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A European map of groundwater pH and calcium

机译:地下水pH和钙的欧洲地图

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Water resources and associated ecosystems are becoming highly endangered due to ongoing global environmental changes. Spatial ecological modelling is a promising toolbox for understanding the past, present and future distribution and diversity patterns in groundwater-dependent ecosystems, such as fens, springs, streams, reed beds or wet grasslands. Still, the lack of detailed water chemistry maps prevents the use of reasonable models to be applied on continental and global scales. Being major determinants of biological composition and diversity of groundwater-dependent ecosystems, groundwater pH and calcium are of utmost importance. Here we developed an up-to-date European map of groundwater pH and Ca, based on 7577 measurements of near-surface groundwater pH and calcium distributed across Europe. In comparison to the existing European groundwater maps, we included several times more sites, especially in the regions rich in spring and fen habitats, and filled the apparent gaps in eastern and southeastern Europe. We used random forest models and regression kriging to create continuous maps of water pH and calcium at the continental scale, which is freely available also as a raster map (Hájek et al., 2020b; https://doi.org/10.5281/zenodo.4139912). Lithology had a higher importance than climate for both pH and calcium. The previously recognised latitudinal and altitudinal gradients were rediscovered with much refined regional patterns, as associated with bedrock variation. For ecological models of distribution and diversity of many terrestrial ecosystems, our new map based on field groundwater measurements is more suitable than maps of soil pH, which mirror not only bedrock chemistry but also vegetation-dependent soil processes.
机译:由于持续的全球环境变化,水资源和相关生态系统正在受到高度危险的。空间生态建模是一个有前途的工具箱,用于了解地下水依赖生态系统中的过去,现状和未来的分布和多样性模式,例如福思,弹簧,溪流,芦苇床或湿草地。尽管如此,缺乏详细的水化学地图可以防止使用合理的模型来应用于大陆和全球范围。作为地下水依赖性生态系统,地下水pH和钙的主要决定因素,是至关重要的。在这里,我们基于7577次近地下水pH和分布在欧洲的钙的测量,我们开发了对地下水pH和CA的最新欧洲地图。与现有的欧洲地图地图相比,我们包括多次网站,特别是在富春和芬养殖者的地区,并填补了东欧和东南部的明显差距。我们使用随机森林模型和回归克里格,在大陆尺度上创造了持续的水pH和钙的映射,这也是光栅地图(Hájek等,2020b; https://doi.org/10.5281/zenodo .4139912)。岩性的重要性高于气候对于pH和钙。与基岩变异有关的情况下,先前识别的纬度和高度梯度被重新发现了多样化的区域模式。对于许多地面生态系统的分配和多样性的生态模型,我们的新地图基于现场地下水测量比土壤pH的映射更适合,镜像不仅覆盖基岩化学,而且依赖于植被依赖性土壤过程。
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