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植被对沉积有机质组成和多环芳烃解吸的影响。

The impact of vegetation on sedimentary organic matter composition and PAH desorption.

作者信息

Nichols Elizabeth Guthrie, Gregory Samuel T, Musella Jennifer S

机构信息

North Carolina State University, Department of Forestry and Environmental Resources, 2800 Faucette Drive, Raleigh, NC 27695, USA.

出版信息

Environ Pollut. 2008 Dec;156(3):928-35. doi: 10.1016/j.envpol.2008.05.011. Epub 2008 Jun 13.

Abstract

Relationships between sedimentary organic matter (SOM) composition and PAH desorption behavior were determined for vegetated and non-vegetated refinery distillate waste sediments. Sediments were fractionated into size, density, and humin fractions and analyzed for their organic matter content. Bulk sediment and humin fractions differed more in organic matter composition than size/density fractions. Vegetated humin and bulk sediments contained more polar organic carbon, black carbon, and modern (plant) carbon than non-vegetated sediment fractions. Desorption kinetics of phenanthrene, pyrene, chrysene, and C(3)-phenanthrene/anthracenes from humin and bulk sediments were investigated using Tenax beads and a two-compartment, first-order kinetic model. PAH desorption from distillate waste sediments appeared to be controlled by the slow desorbing fractions of sediment; rate constants were similar to literature values for k(slow) and k(very slow). After several decades of plant colonization and growth (Phragmites australis), vegetated sediment fractions more extensively desorbed PAHs and had faster desorption kinetics than non-vegetated sediment fractions.

摘要

针对有植被和无植被的炼油厂馏出物废沉积物,确定了沉积有机物质(SOM)组成与多环芳烃(PAH)解吸行为之间的关系。沉积物按粒度、密度和腐殖质组分进行分级,并分析其有机质含量。与粒度/密度组分相比,整体沉积物和腐殖质组分在有机质组成上的差异更大。有植被的腐殖质和整体沉积物比无植被的沉积物组分含有更多的极性有机碳、黑碳和现代(植物)碳。使用Tenax珠和双室一级动力学模型研究了菲、芘、屈和C(3)-菲/蒽从腐殖质和整体沉积物中的解吸动力学。馏出物废沉积物中多环芳烃的解吸似乎受沉积物缓慢解吸组分的控制;速率常数与文献中k(慢)和k(非常慢)的值相似。经过几十年的植物定殖和生长(芦苇),有植被的沉积物组分比无植被的沉积物组分更广泛地解吸多环芳烃,且解吸动力学更快。

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