Publications
266 found
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Dicen, G., Guillevic, F., Gupta, S., Chaboche, P.-A., Meusburger, K., Sabatier, P., Evrard, O., & Alewell, C. (2024). Distribution and sources of fallout 137 Cs and 239+240 Pu in Equatorial and Southern Hemisphere reference soils [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/essd-2024-509
Cox, Terry, Wieland, Anna, Greule, Markus, Keppler, Frank, Einbock, Annika, & Science of The Total Environment, 949, 175025. https://doi.org/10.1016/j.scitotenv.2024.175025
. (2024). Isotopic analysis (δ13C and δ2H) of lignin methoxy groups in forest soils to identify and quantify lignin sources [Journal-article]. Scheper, S., Liu, C., Xin, Z., Ran, L., & Alewell, C. (2024). Soil loss and sedimentation rates in a subcatchment of the Yellow river Basin in China. International Soil and Water Conservation Research, 12(3), 534–547. https://doi.org/10.1016/j.iswcr.2023.11.008
Khodadadi, M., Meusburger, K., Mirzaei, M., Strauss, P., Black, W. H., Moghaseh, E., & Alewell, C. (2024). Spatial cross-correlation of surface soil physicochemical properties with soil erosion estimated by fallout radionuclides in croplands in a semi-humid region of Iran. Catena, 237. https://doi.org/10.1016/j.catena.2024.107836
Moreno Romero, G., Alewell, C., & Borrelli, P. (2024, March 9). Land degradation due to soil erosion in the Mediterranean olive groves: A comparison of 137Cs, 239+240Pu radionuclides and 3D reconstruction of surface levels [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/egusphere-egu24-16310
Birkholz, A., & Alewell, C. (2024). Aquatic microorganisms are a (potential) provider of long-chain fatty acids to lake sediments in the temperate climate zone [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/egusphere-egu24-1960
Borrelli, P., Panagos, P., & Alewell, C. (2024). Modeling multiple concurrent soil erosion processes [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/egusphere-egu24-9365
Cox, T., Laceby, P., Greule, M., Keppler, F., & Alewell, C. (2024). Using stable carbon isotopes of lignin derived methoxy groups to investigate the impact of historical land use change on sediment/particulate matter dynamics [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/egusphere-egu24-10471
Dicen, G., Guillevic, F., Chaboche, P.-A., Meusburger, K., Sabatier, P., Evrard, O., & Alewell, C. (2024). Spatial distribution of fallout 137Cs and 239+240Pu in Equatorial and Southern Hemisphere soils [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/egusphere-egu24-3077
Guillevic, F., Evrard, O., Sabatier, P., Foucher, A., Dicen, G., & Alewell, C. (2024). Environmental and physical factors controlling the distribution of 137Cs in lake sediments in the Southern Hemisphere: a meta-analysis [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/egusphere-egu24-6366
Gupta, S., & Alewell, C. (2024). The importance of soil structure data for soil erosion modelling and mapping [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/egusphere-egu24-1561
Paul, S., Ammann, C., Wang, Y., Alewell, C., & Leifeld, J. (2024). Does a mineral soil coverage reduce greenhouse gas emissions from agriculturally managed peatlands? [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/egusphere-egu24-11391
Gupta, Surya, Hasler, Julia Kim, & Geoderma Regional, 36, e00747. https://doi.org/10.1016/j.geodrs.2023.e00747
