State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China.
Environ Sci Technol. 2012 Aug 7;46(15):8297-304. doi: 10.1021/es301134h. Epub 2012 Jul 13.
The reassessments of environmental processes in sediments rely upon capturing the heterogeneous features of elements at a small scale and at the same location. In this study, a diffusive gradients in thin films (DGT) technique was developed for the high-resolution simultaneous measurements of dissolved reactive phosphorus (DRP) and dissolved sulfide. A new binding gel was used in this DGT technique, which was prepared by incorporating AgI particles into the zirconium oxide binding gel previously used in the DGT measurement of DRP. The concentrations of the DRP and sulfide loaded into the binding gel were determined by a routine procedure and a computer-imaging densitometry (CID) technique, respectively. The performance of this DGT technique was tested under laboratory conditions and applied to in situ measurements in sediments of a shallow lake. Simultaneous release of DRP and dissolved sulfide was observed in a sulfide microniche with a diameter of ∼3 mm and in locally aggregated zones with a length over 1 cm, which was attributed to the simultaneous reductions of Fe(III) and sulfate and the associated release of Fe-bound P in the zones of the reactive organic matter in sediments. The good performance of this technique implies that there is a great potential for the development of new DGT techniques capable of simultaneous measurements of more analytes.
沉积物中环境过程的再评估依赖于在小尺度和同一位置捕捉元素的非均相特征。在这项研究中,开发了一种扩散梯度薄膜(DGT)技术,用于同时高分辨率测量溶解反应性磷(DRP)和溶解的硫化物。在这种 DGT 技术中使用了一种新的结合凝胶,它是通过将 AgI 颗粒掺入到之前用于 DGT 测量 DRP 的氧化锆结合凝胶中制备的。结合凝胶中负载的 DRP 和硫化物的浓度分别通过常规程序和计算机成像密度计(CID)技术来确定。在实验室条件下测试了该 DGT 技术的性能,并将其应用于浅水湖泊沉积物中的原位测量。在直径约 3 毫米的硫化物微生境中和长度超过 1 厘米的局部聚集区中观察到 DRP 和溶解硫化物的同时释放,这归因于在沉积物中反应性有机物区同时还原 Fe(III)和硫酸盐以及与之相关的 Fe 结合 P 的释放。该技术的良好性能表明,开发能够同时测量更多分析物的新型 DGT 技术具有很大的潜力。