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基于嵌入式微流控技术的海洋环境用潜水磷酸盐分析仪。

A submersible phosphate analyzer for marine environments based on inlaid microfluidics.

机构信息

Department of Electrical and Computer Engineering, Dalhousie University, 1360 Barrington Street, Halifax, Nova Scotia, B3H 4R2, Canada.

Dartmouth Ocean Technologies Inc., 25 Parker Street, Suite 21401, Dartmouth, Nova Scotia, B2Y 4TS, Canada.

出版信息

Anal Methods. 2021 Dec 24;14(1):22-33. doi: 10.1039/d1ay01876k.

Abstract

sensors are needed to further our understanding of phosphate flux dynamics in marine environments during short term events such as tidal cycles, algae blooms and runoff periods. Here, we present a fully automated phosphate analyzer based on an inlaid microfluidic absorbance cell technology. The microfluidic device employs colorimetric absorbance spectrophotometry, using the phosphomolybdenum blue (PMB) assay modified by the addition of polyvinylpyrrolidone (PVP), to measure phosphate concentrations in seawater. Bench top calibrations were performed with both copper(II) sulfate dye and the PMB assay, as well as temperature sensitivity studies to characterize the sensor's performance in a range of conditions. It achieves a limit of detection of 15.2 nM, a limit of quantification of 50.8 nM, and a high precision with a relative standard deviation of less than 1.5% across three consecutive measurements. Two consecutive field deployments are conducted as assessments for its intended applications. The sensor is first deployed from a pier at a depth of 6 m, with simultaneous bottle samples taken to perform cross-validation. It is next deployed on the Stella Maris testbed, a multi-sensor seabed platform (MSSP), 100 m offshore and 9 m deep in the inlet to the Bedford Basin in Nova Scotia, Canada. Over 300 successful phosphate measurements were acquired, showing the influence of the tidal cycle, and confirming the sensor's viability in observing nutrient flux dynamics with nanomolar variations.

摘要

需要传感器来进一步了解海洋环境中磷酸盐通量动态,这些动态发生在短期事件中,如潮汐周期、藻类大量繁殖和径流期。在这里,我们提出了一种基于嵌入式微流控吸收池技术的全自动磷酸盐分析仪。微流控装置采用比色吸收分光光度法,使用添加了聚乙烯吡咯烷酮 (PVP) 的磷钼蓝 (PMB) 测定法,测量海水中的磷酸盐浓度。在台式机上进行了硫酸铜染料和 PMB 测定法的校准,以及温度敏感性研究,以表征传感器在一系列条件下的性能。它的检测限为 15.2 nM,定量限为 50.8 nM,精度高,在三个连续测量中相对标准偏差小于 1.5%。进行了两次连续的现场部署,以评估其预期应用。传感器首先从一个 6 米深的码头部署,同时采集瓶样进行交叉验证。然后在 Stella Maris 试验台(一个多传感器海底平台 (MSSP))上部署,该试验台位于加拿大新斯科舍省贝德福德湾入口处离岸 100 米,水深 9 米处。成功采集了超过 300 个磷酸盐测量值,显示了潮汐周期的影响,并证实了传感器在观察营养盐通量动态方面具有纳米级变化的可行性。

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