. (2024). Mining soil data of Switzerland: New maps for soil texture, soil organic carbon, nitrogen, and phosphorus [Journal-article]. Khodadadi, M., Alewell, C., Mirzaei, M., Ehssan-Malahat, E., Asadzadeh, F., Strauss, P., & Meusburger, K. (2024). Corrigendum to “Understanding deforestation impacts in western Iran: Insights from Plutonium atom ratios for quantifying Chernobyl contributions of 137Cs reference inventory” [J. Environ. Radioact. 257 (2023) 107078] (Journal of Environmental Radioactivity (2023) 257, (S0265931X22002697), (10.1016/j.jenvrad.2022.107078)). Journal of Environmental Radioactivity, 272. https://doi.org/10.1016/j.jenvrad.2024.107369
Cox, Terry, Laceby, J. Patrick, Greule, Markus, Keppler, Frank, & Journal of Soils and Sediments, null. https://doi.org/10.1007/s11368-024-03765-2
. (2024). Using stable carbon isotopes of lignin-derived methoxy to improve historical apportionments of particulate organic matter and sediment sources incorporating multiple Suess corrections. Cox, T., Wieland, A., Greule, M., Keppler, F., Einbook, A., & Alewell, C. (2024). Utilising the Dual Isotopic Analysis (Δ13c and Δ2h) of Lignin Methoxy Groups in Forest Soils to Identify Changing Lignin Sources and Quantify Associated Bulk 13c Enrichments [Posted-content]. Elsevier BV. https://doi.org/10.2139/ssrn.4820686
Gupta, Surya, Borrelli, Pasquale, Panagos, Panos, & Science of The Total Environment, 908. https://doi.org/10.1016/j.scitotenv.2023.168249
. (2024). An advanced global soil erodibility (K) assessment including the effects of saturated hydraulic conductivity. Osterwalder, S., Schibler, R., Hüglin, C., Schwarzenbach, B., Stupple, G., MacSween, K., Bishop, K., Alewell, C., & Buchmann, N. (2024). Spatial and seasonal dynamics of gaseous elemental mercury concentrations over Switzerland observed by a passive air sampler network [Journal-article]. Environmental Science: Atmospheres. https://doi.org/10.1039/d4ea00052h
Song, Xiaodong, Global Change Biology, 30(1). https://doi.org/10.1111/gcb.17108
, Borrelli, Pasquale, Panagos, Panos, Huang, Yuanyuan, Wang, Yu, Wu, Huayong, Yang, Fei, Yang, Shunhua, Sui, Yueyu, Wang, Liangjie, Liu, Siyi, & Zhang, Ganlin. (2024). Pervasive soil phosphorus losses in terrestrial ecosystems in China. Meusburger, K., Porto, P., Kobler Waldis, J., & Alewell, C. (2023). Validating plutonium-239+240 as a novel soil redistribution tracer - a comparison to measured sediment yield. Soil, 9(2), 399–409. https://doi.org/10.5194/soil-9-399-2023
Gupta, S., Borrelli, P., Panagos, P., & Alewell, C. (2023, May 15). Modified global soil risk map using soil erosion and saturated hydraulic conductivity maps [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/egusphere-egu23-1892
Wang, Y., Paul, S., Alewell, C., & Leifeld, J. (2023, May 15). Nitrogen losses from drained temperate agricultural peatland after mineral soil coverage [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/egusphere-egu23-13830
Scheper, S., Liu, C., Xin, Z., Ran, L., & Alewell, C. (2023, March 15). Soil Loss and Sedimentation Rates in a Sub-Catchment of the Yellow River Basin in China [Posted-content]. Research Square Platform LLC. https://doi.org/10.21203/rs.3.rs-2510450/v1
Borrelli, P., International Soil and Water Conservation Research, 11(4), 713–725. https://doi.org/10.1016/j.iswcr.2023.07.008
, Yang, J. E., Bezak, N., Chen, Y. X., Fenta, A. A., Fendrich, A. N., Gupta, S., Matthews, F., Modugno, S., Haregeweyn, N., Robinson, D. A., Tan, F. R. C., Vanmaercke, M., Verstraeten, G., Vieira, D. C. S., & Panagos, P. (2023). Towards a better understanding of pathways of multiple co-occurring erosion processes on global cropland. Cox, Terry, Laceby, J. Patrick, Roth, Till, & Journal of Soils and Sediments, 23, 3241–3261. https://doi.org/10.1007/s11368-023-03573-0
