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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Microheterogeneity of element distribution and sulfur speciation in an organic surface horizon of a forested Histosol as revealed by synchrotron-based X-ray spectromicroscopy
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Microheterogeneity of element distribution and sulfur speciation in an organic surface horizon of a forested Histosol as revealed by synchrotron-based X-ray spectromicroscopy

机译:基于同步加速器的X射线光谱法揭示了森林组织溶胶有机表面层中元素分布和硫形态的微异质性

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In recent years, the relevance of physico-chemical heterogeneity patterns in soils at the micron and submicron scale for the regulation of biogeochemical processes has become increasingly evident. For an organic surface soil horizon from a forested Histosol in Germany, microspatial patterns of element distribution (sulfur, phosphorus, aluminium, silicon) and S speciation were investigated by synchrotron-based X-ray spectromicroscopy. Microspatial patterns of S, P, Al and Si contents in the organic topsoil were assessed for a sample region of 50μm × 30 μm by spatially resolving μ-XRF. Sulfur speciation at four microsites was investigated by focused X-ray absorption near edge structure (μ-XANES) spectroscopy at the S K-edge. The results show a heterogeneous distribution of the investigated elements on the (sub)micron scale, allowing the identification of diatoms, aluminosilicate mineral particles and sulfide minerals in the organic soil matrix. Evaluation of the S K-edge μ-XANES spectra acquired at four different microsites by linear combination fitting revealed a substantial microspatial heterogeneity of S speciation, characterized by the presence of distinct enrichment zones of inorganic sulfide and zones with dominant organic disulfide S within a few micrometers distance, and coexistence of different S species (e.g. reduced inorganic and organic S compounds) at a spatial scale below the resolution of the instrument (60 nm × 60 nm; X-ray penetration depth: 30μm).
机译:近年来,在微米和亚微米规模的土壤中,物理化学异质性模式与生物地球化学过程调控的相关性变得越来越明显。对于德国森林深层组织土壤中的有机表层土壤层,通过基于同步加速器的X射线光谱显微镜研究了元素分布(硫,磷,铝,硅)和S形态的微空间格局。通过空间分辨X射线荧光光谱法评估了50μm×30μm样品区域中有机表土中S,P,Al和Si含量的微空间格局。通过在S K边缘的聚焦X射线吸收近边缘结构(μ-XANES)光谱研究了四个微场所的硫形态。结果表明,所研究元素的(亚)微米分布不均,从而可以鉴定有机土壤基质中的硅藻,硅铝酸盐矿物颗粒和硫化物矿物。通过线性组合拟合对在四个不同的微场所获得的S K边缘μ-XANES光谱进行评估,发现S形态具有相当大的微空间异质性,其特征是在少数几个区域内存在明显不同的无机硫化物富集区和主要有机二硫化物S区微米的距离,以及在低于仪器分辨率(60 nm×60 nm; X射线穿透深度:30μm)的空间范围内,不同S物种(例如还原的无机和有机S化合物)的共存。

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