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一种在低环境磷酸盐浓度下测定淡水样品磷酸盐氧同位素组成的新技术。

A New Technique to Determine the Phosphate Oxygen Isotope Composition of Freshwater Samples at Low Ambient Phosphate Concentration.

机构信息

GEOTOP Université du Québec à Montréal , C.P. 8888, Succ. Centre-Ville, Montréal , Québec H3C3P8 , Canada.

Université du Québec à Montréal , Département des sciences de la Terre et de l'atmosphère , Montréal , Québec H3C3P8 , Canada.

出版信息

Environ Sci Technol. 2019 Sep 3;53(17):10288-10294. doi: 10.1021/acs.est.9b00631. Epub 2019 Aug 16.

Abstract

The oxygen isotope composition of dissolved inorganic phosphate (δO) offers new opportunities to understand the sources and the fate of phosphorus (P) in freshwater ecosystems. However, current analytical protocols for determining δO are unable to generate reliable data for samples in which ambient P concentrations are extremely low, precisely the systems in which δO may provide new and important insights into the biogeochemistry of P. In this Article, we report the development, testing and initial application of a new technique that enables δO analysis to be extended into such ecosystems. The twist spinning mode (TSM) protocol described here enables >1000 L of sample with a P concentration <0.016 mg P L to be initially processed within the field in approximately 24 h. Combined with a new freeze-drying method to maximize the yield and minimize the contamination of silver phosphate generated for isotope ratio mass spectrometry, the TSM protocol is able to generate accurate and precise δO data. We evaluated the TSM protocol using synthetic test solutions and subsequently applied the protocol to samples from locations around the Saint Lawrence River in Montreal, Canada. We believe that the novel technique reported here offers the methodological basis for researchers to extend the application of δO into a much wider range of freshwater ecosystems than has been possible to date.

摘要

溶解无机磷酸盐的氧同位素组成(δO)为理解淡水生态系统中磷(P)的来源和归宿提供了新的机会。然而,目前用于测定δO 的分析方案无法为环境磷浓度极低的样品生成可靠的数据,而正是这些系统中,δO 可能为 P 的生物地球化学提供新的重要见解。在本文中,我们报告了一种新技术的开发、测试和初步应用,该技术可将 δO 分析扩展到此类生态系统中。本文描述的扭旋模式(TSM)方案能够在大约 24 小时内,在野外对初始处理的浓度<0.016mg PL 的 P>1000L 样品进行处理。结合一种新的冻干方法,以最大限度地提高生成的用于同位素比质谱分析的磷酸银的产率并减少其污染,TSM 方案能够生成准确和精确的 δO 数据。我们使用合成测试溶液对 TSM 方案进行了评估,随后将该方案应用于来自加拿大蒙特利尔圣劳伦斯河周边地区的样品。我们认为,这里报道的新技术为研究人员提供了方法学基础,可将 δO 的应用扩展到比以往更广泛的淡水生态系统中。

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