. (2023). Less is more? A novel method for identifying and evaluating non-informative tracers in sediment source mixing models. Hirave, Pranav, Nelson, Daniel B., Glendell, Miriam, & Science of the Total Environment, 875, 162638. https://doi.org/10.1016/j.scitotenv.2023.162638
. (2023). Land-use-based freshwater sediment source fingerprinting using hydrogen isotope compositions of long-chain fatty acids. Meusburger, K., Porto, P., Kobler Waldis, J., & Alewell, C. (2022, December 20). Validating Plutonium-239+240 as novel soil redistribution tracer – a comparison to measured sediment yield [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/egusphere-2022-1359
Birkholz, A., Albiez, S., Gilli, A., & Alewell, C. (2022, March 27). Aquatic microorganisms or reed grass as potential disturbing factors in varved sediment records when tracing terrestrial input. An example from a eutrophic Swiss lake. [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/egusphere-egu22-3785
Cox, T., & Alewell, C. (2022, March 27). Defining and evaluating the effect of redundant isotopic tracers in Bayesian unmixing models [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/egusphere-egu22-4050
Meusburger, K., Evrard, O., Ballabio, C., Borrelli, P., Ketterer, M., van Oost, K., Wilken, F., & Alewell, C. (2022, March 27). Fallout radionuclides indicate a 10% loss of European topsoil in 50 years [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/egusphere-egu22-6154
Baccolo, Giovanni, Khair, Davide Abu El, Nastasi, Massimiliano, Sisti, Monica, Ferrè, Chiara, Earth Surface Processes and Landforms, 1–13. https://doi.org/10.1002/esp.5512
, & Comolli, Roberto. (2022). Pb-210(xs.) is a viable alternative to Cs-137 for tracing soil redistribution in mountain pastures affected by heterogeneous Chernobyl fallout. Batista, Pedro V. G., Fiener, Peter, Scheper, Simon, & Hydrology and Earth System Sciences, 26(14), 3753–3770. https://doi.org/10.5194/hess-26-3753-2022
. (2022). A conceptual-model-based sediment connectivity assessment for patchy agricultural catchments. Borrelli, Pasquale, Panagos, Panos, Nature Sustainability, 6, 103–112. https://doi.org/10.1038/s41893-022-00988-4
, Ballabio, Cristiano, Fagundes, Hugo, Haregeweyn, Nigussie, Lugato, Emanuele, Maerker, Michael, Poesen, Jean, Vanmaercke, Matthias, & Robinson, David A. (2022). Policy implications of multiple concurrent soil erosion processes in European farmland. Borrelli, Pasquale, Panagos, Panos, Ballabio, Cristiano, & Probabilistic Land Use Allocation in the Global Soil Erosion Modelling (pp. 3–9). https://doi.org/10.1007/978-981-16-7916-2_1
. (2022). Chen, Chaoyue, Huang, Jen-How, Meusburger, Katrin, Li, Kai, Fu, Xuewu, Rinklebe, Jorg, Environmental Pollution, 307(307), 119483. https://doi.org/10.1016/j.envpol.2022.119483
, & Feng, Xinbin. (2022). The interplay between atmospheric deposition and soil dynamics of mercury in Swiss and Chinese boreal forests: A comparison study. Groß-Schmölders, Miriam, Klein, Jennifer Kristin, Emsens, Willem-Jan, van Diggelen, Rudy, Aggenbach, Camiel J. S., Liczner, Yvonne, Frouz, Jan, Leifeld, Jens, & Science of the Total Environment, 838(Pt 4), 156603. https://doi.org/10.1016/j.scitotenv.2022.156603
. (2022). Stable isotopes (d(13)C, d(15)N) and biomarkers as indicators of the hydrological regime of fens in a European east-west transect. Khodadadi, Maral, Journal of Environmental Radioactivity, 257, 107078. https://doi.org/10.1016/j.jenvrad.2022.107078
