2021
DOI: 10.5194/hess-25-3053-2021
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Groundwater fauna in an urban area – natural or affected?

Abstract: Abstract. In Germany, 70 % of the drinking water demand is met by groundwater, for which the quality is the product of multiple physical–chemical and biological processes. As healthy groundwater ecosystems help to provide clean drinking water, it is necessary to assess their ecological conditions. This is particularly true for densely populated urban areas, where faunistic groundwater investigations are still scarce. The aim of this study is, therefore, to provide a first assessment of the groundwater fauna in… Show more

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Cited by 16 publications
(11 citation statements)
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“…The development of this ‘Groundwater Health Index’ (GHI) framework was triggered by Australian water management policies and the heavy reliance on groundwater from irrigation‐based industries. Methods to measure groundwater health and monitor groundwater ecosystems continue to be refined and developed (di Lorenzo, Fiasca, di Camillo, et al, 2020; Fillinger et al, 2019; Griebler, Stein, et al, 2014; Koch et al, 2021; Korbel & Hose, 2017), with these management tools being used by governments to monitor groundwater health (e.g. report Korbel, Greenfield, & Hose, 2022).…”
Section: Historical Evolution Of Groundwater Fauna Researchmentioning
confidence: 99%
“…The development of this ‘Groundwater Health Index’ (GHI) framework was triggered by Australian water management policies and the heavy reliance on groundwater from irrigation‐based industries. Methods to measure groundwater health and monitor groundwater ecosystems continue to be refined and developed (di Lorenzo, Fiasca, di Camillo, et al, 2020; Fillinger et al, 2019; Griebler, Stein, et al, 2014; Koch et al, 2021; Korbel & Hose, 2017), with these management tools being used by governments to monitor groundwater health (e.g. report Korbel, Greenfield, & Hose, 2022).…”
Section: Historical Evolution Of Groundwater Fauna Researchmentioning
confidence: 99%
“…Lower system efficiencies are associated with higher operating costs and possibly the need for fossil auxiliary technologies such as gas boilers or compression chillers (Miglani, Orehounig, and Carmeliet 2018;Tissen et al 2019). Besides technical drawbacks, shallow geothermal utilisation may entail other trade-offs, including environmental aspects such as detrimental changes to the groundwater ecosystem and loss of the respective ecosystem services (Blum et al 2021;Griebler and Avramov 2015;Koch et al 2021). Conflicts of use of shallow groundwater and decreasing profitability of regional supply companies, which often base their business model on the profitable gas supply, might also arise from an increasing spread of this technology.…”
Section: Causal Websmentioning
confidence: 99%
“…This information deficit is also reflected in legislation. While there is a variety of individual laws and regulations in Germany regarding the protection of groundwater as a resource, the legislation (including the Federal Water Act and Federal groundwater regulation as well as the Federal Nature Conservation Act,) does not consider groundwater protection at an ecosystem-level perspective (Hahn, Schweer, and Griebler 2018;Koch et al 2021).…”
Section: Property 4: No Ultimate Test For Solutionsmentioning
confidence: 99%
“…The latter (and particularly amphipods) are commonly used as bioindicators in monitoring surface or groundwater ecosystems (e.g. Koch et al, 2021). Studying these organisms, however, is a major challenge, because most subterranean voids are not or very poorly accessible to humans, and much of the groundwater fauna is insufficiently known from a taxonomic perspective.…”
Section: Introductionmentioning
confidence: 99%