ferrinetal_c&nmediatewarmingimpactonsoilhexapods

This study was conducted at the ForHot research site in Iceland (Sigurdsson et al., 2016) between August 2017 and June 2018 (64°0′N, 21°11′W). Soil type was a Brown Andosol (Arnalds, 2015). Mean annual temperature at the site was 5.1 °C. The coldest and warmest temperatures in the neighboring villag...

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Bibliographic Details
Main Authors: Ferrín Guardiola, Miquel, Peñuelas, Josep, Gargallo-Garriga, Albert, Iribar, Amaia, Janssens, Ivan, Marañón-Jiménez, Sara, Murienne, Jérôme, Richter, Andreas, Sigurdsson, Bjarni D., Peguero, Guille
Format: Dataset
Language:English
Published: Figshare 2023
Subjects:
Online Access:http://hdl.handle.net/10261/309577
https://doi.org/10.6084/M9.FIGSHARE.21487611
https://figshare.com/articles/dataset/ferrinetal_c_nmediatewarmingimpactonsoilinsects/21487611
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Summary:This study was conducted at the ForHot research site in Iceland (Sigurdsson et al., 2016) between August 2017 and June 2018 (64°0′N, 21°11′W). Soil type was a Brown Andosol (Arnalds, 2015). Mean annual temperature at the site was 5.1 °C. The coldest and warmest temperatures in the neighboring village of Eyrarbakki in 2016 were -12.3 °C and 21.6 °C, respectively. Average annual precipitation for the same year was 1153 mm (Icelandic Meteorological Office, 2016). The vegetation was an unmanaged grassland dominated by Agrostis capillaris L., Galium boreale L. and Anthoxantum odoratum L. Vascular plants cover 46% of the area over a moss mat which covers up to 88% of the ground. This grassland has been geothermally warmed since 29 May 2008, when an earthquake transferred geothermal energy from hot groundwater to previously unheated soils (Sigurdsson et al., 2016). Belowground temperatures at 10 cm depth now display a permanent warming gradient reaching +10 °C, with a discreet increase in aboveground temperature of +0.2 °C. The warming has only been mildly disruptive, with seasonality remaining unchanged. Soil humidity was only marginally affected, with volumetric water content changing from 40% to 38%, and water pH increased from 5.6 in unheated soil to up to 6.3 after warming. Geothermal groundwater has remained in the bedrock and has not reached the root zone, thus avoiding direct eco-toxicological effects (Sigurdsson et al., 2016). The resulting stable conditions and lack of artifacts provide a realistic natural belowground experiment on soil warming under climate change. Natural N deposition in the area is 1.3 ± 0.1kg N ha-1 y-1 (Leblans et al., 2014). Five transects were established, each one consisting of three 2 x 2 m plots, and each plot at different temperature: an unheated control, a low warming level of ca. +3 °C and a higher warming level of ca. +6 °C above the ambient reference in the control (henceforth referred as “+3 °C” and “+6 °C”). Soil cores were collected using an auger to a depth of ~10 cm, ...