School of Biological and Marine Sciences, Plymouth University, Drake Circus, Plymouth PL4 8AA, UK.
School of Geography, Earth and Environmental Sciences, Plymouth University, Drake Circus, Plymouth PL4 8AA, UK.
Environ Pollut. 2017 Jan;220(Pt A):228-233. doi: 10.1016/j.envpol.2016.09.049. Epub 2016 Sep 29.
Samples of dried marine macroalgae (Fucus serratus, Palmaria palmata and Ulva lactuca) have been analysed for trace elements by a novel, non-destructive approach involving a Niton field-portable-X-ray fluorescence (FP-XRF) spectrometer configured in a low density plastics mode with thickness correction. Detection limits for a 200-s counting time ranged from <5 μg g for As and Pb in F. serratus and As in P. palmata to several tens of μg g for Cd, Sb and Sn in all species tested. Arsenic, Cu, Pb and Zn were detected by the XRF in samples collected from a protected beach (n = 18) and in samples therefrom that had been exposed to additional aqueous elements in combination (n = 72) with concentrations returned (in μg g) ranging from 3.9 to 39.7 for As, 13.0 to 307 for Cu, 6.1 to 14.7 for Pb and 12.5 to 522 for Zn. Independent measurements of trace elements in the macroalgae by ICP-MS following nitric acid digestion revealed a direct and significant proportionality with concentrations returned by the XRF, with slopes of the XRF-ICP relationships (As = 1.0; Cu = 2.3; Pb = 2.4; Zn = 1.7) that can be used to calibrate the instrument for direct measurements. The approach shows potential for the in situ monitoring of macroalgae in coastal regions that is currently being investigated.
已通过一种新颖的、非破坏性方法分析了干燥海洋大型藻类(皱波角叉菜、掌状红皮藻和浒苔)中的微量元素,该方法涉及一种尼通(Niton)现场便携式 X 射线荧光(FP-XRF)光谱仪,其配置为低密度塑料模式并带有厚度校正。对于 200 秒计数时间,F. serratus 中的 As 和 Pb 以及 P. palmata 中的 As 的检测限<5μg g,而所有测试物种中的 Cd、Sb 和 Sn 的检测限则为几十μg g。XRF 检测到了来自受保护海滩的样品(n=18)和暴露于其他组合水元素的样品(n=72)中的 As、Cu、Pb 和 Zn,其浓度(μg g)范围分别为 3.9 至 39.7 的 As、13.0 至 307 的 Cu、6.1 至 14.7 的 Pb 和 12.5 至 522 的 Zn。通过硝酸消化后 ICP-MS 对大型藻类中痕量元素的独立测量显示,XRF 回归浓度与测量值之间存在直接且显著的比例关系,XRF-ICP 关系的斜率(As=1.0;Cu=2.3;Pb=2.4;Zn=1.7)可用于校准仪器进行直接测量。该方法显示出用于沿海地区大型藻类原位监测的潜力,目前正在进行研究。