mode (linear + Freundlich) sorption modeling, fraction inorganic carbon (f_(ic) and laboratory analyses confirm that both the magnitude and variability of PCE K_d (sorption distribution coefficient) in the Borden aquifer are controlled by the presence of heterogeneous CM in dark and very dark carbonate lithocomponents. Laboratory analyses and model results confirmed that the CM type controlling PCE sorption behavior in the Borden aquifer is in a condensed form, likely kerogen, contained within the carbonate matrix of the grains. The dark carbonate grains comprise a small proportion of the aquifer sediment (<<1%) and are found predominantly in medium-grained lithofacies in the Borden aquifer. These results show that increased heterogeneity, HOC mass storage and sorption nonlinearity associated with medium-grained lithofacies impact HOC transport in historically contaminated sedimentary aquifers.
机译:含水层中岩石成分的组成和分布都会影响疏水性有机化合物(HOC)的运输。使用含沙量低的有机碳含量(f_∝〜0.02%)的Borden含水层中的样品,我们证明了如何通过与钙质沉积岩石组分相关的碳质(CM)来控制HOC吸附。使用全氯乙烯(PCE)作为吸附剂的两点等温线表明,中粒岩相的K_f(弗氏指数),1 / n(弗氏参数)和f_∝c的范围比细粒相的宽。双模式(线性+ Freundlich)吸附模型,无机碳含量(f_(ic))和实验室分析证实,Borden含水层中PCE K_d(吸附分布系数)的大小和变异性均受非均相CM的存在控制。暗的和非常暗的碳酸盐岩岩石成分实验室分析和模型结果证实,控制碳酸盐类型的Borden含水层中PCE吸附行为是凝结形式,可能是干酪根,包含在颗粒的碳酸盐基质中。结果表明,与中粒岩相相关的非均质性,HOC质量存储和吸附非线性的增加影响了历史污染地区的HOC运移,主要是在Borden含水层的中粒岩相中发现的(<< 1%)沉积含水层。

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