, Mirzaei, Mohammad, Ehssan-Malahat, Ehssan, Asadzadeh, Farrokh, Strauss, Peter, & Meusburger, Katrin. (2022). Understanding deforestation impacts on soil erosion rates using Cs-137, Pu239+240, and (210)Pbex and soil physicochemical properties in western Iran. Scheper, Simon, Meusburger, Katrin, Borrelli, Pasquale, Panagos, Panos, & Journal of Plant Nutrition and Soil Science, 185(6), 821–835. https://doi.org/10.1002/jpln.202200024
. (2022). Occurrence and erosion susceptibility of German Pelosols and international equivalents. Serk, Henrik, Nilsson, Mats B., Figueira, Joao, Krüger, Jan Paul, Leifeld, Jens, Environmental Science and Technology, 56(23), 17410–17419. https://doi.org/10.1021/acs.est.2c03513
, & Schleucher, Juergen. (2022). Organochemical Characterization of Peat Reveals Decomposition of Specific Hemicellulose Structures as the Main Cause of Organic Matter Loss in the Acrotelm. Serk, Henrik, Nilsson, Mats B., Figueira, João, Krüger, Jan Paul, Leifeld, Jens, SSRN Electronic Journal. https://doi.org/10.2139/ssrn.4051383
, & Schleucher, Jürgen. (2022). Organo-Chemical Characterisation of Peat Decomposition Reveals Preferential Degradation of Hemicelluloses as Main Cause for Organic Matter Loss in the Acrotelm [Journal-article]. Wang, Yuqiao, Paul, Sonja M., Biology and Fertility of Soils, 1–13. https://doi.org/10.1007/s00374-022-01689-y
, & Leifeld, Jens. (2022). Reduced nitrogen losses from drained temperate agricultural peatland after mineral soil coverage. Wang, Yuqiao, Paul, Sonja M., Jocher, Markus, Frontiers in Environmental Science, 10, 856599. https://doi.org/10.3389/fenvs.2022.856599
, & Leifeld, Jens. (2022). Reduced Nitrous Oxide Emissions From Drained Temperate Agricultural Peatland After Coverage With Mineral Soil. Wohlgemuth, Lena, Rautio, Pasi, Ahrends, Bernd, Russ, Alexander, Vesterdal, Lars, Waldner, Peter, Timmermann, Volkmar, Eickenscheidt, Nadine, Fuerst, Alfred, Greve, Martin, Roskams, Peter, Thimonier, Anne, Nicolas, Manuel, Kowalska, Anna, Ingerslev, Morten, Merila, Paivi, Benham, Sue, Iacoban, Carmen, Hoch, Guenter, et al. (2022). Physiological and climate controls on foliar mercury uptake by European tree species. Biogeosciences, 19(5), 1335–1353. https://doi.org/10.5194/bg-19-1335-2022
Batista, P., Fiener, P., Scheper, S., & Alewell, C. (2021, May 10). A conceptual model-based sediment connectivity assessment for patchy agricultural catchments [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/hess-2021-231
Hydrological Processes, 35(2), e14040. https://doi.org/10.1002/hyp.14040
, Huang, Jen-How, McLaren, Timothy I., Huber, Lea, & Bünemann, Else K. (2021). Phosphorus retention in constructed wetlands enhanced by zeolite- and clinopyroxene-dominated lava sand. Bezak, Nejc, Mikoš, Matjaž, Borrelli, Pasquale, Environmental Research, 197, 111087. https://doi.org/10.1016/j.envres.2021.111087
, Alvarez, Pablo, Anache, Jamil Alexandre Ayach, Baartman, Jantiene, Ballabio, Cristiano, Biddoccu, Marcella, Cerdà, Artemi, Chalise, Devraj, Chen, Songchao, Chen, Walter, De Girolamo, Anna Maria, Gessesse, Gizaw Desta, Deumlich, Detlef, Diodato, Nazzareno, Efthimiou, Nikolaos, Erpul, Gunay, et al. (2021). Soil erosion modelling: A bibliometric analysis. Borrelli, Pasquale, Science of the Total Environment, 780, 146494. https://doi.org/10.1016/j.scitotenv.2021.146494
