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沉积物间隙水中硫化物的原位二维高分辨率剖析

In situ two-dimensional high-resolution profiling of sulfide in sediment interstitial waters.

作者信息

DeVries Christopher R, Wang Feiyue

机构信息

Environmental Science Program and Department of Chemistry, University of Manitoba, Winnipeg, Manitoba RBT 2N2, Canada.

出版信息

Environ Sci Technol. 2003 Feb 15;37(4):792-7. doi: 10.1021/es026109j.

Abstract

A recently developed technique of diffusive gradients in thin films (D6T)-computer-imaging densitometry (CID) was improved to study in situ two-dimensional distributions of sulfide in sediment interstitial waters adjacent to the DGT device. The in situ profiler accumulates sulfide from the sediment interstitial water through a diffusive gel onto a AgI binding gel to form black Ag2S. The amount of sulfide bound in the binding gel is then determined from the gray scale density of the dried binding gel. New gel-making procedures were employed to produce stable, evenly dispersed AgI binding gels and to minimize the darkening of the AgI gel upon exposure to light The improved DGT-CID technique was used to profile the distribution of sulfide in sediment interstitial waters at Delta Marsh, a highly productive Prairie wetland on the south shore of Lake Manitoba, at a vertical and lateral resolution of < or = 0.4 mm. The in situ high-resolution microprofiles revealed unprecedented two-dimensional heterogeneity in sulfide concentrations in the sediment interstitial waters adjacent to the DGT device. The mosaic distribution of oxic and sulfidic microenvironments suggested not only the complexity and heterogeneity of the biogeochemistry of sulfur species and sulfide-binding metals (e.g., Cd, Cu, Pb, Hg, Zn) in sediments but also the capability of aquatic organisms for coping with the sulfidic environment

摘要

最近开发的薄膜扩散梯度(D6T)-计算机成像密度测定法(CID)技术得到了改进,用于研究DGT装置附近沉积物间隙水中硫化物的原位二维分布。原位剖面仪通过扩散凝胶从沉积物间隙水中积累硫化物,将其吸附到碘化银结合凝胶上形成黑色的硫化银。然后根据干燥结合凝胶的灰度密度来确定结合凝胶中结合的硫化物量。采用了新的凝胶制备程序来生产稳定、均匀分散的碘化银结合凝胶,并尽量减少碘化银凝胶在光照下的变黑现象。改进后的DGT-CID技术用于绘制马尼托巴湖南岸高产草原湿地三角洲沼泽沉积物间隙水中硫化物的分布图,垂直和横向分辨率≤0.4毫米。原位高分辨率微观剖面图揭示了DGT装置附近沉积物间隙水中硫化物浓度前所未有的二维异质性。有氧和含硫微环境的镶嵌分布不仅表明了沉积物中硫物种和硫化物结合金属(如镉、铜、铅、汞、锌)生物地球化学的复杂性和异质性,也表明了水生生物应对含硫环境的能力。

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