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一种通过磷边缘 X 射线吸收近边结构(XANES)光谱法定量环境样品中不同无机和有机磷化合物的新方法。

A Novel Approach for the Quantification of Different Inorganic and Organic Phosphorus Compounds in Environmental Samples by P L-Edge X-ray Absorption Near-Edge Structure (XANES) Spectroscopy.

机构信息

Lehrstuhl für Bodenkunde, Research Department Ecology and Ecosystem Management, Technische Universität München, Emil-Ramann-Straße 2, 85354 Freising, Germany.

Universidade Federal de Lavras, Departamento de Ciência do Solo, 1001 Av. Doutor Silvio Menicucci, Lavras, MG 37200-000, Brazil.

出版信息

Environ Sci Technol. 2020 Mar 3;54(5):2812-2820. doi: 10.1021/acs.est.9b07018. Epub 2020 Feb 18.

DOI:10.1021/acs.est.9b07018
PMID:32068384
Abstract

Phosphorus (P) is an essential element for life on Earth, with an important and oftentimes unaccounted organic biogeochemical component. Current methods for the quantification of different organic P compounds in environmental samples (e.g., soils, sediments) are based on extraction techniques and often associated with incomplete P recovery or sample changes. In this study, we present a protocol for the quantification of different organic and inorganic P species in soils using synchrotron-based X-ray absorption near-edge structure (XANES) spectroscopy at the P L-edge. Its accuracy and precision was evaluated by analyzing 40 standard mixtures composed of seven different inorganic and organic P compounds (with a mean of = 0.85). In addition, we quantified the P species of two soils and two agro-industrial byproducts using P L-edge XANES spectroscopy and the results were compared with those obtained by P K-edge XANES or P NMR spectroscopy. Using the P L-edge, we identified different organic P species, including those not identified by the common P K-edge XANES. However, there is a consistent underestimation of organic polyphosphates. Overall, the application of P L-edge XANES provides a higher level of information than by P K-edge XANES, although the ubiquitous use of this novel methodology is still limited to samples with a phosphorus content above 3 mg g.

摘要

磷(P)是地球上生命的必需元素,具有重要且经常未被考虑的有机生物地球化学成分。目前,用于量化环境样品(例如土壤、沉积物)中不同有机 P 化合物的方法基于提取技术,并且通常与不完全的 P 回收或样品变化相关。在这项研究中,我们提出了一种使用基于同步加速器的 X 射线吸收近边结构(XANES)光谱在 P 边缘测量土壤中不同有机和无机 P 物种的方法。通过分析由七种不同无机和有机 P 化合物组成的 40 个标准混合物(平均值为 = 0.85)来评估其准确性和精密度。此外,我们使用 P L 边缘 XANES 光谱量化了两种土壤和两种农业工业副产物中的 P 物种,并将结果与通过 P K 边缘 XANES 或 P NMR 光谱获得的结果进行了比较。使用 P L 边缘,我们确定了不同的有机 P 物种,包括那些不能通过常见的 P K 边缘 XANES 识别的物种。然而,对有机多磷酸盐存在一致的低估。总体而言,P L 边缘 XANES 的应用提供了比 P K 边缘 XANES 更高水平的信息,尽管这种新方法的普遍应用仍然仅限于磷含量高于 3 mg g 的样品。

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