, Alvarez, Pablo, Anache, Jamil Alexandre Ayach, Baartman, Jantiene, Ballabio, Cristiano, Bezak, Nejc, Biddoccu, Marcella, Cerdà, Artemi, Chalise, Devraj, Chen, Songchao, Chen, Walter, De Girolamo, Anna Maria, Gessesse, Gizaw Desta, Deumlich, Detlef, Diodato, Nazzareno, Efthimiou, Nikolaos, Erpul, Gunay, Fiener, Peter, et al. (2021). Soil erosion modelling: A global review and statistical analysis. Gross-Schmölders, Miriam, Klein, Kristy, Birkholz, Axel, Leifeld, Jens, & Frontiers in Environmental Science, 9(370196), 14. https://doi.org/10.3389/fenvs.2021.730106
. (2021). Rewetting and Drainage of Nutrient-Poor Peatlands Indicated by Specific Bacterial Membrane Fatty Acids and a Repeated Sampling of Stable Isotopes (δ15N, δ13C). Hirave, Pranav, Glendell, Miriam, Birkholz, Axel, & Science of the Total Environment, 755(Pt 1), 142916. https://doi.org/10.1016/j.scitotenv.2020.142916
. (2021). Compound-specific isotope analysis with nested sampling approach detects spatial and temporal variability in the sources of suspended sediments in a Scottish mesoscale catchment. Klein, Kristy, Gross-Schmölders, Miriam, Advances in Agronomy, 165, 115–159. https://doi.org/10.1016/bs.agron.2020.09.002
, & Leifeld, Jens. (2021). Chapter Three - Heating up a cold case: Applications of analytical pyrolysis GC/MS to assess molecular biomarkers in peat. Klein, Kristy, Schellekens, Judith, Gross-Schmölders, Miriam, von Sengbusch, Pascal, Organic Geochemistry, 104351. https://doi.org/10.1016/j.orggeochem.2021.104351
, & Leifeld, Jens. (2021). Characterizing ecosystem-driven chemical composition differences in natural and drained Finnish bogs using Pyrolysis-GC/MS. Leifeld, Jens, Global Change Biology Bioenergy, 13(8), 1319–1328. https://doi.org/10.1111/gcbb.12861
, & Paul, Sonja M. (2021). Accumulation of C4-carbon from Miscanthus in organic-matter-rich soils. Mignani, Claudia, Wieder, Jörg, Sprenger, Michael A., Kanji, Zamin A., Henneberger, Jan, Atmospheric Chemistry and Physics, 21(2), 657–664. https://doi.org/10.5194/acp-21-657-2021
, & Conen, Franz. (2021). Towards parameterising atmospheric concentrations of ice-nucleating particles active at moderate supercooling. Paul, Sonja, Ammann, Christof, Agricultural and Forest Meteorology, 300, 108319. https://doi.org/10.1016/j.agrformet.2021.108319
, & Leifeld, Jens. (2021). Carbon budget response of an agriculturally used fen to different soil moisture conditions. Wang, Yuqiao, Paul, Sonja M., Jocher, Markus, Espic, Christophe, The Science of the Total Environment, 800, 149498. https://doi.org/10.1016/j.scitotenv.2021.149498
, Szidat, Sönke, & Leifeld, Jens. (2021). Soil carbon loss from drained agricultural peatland after coverage with mineral soil. Zweifel, Lauren, Samarin, Maxim, Meusburger, Katrin, & Natural Hazards and Earth System Sciences (NHESS), 21(11), 3421–3437. https://doi.org/10.5194/nhess-21-3421-2021
. (2021). Investigating Causal Factors of Shallow Landslides in Grassland Regions of Switzerland. Nature Communications, 11(1), 4546. https://doi.org/10.1038/s41467-020-18326-7
, Ringeval, Bruno, Ballabio, Cristiano, Robinson, David A., Panagos, Panos, & Borelli, Pasquale. (2020). Global phosphorus shortage will be aggravated by soil erosion. Borrelli, Pasquale, Robinson, David A., Panagos, Panos, Lugato, Emanuele, Yang, Jae E., Proceedings of the National Academy of Sciences of the United States of America, 117(36), 21994–22001. https://doi.org/10.1073/pnas.2001403117
, Wuepper, David, Montanarella, Luca, & Ballabio, Cristiano. (2020). Land use and climate change impacts on global soil erosion by water (2015-2070). Gross-Schmölders, Miriam, von Sengbusch, Pascal, Krüger, Jan Paul, Klein, Kristy, Birkholz, Axel, Leifeld, Jens, & Soil, 6(2), 299–313. https://doi.org/10.5194/soil-6-299-2020
