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The potamochemical symphony: new progress in the high-frequency acquisition of stream chemical data

机译:Potamochemical Symphony:流化学数据的高频采集中的新进展

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Our understanding of hydrological and chemical processes at the catchment scale is limited by our capacity to record the full breadth of the information carried by river chemistry, both in terms of sampling frequency and precision. Here, we present a proof-of-concept study of a "lab in the field" called the "River Lab" (RL), based on the idea of permanently installing a suite of laboratory instruments in the field next to a river. Housed in a small shed, this set of instruments performs analyses at a frequency of one every 40 min for major dissolved species (Na+, K+, Mg2+, Ca2+, Cl-, SO42-, NO3- )through continuous sampling and filtration of the river water using automated ion chromatographs. The RL was deployed in the Orgeval Critical Zone Observatory, France for over a year of continuous analyses. Results show that the RL is able to capture long-term fine chemical variations with no drift and a precision significantly better than conventionally achieved in the laboratory (up to +/- 0.5% for all major species for over a day and up to 1.7% over 2 months). The RL is able to capture the abrupt changes in dissolved species concentrations during a typical 6-day rain event, as well as daily oscillations during a hydrological low-flow period of summer drought. Using the measured signals as a benchmark, we numerically assess the effects of a lower sampling frequency (typical of conventional field sampling campaigns) and of a lower precision (typically reached in the laboratory) on the hydrochemical signal. The highresolution, high-precision measurements made possible by the RL open new perspectives for understanding critical zone hydro-bio-geochemical cycles. Finally, the RL also offers a solution for management agencies to monitor water quality in quasi-real time.
机译:我们对集水区规模的水文和化学过程的理解受到我们在采样频率和精度方面记录河流化学携带的完整广度的能力的限制。在这里,我们提出了一个概念验证研究,该研究称为“河实验室”(RL),基于永久安装在河流旁边的领域的实验室仪器套件的想法。在一个小的棚子里,这组仪器通过连续取样和过滤,每40分钟每40分钟进行一次每40分钟的频率分析。通过连续取样和过滤河流使用自动离子色谱仪的水。 RL部署在法国Orgeval临界区观测所在的持续分析一年中。结果表明,RL能够捕获长期精细化学品变化,没有漂移,精度明显好于实验室中的常规实现(所有主要物种每天达到+/- 0.5%,高达1.7%超过2个月)。 RL能够在典型的6天雨季事件期间捕获溶解物种浓度的突然变化,以及在夏季干旱的水文低流量期间的日常振荡。使用测量的信号作为基准,我们在数值上评估了较低的采样频率(典型的常规场采样运动)的效果和在水化学信号上的较低精度(通常在实验室中达到)。通过RL开辟了了解临界区水电生物地球化学循环的新观点,实现了高精度,高精度测量。最后,RL还提供了管理机构解决方案,以监测准实时水质。

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