Mineral composition and its relations to readily available element concentrations in cultivated soils of Finland

R. Keskinen, S. Hillier, E. Liski, V. Nuutinen, Mercy Nyambura, M. Tiljander
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引用次数: 3

Abstract

ABSTRACT Mineral composition is a fundamental feature that affects the properties and functions of soil through physical, chemical and biological interactions. However, comprehensive knowledge on the mineralogy of agricultural topsoils of Finland has been lacking. In this study, the mineral composition of 120 soil samples included in the national monitoring of agricultural soils of Finland was determined using state-of-the-art quantitative x-ray diffraction analysis by a prior measured full pattern fitting methodology. Quartz, plagioclase and K-feldspar were found to be the dominant soil mineral components. Amphiboles and micas were also common, and several other mineral phases were detected in small quantities. The relative proportions of quartz and plagioclases increased and those of mica, goethite, disordered clay minerals, kaolin and amorphous inorganic components decreased as the soil particle size increased. Compositional statistical analysis discerned a positive association between the prevalence of 12 elements and organic matter and surface-active minerals (goethite, chlorite, disordered clays, kaolin and inorganic amorphous materials), whereas micas contributed to the prevalence of K. The present data agreed with general conceptions of Finnish soil mineralogy but revealed novel details in the mineral composition. The relationship observed between soil textural and mineral compositions supports the current texture-based soil classification system and recommendations.
芬兰耕地土壤中矿物组成及其与速效元素浓度的关系
矿物组成是通过物理、化学和生物相互作用影响土壤性质和功能的基本特征。然而,对芬兰农业表土矿物学的全面认识一直缺乏。在这项研究中,120个土壤样品的矿物组成包括在芬兰农业土壤的国家监测中,采用最先进的定量x射线衍射分析,通过事先测量的全模式拟合方法确定。石英、斜长石和钾长石是主要的土壤矿物成分。角闪石和云母也很常见,少量发现了其他几种矿物相。随着土壤粒径的增大,石英和斜长石的相对比例增大,云母、针铁矿、无序粘土矿物、高岭土和无定形无机组分的相对比例减小。成分统计分析发现,12种元素的含量与有机质和表面活性矿物(针铁矿、绿泥石、无序粘土、高岭土和无机无定形材料)呈正相关,而云母则对k的含量有贡献。目前的数据与芬兰土壤矿物学的一般概念一致,但揭示了矿物成分的新细节。观察到的土壤质地和矿物成分之间的关系支持当前基于质地的土壤分类系统和建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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