首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Quantification of metabolically active transient storage (MATS) in two reaches with contrasting transient storage and ecosystem respiration
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Quantification of metabolically active transient storage (MATS) in two reaches with contrasting transient storage and ecosystem respiration

机译:定量分析两个区域中的代谢活性瞬态存储(MATS),对比瞬态存储和生态系统呼吸

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Water transient storage zones are hotspots for metabolic activity in streams although the contribution of different types of transient storage zones to the whole-reach metabolic activity is difficult to quantify. In this study we present a method to measure the fraction of the transient storage that is metabolically active (MATS) in two consecutive reaches with contrasting hydrological and biological characteristics. We used combined additions of resazurin (Raz) and Cl in a reach scoured to bedrock and in a reach containing a deep alluvial deposit. The MATS zones measured 0.002 m~2 in the bedrock reach (37% of transient storage) and 0.291 m~2 in the alluvial reach (100% of transient storage). The effective rate coefficient of Raz transformation in the MATS of the bedrock reach was approximately 16 times that of the alluvial reach. However, when we take into account the contribution of the MATS zone to overall metabolic activity, Raz transformation in the MATS zone was 2.2 times slower in the bedrock reach than in the alluvial reach. The difference was similar to the difference in ecosystem respiration, which was 1.8 times lower in the bedrock reach than in the alluvial reach, suggesting that the MATS zones were important contributors to ecosystem respiration. Results indicate that the quantification of MATS can improve our understanding of the role that transient storage zones play on stream metabolic processes and demonstrate the utility of Raz as a "smart" tracer that provides new information on metabolic activity at a whole-reach and at smaller scale.
机译:水瞬态存储区是河流中新陈代谢活动的热点,尽管不同类型的瞬态存储区对全范围代谢活动的贡献很难量化。在这项研究中,我们提出了一种方法来测量具有连续的两个具有连续水文和生物特征的连续代谢活动(MATS)的瞬时存储的比例。我们在发现岩层和含有深冲积物的河段中使用了刃天青(Raz)和Cl的组合添加物。 MATS区在基岩段测得为0.002 m〜2(占瞬时存储的37%),在冲积段测得为0.291 m〜2(占瞬时存储的100%)。基岩河段MATS中Raz变换的有效速率系数约为冲积河段的有效速率系数的16倍。但是,考虑到MATS区对整体代谢活动的贡献,MATS区中的Raz转化在基岩段的速度比冲积段的速度慢2.2倍。这种差异与生态系统呼吸的差异相似,基岩河段比冲积河段低1.8倍,这表明MATS区是生态系统呼吸的重要贡献者。结果表明,MATS的定量可以提高我们对瞬时存储区在河流代谢过程中所起的作用的了解,并证明Raz作为“智能”示踪剂的效用,可在全范围和较小范围内提供有关代谢活性的新信息。规模。

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