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Biogeochemical controls on diel cycling of stable isotopes of dissolved O-2 and dissolved inorganic carbon in the Big Hole River, Montana

机译:蒙大拿州大孔河中溶解态O-2和溶解性无机碳的稳定同位素diel循环的生物地球化学控制

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摘要

Rivers with high biological productivity typically show substantial increases in pH and dissolved oxygen (DO) concentration during the day and decreases at night, in response to changes in the relative rates of aquatic photosynthesis and respiration. These changes, coupled with temperature variations, may impart diel (24-h) fluctuations in the concentration of trace metals, nutrients, and other chemical species. A better understanding of diel processes in rivers is needed and will lead to improved methods of data collection for both monitoring and research purposes. Previous studies have used stable isotopes of dissolved oxygen (DO) and dissolved inorganic carbon (DIC) as tracers of geochemical and biological processes in streams, lakes, and marine systems. Although seasonal variation in 6180 of DO in rivers and lakes has been documented, no study has investigated diel changes in this parameter. Here, we demonstrate large (up to 13 parts per thousand) cycles in delta(18)O-DO for two late summer sampling periods in the Big Hole River of southwest Montana and illustrate that these changes are correlated to variations in the DO concentration, the C-isotopic composition of DIC, and the primary productivity of the system. The magnitude of the diel cycle in delta(18)O-DO was greater in August versus September because of the longer photoperiod and warmer water temperatures. This study provides another biogeochemical tool for investigating the O-2 and C budgets in rivers and may also be applicable to lake and groundwater systems.
机译:具有高生物生产力的河流通常会在白天响应水生光合作用和呼吸作用相对速率的变化而显示出pH值和溶解氧(DO)浓度的大幅增加,而在夜间则有所降低。这些变化以及温度变化可能会使痕量金属,营养物和其他化学物质的浓度发生diel(24-h)波动。需要更好地了解河流中的迪尔过程,并将导致改进的监测和研究目的数据收集方法。以前的研究已经使用了溶解氧(DO)和溶解无机碳(DIC)的稳定同位素作为河流,湖泊和海洋系统中地球化学和生物过程的示踪剂。尽管已记录了河流和湖泊中DO含量6180的季节性变化,但尚无研究调查此参数的diel变化。在这里,我们演示了在西南蒙大拿州的大孔河在两个夏末采样期中,delta(18)O-DO的周期大(高达千分之十三),并说明这些变化与DO浓度的变化有关, DIC的C同位素组成以及系统的主要生产率。由于光周期更长和水温升高,delta(18)O-DO中diel循环的强度在8月比9月更大。这项研究提供了另一种生物地球化学工具,用于研究河流中的O-2和C预算,也可能适用于湖泊和地下水系统。

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