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首页> 外文期刊>Journal of Applied Geophysics >The application of some mineral magnetic measurements and heavy metal analysis for characterising fine sediments in an urban catchment, Coventry, UK
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The application of some mineral magnetic measurements and heavy metal analysis for characterising fine sediments in an urban catchment, Coventry, UK

机译:在英国考文垂,一些矿物磁测量和重金属分析在表征城市集水区细沉积物中的应用

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Mineral magnetic measurements allow the quick and non-destructive characterisation of environmental materials in order to act as a proxy for heavy metal concentrations in solid deposits, correlate across a suite of lake cores and trace sediments. They have been very successful in a wide variety of environments and climatic conditions. Their success has mainly been in terms of discriminating between sediments with very different magnetic characteristics such as topsoil and subsoil in relatively undisturbed lake catchments. The urban environment, however, is characterised by constant disturbance, with many diverse point and diffuse sources and unique processes which change environmental conditions and the composition of the resulting sediment mixture. This paper applies mineral magnetic measurements to urban dusts and sediments from lakes, streams, streets and wetlands in Coventry, UK. Statistical correlation of the magnetic and heavy metal characteristics of a variety of urban dusts and deposits to investigate the relationship between these properties proved inconsistent at best. Using chi (lf) and SIRM measurements to trace sediments moving in an urban lake-catchment showed that biogeochemical processes occurring while the sediment moves from source to deposit precludes the use of the chosen parameters for tracing studies. Correlation of a suite of cores across a paired lake-catchment study proved ineffective due to catchment disturbance. Catchment disturbance and multiple sources may therefore make techniques developed in less complex environments unsuitable when applied to the urban "multicomponent, multiphase" one [D.R. Turner, 1992. The chemistry of metal pollutants in water. In: Harrison, R.M. (Ed.). Pollution: Causes, Effects and Controls. Royal Society of Chemistry, Cambridge. pp. 19-32]. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 36]
机译:矿物磁测量可以快速,无损地表征环境物质,以替代固体沉积物中的重金属浓度,在一系列湖芯和痕量沉积物中相互关联。它们在各种环境和气候条件下都非常成功。它们的成功主要在于区分具有相对不同磁特性的沉积物,例如相对未受干扰的湖泊集水区的表层土壤和下层土壤。然而,城市环境的特征是持续不断的扰动,具有许多不同的点和扩散源以及独特的过程,这些过程改变了环境条件和所形成的沉积物混合物的成分。本文对英国考文垂的湖泊,溪流,街道和湿地的城市灰尘和沉积物进行矿物磁测量。各种城市粉尘和沉积物的磁性和重金属特征的统计相关性研究这些特性之间的关系充其量是矛盾的。使用chi(lf)和SIRM测量来追踪城市湖泊集水区中的沉积物运动表明,当沉积物从源头迁移到沉积物时发生的生物地球化学过程,使得无法使用所选参数进行追踪研究。由于集水区扰动,在成对的湖泊集水区研究中,一组岩心的相关性被证明是无效的。因此,集水扰动和多种来源可能会使在较不复杂的环境中开发的技术不适用于城市“多组分,多相”油田。 Turner,1992年。水中金属污染物的化学作用。在:哈里森,R.M. (编)。污染:原因,影响和控制。剑桥皇家化学学会。 pp。19-32]。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:36]

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