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土壤和沉积物中磷和金属的生物有效性评估:薄膜扩散梯度(DGT)综述

Bioavailability assessment of phosphorus and metals in soils and sediments: a review of diffusive gradients in thin films (DGT).

作者信息

Zhang Chaosheng, Ding Shiming, Xu Di, Tang Ya, Wong Ming H

机构信息

GIS Centre, Ryan Institute, and School of Geography and Archaeology, National University of Ireland, Galway, Ireland,

出版信息

Environ Monit Assess. 2014 Nov;186(11):7367-78. doi: 10.1007/s10661-014-3933-0. Epub 2014 Jul 12.

Abstract

This paper provides an overview of the principle and latest development of the diffusive gradients in thin films (DGT) technology and its applications in environmental studies with a focus on bioavailability assessment of phosphorus and metals in sediments and soils. Compared with conventional methods, DGT, as a passive sampling method, has significant advantages: in situ measurement, time averaged concentrations and high spatial resolution. The in situ measurement avoids artificial influences including contamination of samples and sample treatment which may change the forms of chemicals. The time averaged concentration reflects representative measurement over a period of time. The high-resolution information captures the biogeochemical heterogeneity of elements of interest distributed in microenvironments, such as in the rhizosphere and the vicinity of the sediment-water interface. Moreover, DGT is a dynamic technique which simultaneously considers the diffusion of solutes and their kinetic resupply from the solid phases. All the advantages of DGT significantly promote the collection of "true" information of the bioavailable or labile forms of chemicals in the environment. DGT provides potential for applications in agriculture, environmental monitoring and the mining industry. However, the applications are still at the early testing stage. Further studies are needed to properly interpret the DGT-measured results under complex environmental conditions, and standard procedures and guideline values based on DGT are required to pave the way for its routine applications in environmental monitoring.

摘要

本文概述了薄膜扩散梯度(DGT)技术的原理、最新进展及其在环境研究中的应用,重点是沉积物和土壤中磷和金属的生物有效性评估。与传统方法相比,DGT作为一种被动采样方法具有显著优势:原位测量、时间平均浓度和高空间分辨率。原位测量避免了包括样品污染和样品处理在内的人为影响,而这些可能会改变化学物质的形态。时间平均浓度反映了一段时间内的代表性测量结果。高分辨率信息捕捉了分布在微环境(如根际和沉积物 - 水界面附近)中感兴趣元素的生物地球化学异质性。此外,DGT是一种动态技术,它同时考虑了溶质的扩散及其从固相的动力学再供应。DGT的所有优点显著促进了环境中化学物质生物可利用或不稳定形态“真实”信息的收集。DGT在农业、环境监测和采矿业中具有应用潜力。然而,这些应用仍处于早期测试阶段。需要进一步研究以在复杂环境条件下正确解释DGT测量结果,并且需要基于DGT的标准程序和指导值为其在环境监测中的常规应用铺平道路。

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