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Measurements of hydrogen, oxygen and carbon isotope variability in Sphagnum moss along a micro-topographical gradient in a southern Patagonian peatland

机译:沿巴塔哥尼亚南部泥炭地的微地形梯度测量泥炭藓的氢,氧和碳同位素变化

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摘要

Peat archives offer a diverse range of physical and chemical proxies from which it is possible to study past environmental and ecological changes. Direct numerical calibration and verification is difficult so process-based and mechanistic studies are therefore required to establish and quantify links between environmental changes and their associated proxy-responses. Traditional ‘space-for-time’ calibrations provide a solution to this calibration problem, but are often unable to isolate a single environmental variable from other potentially confounding variables. In this study, we explored the potential of a site-specific ‘space-for-time’ approach applied to a hummock-hollow transect on an ombrotrophic raised bog in Patagonia, southern Chile. Coupled stable carbon, oxygen and hydrogen isotopic measurements were made on individual samples of Sphagnum moss cellulose and compared with plant-associated waters, local hydrology, temperature and relative humidity, sampled at the same points along the study transect. Results reveal a range of environmental responses, which were supported by plant-physiological models in the case of carbon and oxygen isotopes. For hydrogen isotopes, the results obtained from cellulose indicated a need for further research into hydrogen isotope fractionation in Sphagnum. We recommend conducting site-specific characterization of plant response to support the development of peat-based isotope records for palaeoenvironmental research, and where logistically possible, that monitoring is conducted over timescales appropriate to the time-integrative nature of the Sphagnum record.
机译:泥炭档案馆提供了多种物理和化学代理,从中可以研究过去的环境和生态变化。直接的数字校准和验证是困难的,因此需要基于过程和机理的研究来建立和量化环境变化及其相关的代理响应之间的联系。传统的“时空”校准解决了该校准问题,但通常无法将单个环境变量与其他可能引起混淆的变量区分开。在这项研究中,我们探索了在智利南部巴塔哥尼亚的一个营养缺陷性凸起的沼泽上的山岗空心样地上采用特定地点“时空”方法的潜力。在水生苔藓纤维素的单个样品上进行了稳定的碳,氧和氢同位素测量,并与植物相关水,局部水文学,温度和相对湿度进行了比较,并在研究样带的相同位置进行了采样。结果表明,在碳和氧同位素的情况下,一系列环境响应得到了植物生理模型的支持。对于氢同位素,从纤维素获得的结果表明需要进一步研究泥炭藓中氢同位素的分馏。我们建议对植物响应进行特定位置的表征,以支持用于古环境研究的基于泥炭的同位素记录的开发,并且在逻辑上可能的情况下,应在适合于泥炭纪记录时间整合性质的时间范围内进行监测。

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