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Ideas and perspectives: Tracing terrestrial ecosystem water fluxes using hydrogen and oxygen stable isotopes – challenges and opportunities from an interdisciplinary perspective

机译:想法和观点:利用氢和氧稳定同位素追踪陆地生态系统的水通量–从跨学科的角度看挑战和机遇

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In this commentary, we summarize and build upon discussions that emerged during the workshop “Isotope-based studies of water partitioning and plant–soil interactions in forested and agricultural environments” held in San Casciano in Val di Pesa, Italy, in September?2017. Quantifying and understanding how water cycles through the Earth's critical zone is important to provide society and policymakers with the scientific background to manage water resources sustainably, especially considering the ever-increasing worldwide concern about water scarcity. Stable isotopes of hydrogen and oxygen in water have proven to be a powerful tool for tracking water fluxes in the critical zone. However, both mechanistic complexities (e.g. mixing and fractionation processes, heterogeneity of natural systems) and methodological issues (e.g. lack of standard protocols to sample specific compartments, such as soil water and xylem water) limit the application of stable water isotopes in critical-zone science. In this commentary, we examine some of the opportunities and critical challenges of isotope-based ecohydrological applications and outline new perspectives focused on interdisciplinary research opportunities for this important tool in water and environmental science.
机译:在本评论中,我们总结并借鉴了2017年9月在意大利瓦尔迪佩萨的圣卡夏诺举行的“基于同位素的森林和农业环境中水分配和植物-土壤相互作用的同位素研究”研讨会上的讨论。量化和了解水如何通过地球的关键区域循环,对于为社会和决策者提供科学背景来可持续地管理水资源至关重要,尤其是考虑到全球对水资源短缺的日益关注。水中的氢和氧的稳定同位素已被证明是跟踪关键区域水通量的有力工具。但是,机制复杂性(例如混合和分馏过程,自然系统的异质性)和方法论问题(例如缺乏对特定隔室进行采样的标准协议,例如土壤水和木质部水)都限制了稳定水同位素在关键区域的应用科学。在这篇评论中,我们研究了基于同位素的生态水文学应用的一些机遇和严峻挑战,并概述了针对这一水和环境科学重要工具的跨学科研究机遇的新观点。

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