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A small-volume multiplexed pumping system for automated, high-frequency water chemistry measurements in volume-limited applications

机译:用于自动化,高频水化学测量的小体积多路复用泵送系统

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摘要

An automated multiplexed pumping system (MPS) for high-frequency water chemistry measurements at multiple locations previously showed the ability to increase spatial and temporal data resolution and improve understanding of biogeochemical processes in aquatic environments and at the land-water interface. The design of the previous system precludes its use in volume-limited applications in which highly frequent measurements requiring a large sample volume would significantly affect observed processes. A small-volume MPS was designed to minimize the sample volume while still providing high-frequency data. The system was tested for cross-contamination between multiple sources, and two applications of the technology are reported. Cross-contamination from multiple sources was shown to be negligible when using recommended procedures. Short-circuiting of flow in a bioreactor was directly observed using high-frequency porewater sampling in a well network, and the small-volume MPS showed high seasonal and spatial variability of nitrate removal in stream sediments, enhancing data collected from in situ mesocosms. The results show it is possible to obtain high-frequency data in volume-limited applications. The technology is most promising at the reach or transect scale for observing porewater solute dynamics over daily timescales, with data intervals 1 h for up to 12 locations.
机译:在多个位置的高频水化学测量的自动化多路复用泵送系统(MPS)先前表明了增加空间和时间数据分辨率的能力,并改善了水生环境中的生物地球化学过程以及土地水界面的理解。先前系统的设计排除了其在体积限制的应用中,其中频繁测量需要大的样品体积会显着影响观察到的过程。小型MPS旨在最小化样本量,同时仍提供高频数据。该系统在多种来源之间进行交叉污染,并报告了两种技术的应用。使用推荐的程序时,来自多种来源的交叉污染可忽略不计。使用井网络中的高频孔径采样直接观察到生物反应器中流动的短路,小体积MPS在流沉积物中显示出硝酸盐去除的高季节性和空间可变性,增强了原位Mesocosms收集的数据。结果表明,可以获得体积限制应用中的高频数据。该技术在达到或横断量表上最有希望,用于观察每日时间尺度的凹陷溶质动力学,数据间隔& 1小时最多12个地点。

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