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High K/Rb ratios in stream waters - Exploring plant litter decay, ground water and lithology as potential controlling mechanisms

机译:溪流水中的高K / Rb比-探索植物凋落物腐烂,地下水和岩性作为潜在的控制机制

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摘要

The mechanisms causing the K/Rb ratio in stream waters to attain considerably higher ratios (c. 1000) than in the major source rocks such as granites and basalts (c. 275 and 250) and in the upper continental crust (c. 260) are explored. Because K is a nutrient and Rb is not, the K/Rb ratio in biological materials is typically higher than in soils and rocks. It is therefore possible, as recently suggested in the scientific literature, that a considerable portion of the K carried by rivers has Circulated via biota, and been leached into water bodies during litter decay. In this study we can provide detailed information on the development of the K/Rb ratio during long-term decay of litter from typical plants in the boreal zone. This data show that it is indeed possible for decaying litter to deliver degradation products strongly enriched in K over Rb. However, after revisiting data collected in regional hydrogeochemical studies over Europe and ground-water data collected at two contrasting sites in the boreal region, we suggest that lithology could also be an important controlling factor. Over Phanerozoic sedimentary (and/or limestone-rich) rocks, in particular, the K/Rb ratio is generally high, perhaps mostly due to extensive retention of Rb released by the weathering of source minerals. We thus argue, that geochemistry, together with biological and climatological factors. is responsible for the high K/Rb ratios in streams and rivers worldwide.
机译:导致溪流中K / Rb比达到比(c。1000)的机理要比花岗岩,玄武岩等主要烃源岩(c。275和250)和大陆上地壳(c。260)高得多。被探索。由于钾是一种营养素,而不是Rb,因此生物材料中的K / Rb比值通常高于土壤和岩石。因此,正如最近在科学文献中所建议的那样,河流携带的钾的相当一部分已经通过生物区系循环了,并在凋落物腐烂过程中被浸入了水体中。在这项研究中,我们可以提供有关北方地区典型植物凋落物长期腐烂过程中K / Rb比率发展的详细信息。该数据表明,腐烂的枯枝落叶确实有可能递送在Rb上富含K的降解产物。然而,在回顾了欧洲在区域性水文地球化学研究中收集的数据以及在北方地区两个不同地点收集的地下水数据之后,我们认为岩性也可能是一个重要的控制因素。特别是在生代沉积(和/或富含石灰石)的岩石上,K / Rb比例通常很高,这可能主要是由于源矿物风化释放的Rb广泛保留。因此,我们认为,地球化学以及生物学和气候因素。是造成全球溪流和河流中高K / Rb比的原因。

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