使用便携式传感平台对北极水域的营养物质进行分析

Margaret McCaul, P. Magni, S. Jordan, E. McNamara, A. Satta, D. Diamond, A. Ribotti
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引用次数: 2

摘要

通过使用快速原型技术、比色化学、电子和基于LED的光学检测,实现了一种用于检测天然水中营养物质(PO4 3−、NO2−、NO3−)的便携式传感平台。传感平台在设计上是模块化的,包括可互换的光学检测单元,每个单元的组件成本约为300欧元,并且外形尺寸较小(20厘米×6厘米×3.5厘米)。该平台的实验室测试和验证在部署前在位于Ny Aselond(79°N,12°E)的CNR Dirigibile Italia北极研究站进行。所获得的结果显示出极好的线性响应,检测限为0.05μM(NO2−、NO3−)和0.03μM(PO4 3−)。2016年6月22日,在Ny Aselond的Kongsfjorden(78.5–79°N,11.6–12.6°E)进行了一次实地考察,期间使用MS Teisten研究船上的10 L Niskin瓶采集了55个水样。还使用带有浊度和溶解氧传感器的Seabird 19plus V2 SeaCAT Profiler CTD探针进行了23次水文模拟。随后,在CNR Dirigibile Italia北极研究站实验室使用自适应传感平台对水样进行了PO4 3−、NO2−和NO3−分析。将营养物浓度与水文数据进行比较,以评估影响峡湾内营养物浓度的过程。这项研究强调了自适应传感平台在偏远地区作为独立平台和/或用于可部署环境传感器网络验证的潜在用途。
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Nutrient Analysis in Arctic Waters Using a Portable Sensing Platform
A portable sensing platform for the detection of nutrients (PO4 3−, NO2 −, NO3 −) in natural waters has been realized through the use of rapid prototyping techniques, colorimetric chemistries, electronics, and LED-based optical detection. The sensing platform is modular in design incorporating interchangeable optical detection units, with a component cost per unit of ca. €300, and small form factor (20 cm × 6 cm x 3.5 cm). Laboratory testing and validation of the platform was performed prior to deployment at the CNR Dirigibile Italia Arctic Research Station, Ny-Aselund (79°N, 12°E). Results obtained showed excellent linear response, with a limit of detection of 0.05 μM (NO2 −, NO3 −), and 0.03 μM (PO4 3−). On the June 22, 2016 a field campaign took place within Kongsfjorden, Ny-Aselund (78.5–79°N, 11.6–12.6°E), during which 55 water samples were acquired using 10 L Niskin bottles on board the MS Teisten research vessel. 23 hydrological casts were also performed using a Seabird 19plus V2 SeaCAT Profiler CTD probe with turbidity and dissolved oxygen sensors. Water samples were subsequently analyzed for PO4 3−, NO2 −, NO3 − at the CNR Dirigibile Italia Arctic Research Station Laboratory using the adaptive sensing platform. Nutrient concentrations were compared to hydrological data to assess the processes that influence the nutrient concentrations within the Fjord. This research highlights the potential use of the adaptive sensing platform in remote locations as a stand-alone platform and/or for the validation of deployable environmental sensor networks.
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