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首页> 外文期刊>Ecological indicators >Ecohydrogeology: The interdisciplinary convergence needed to improve the study and stewardship of springs and other groundwater-dependent habitats, biota, and ecosystems
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Ecohydrogeology: The interdisciplinary convergence needed to improve the study and stewardship of springs and other groundwater-dependent habitats, biota, and ecosystems

机译:Ecoydrogeology:改善泉水和其他地下水依赖栖息地,生物群和生态系统的研究和管理所需的跨学科融合

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摘要

This essay discusses the need for, advantages and challenges of integrating the scientific disciplines of ecology and hydrogeology in the study of groundwater-dependent ecosystems (GDEs). We provide a definition for ecohydrogeology as "a unifying, synthetic field of study integrating the approaches from the ecological and hydrogeological sciences in the study of groundwater (GW)-related ecosystems, habitats, and organisms to advance science, stewardship, and policy". We selected specific case studies to illustrate first how hydrogeological approaches can favour in-depth understanding and modelling of springs and crenobiontic (spring-dependent) species distribution, assemblage composition and organization. Second, this essay also examines how taxa and assemblages serve as bioassays and ecosystem indicators to infer hydrogeological aspects of GW flow and discharge, as well as quantitative and qualitative human impacts. We consider both types of features and parameters as ecohydrogeological indicators. The examples presented include topics related to springs and other GDE geomorphological types and classification, GW quality influences on crenobiont distribution, phreatophyte (= plant species the roots of which reach to and into the water table) ecophysiology in relation to water table depth, and flow variability in karstic systems, to nutrient dynamics in relation to dinoflagellate blooms in GDE montane lakes. Conceptual approaches that integrate ecology with hydrogeology include the investigation of GDE distribution and ecology, groundwater-surface water (GW-SW) interactions, and the development of the discipline of ecohydrology. Despite widespread applications, the scientific community still lacks a complete or effective integration of the principles described in the fields of groundwater hydrogeology with ecology, ecophysiology, and environmental biology. Springs are aquatic-wetland-riparian habitats that link shallow subsurface-surface processes and assemblages, often functioning as biodiversity hotspots, ecotones, keystone, and refugial ecosystems, for which coordination between studies of hydrogeology and ecology are both obvious and essential. Over the past century, springs ecosystem ecology has been largely ignored by hydrologists, and, conversely, hydrogeology has been under-emphasized by ecologists. Recent global recognition of the extraordinary biodiversity and socio-cultural significance of springs, coupled with their globally highly threatened conservation status, stimulated this inquiry into how to better integrate hydrogeology with springs ecosystem ecology. Acknowledging the highly threatened status of springs ecosystems around the world, there is an urgent need to integrate and invigorate the union of these disciplines into ecohydrogeology, the study of groundwater-dependent organisms, habitats, ecosystems, and management policy.
机译:本文讨论了在地下水依赖生态系统(GDES)研究中整合生态学和水文地质学科学学科的需求,优势和挑战。我们为生态氢地理学提供了一个定义,作为“统一的,综合研究,将生态和水文地质科学方法集成在地下水(GW)的生态系统,栖息地和生物研究中推进科学,管理和政策”。我们选择了特定的案例研究以首先说明水文地质方法如何有利于深入了解春季和颅骨(弹簧依赖性)物种分布,组合组成和组织的造型。其次,本文还研究了纳税卡和组合如何作为生物测定和生态系统指标推断GW流量和放电的水文地质方面,以及定量和定性人的影响。我们认为两种类型的特征和参数作为生态氢地理学指标。提出的实施例包括与Springs和其他GDE地貌类型和分类有关的主题,GW质量对Crenobiont分布的影响,Phreatophyte(=植物物种的根源,其根部到达水表)与水台深度相关的生态学和流动岩溶系统的可变性,在GDE Montane Lakes中的培养动力学与Dinoflagellate绽放。与水文地质集成生态学的概念方法包括对GDE分布和生态,地下水地水(GW-SW)相互作用的调查以及生态学学学科的发展。尽管存在广泛的应用,科学界仍然缺乏与生态学,生态学和环境生物学领域中描述的地下水水文地质领域所描述的原则的完全或有效整合。 Springs是水生湿地 - 河岸栖息地,将浅层地下表面流程和组装联系起来,通常用作生物多样性热点,ecotones,梯形和难民生态系统,对水文地质和生态学研究之间的协调是显而易见的。在过去的世纪中,泉水生态系统生态学已被水文学家忽视,而且,相反,生态学家已经强调了水文地理。全球对斯普林斯的非凡生物多样性和社会文化意义的全球认可,再加上其全球高度威胁的保护地位,刺激了如何更好地与泉水生态系统生态学整合水文地质的询问。承认世界各地的泉水生态系统的高度威胁状态,迫切需要将这些学科的联盟纳入生态羟中,研究地下水依赖性生物,栖息地,生态系统和管理政策。

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