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现场便携式 XRF 法原位测定石莼属中微量元素。

In situ determination of trace elements in Fucus spp. by field-portable-XRF.

机构信息

School of Geography, Earth and Environmental Sciences, Plymouth University, Drake Circus, Plymouth PL4 8AA, UK.

School of Geography, Earth and Environmental Sciences, Plymouth University, Drake Circus, Plymouth PL4 8AA, UK.

出版信息

Sci Total Environ. 2017 Sep 1;593-594:227-235. doi: 10.1016/j.scitotenv.2017.03.091. Epub 2017 Mar 24.

Abstract

Fresh and freeze-dried sample sections of the coastal macroalgae, Fucus serratus and F. vesiculosus, and the brackish water macroalga, F. ceranoides, have been analysed for trace elements by field-portable-X-ray fluorescence (FP-XRF) spectrometry using a Niton XL3t in a low density mode with thickness correction. When analysed fresh in a laboratory accessory stand for a period of 200 seconds, As, Br, Fe and Zn were registered in the apex, mid-frond and lower stipe of all species, with detection limits of a few μg g (As) or a few tens of μg g (Br, Fe, Zn); when analysed dry under the same conditions, concentrations returned were systematically higher and Cu and Pb were detected in a number of F. ceranoides sections. Concentrations arising from both approaches on a dry weight basis were highly correlated, with deviations from unit slope attributed to the absorption of fluorescent X-rays by internal and surficial water when analysed fresh. With algorithms correcting for the effects of water on mass and X-ray absorption, sections of F. vesiculosus and F. ceranoides were analysed in situ with the XRF connected to a mobile stand and laptop. Dry weight concentrations returned for As and Zn were significantly correlated with respective concentrations subsequently determined by ICP-MS following acid digestion and with a slope close to unity; lower concentrations of Fe returned by ICP were attributed to the incomplete acid digestion of silt particles that evaded an initial cleaning step, while Br concentrations could not be verified independently because of loss of volatile forms during digestion. The in situ determination of trace elements in fucoids by FP-XRF provides a rapid and non-destructive means of monitoring environmental quality and identifying hot-spots of contamination, and enables a research strategy to be developed iteratively that is informed by immediate results.

摘要

新鲜和冻干的沿海大型海藻,石莼和泡叶藻,以及半咸水大型海藻,长松藻的样本切片,已经使用 Niton XL3t 在低密度模式下并进行厚度校正,通过现场便携式 X 射线荧光(FP-XRF)光谱法进行了微量元素分析。当在实验室附件架上新鲜分析 200 秒时,在所有物种的顶端、中叶和下部茎中都检测到了 As、Br、Fe 和 Zn,检测限为几μg/g(As)或几十μg/g(Br、Fe、Zn);当在相同条件下干燥分析时,返回的浓度要高得多,并且在一些长松藻切片中检测到 Cu 和 Pb。在干重基础上,两种方法得出的浓度高度相关,偏离单位斜率归因于新鲜分析时内部和表面水对荧光 X 射线的吸收。使用校正水对质量和 X 射线吸收影响的算法,将 XRF 连接到移动支架和笔记本电脑上,对石莼和长松藻的样本切片进行了原位分析。干燥重量的 As 和 Zn 浓度与随后通过酸消解的 ICP-MS 确定的相应浓度显著相关,斜率接近于 1;ICP 返回的 Fe 浓度较低归因于最初清洗步骤中未被消解的淤泥颗粒的不完全酸消解,而 Br 浓度由于消解过程中挥发性形态的损失而无法独立验证。通过 FP-XRF 对褐藻中痕量元素的原位测定提供了一种快速、非破坏性的监测环境质量和识别污染热点的方法,并使能够开发迭代式的研究策略,该策略可以根据即时结果进行信息告知。

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