. (2020). Switch of fungal to bacterial degradation in natura drained and rewetted oligotrophic peatlands reflected in delta N-15 and fatty acid composition. Hirave, Pranav, Wiesenberg, Guido L. B., Birkholz, Axel, & Biogeosciences, 17(7), 2169–2180. https://doi.org/10.5194/bg-17-2169-2020
. (2020). Understanding the effects of early degradation on isotopic tracers: implications for sediment source attribution using compound-specific isotope analysis (CSIA). Klein, Kristy, Gross-Schmölders, Miriam, De la Rosa, José María, Communications in Soil Science and Plant Analysis, 51(12), 1572–1581. https://doi.org/10.1080/00103624.2020.1784916
, & Leifeld, Jens. (2020). Investigating the influence of instrumental parameters and chemical composition on pyrolysis efficiency of peat. Meusburger, Katrin, Evrard, Olivier, Scientific Reports, 10(1), 11858. https://doi.org/10.1038/s41598-020-68736-2
, Borrelli, Pasquale, Cinelli, Giorgia, Ketterer, Michael, Mabit, Lionel, Panagos, Panos, van Oost, Kristof, & Ballabio, Cristiano. (2020). Plutonium aided reconstruction of caesium atmospheric fallout in European topsoils. Samarin, Maxim, Zweifel, Lauren, Roth, Volker, & Remote Sensing, 12(24), 4149. https://doi.org/10.3390/rs12244149
. (2020). Identifying Soil Erosion Processes in Alpine Grasslands on Aerial Imagery with a U-Net Convolutional Neural Network. Wohlgemuth, Lena, Osterwalder, Stefan, Joseph, Carl, Kahmen, Ansgar, Hoch, Günter, Biogeosciences, 17(24), 6441–6456. https://doi.org/10.5194/bg-17-6441-2020
, & Jiskra, Martin. (2020). A bottom-up quantification of foliar mercury uptake fluxes across Europe. Warnsignal Klima: Hochgebirge im Wandel. Wissenschaftliche Fakten (pp. 194–198). Wissenschaftliche Auswertungen.
, Zweifel, Lauren, & Meusburger, Katrin. (2020). Einfluss des globalen Wandels auf die Bodenstabilität des alpinen Graslandes. In Lozán, José L.; Breckle, Siegmar W.; Escher-Vetter, Heidi; Grassl, Hartmut; Kasang, Dieter; Paul, Frank; Schickhoff, Udo (Ed.), International Soil and Water Conservation Research, 7(3), 203–225. https://doi.org/10.1016/j.iswcr.2019.05.004
, Borrelli, Pasquale, Meusburger, Katrin, & Panagos, Panos. (2019). Using the USLE: Chances, challenges and limitations of soil erosion modelling. Lavrieux, Marlène, Birkholz, Axel, Meusburger, Katrin, Wiesenberg , Guido L. B., Gilli, Adrian, Stamm, Christian, & Biogeosciences, 16(10), 2131–2146. https://doi.org/10.5194/bg-2018-288
. (2019). Plants or bacteria? 130 years of mixed imprints in Lake Baldegg sediments (Switzerland), as revealed by compound-specific isotope analysis (CSIA) and biomarker analysis. Lükewille, A., & Acidification (Vol. 2, pp. 233–241). Elsevier. https://doi.org/10.1016/B978-0-444-63768-0.00251-1
(2019). Mignani, Claudia, Creamean, Jessie M., Zimmermann, Lukas, Atmospheric Chemistry and Physics, 19(2), 877–886. https://doi.org/10.5194/acp-19-877-2019
, & Conen, Franz. (2019). New type of evidence for secondary ice formation at around -15 °C in mixed-phase clouds. Osterwalder, Stefan, Huang, Jen-How, Shetaya, Waleed H., Agnan, Yannick, Frossard, Aline, Frey, Beat, Environmental Pollution, 250, 944–952. https://doi.org/10.1016/j.envpol.2019.03.093
, Kretzschmar, Ruben, Biester, Harald, & Obrist, Daniel. (2019). Mercury emission from industrially contaminated soils in relation to chemical, microbial, and meteorological factors. Schmidt, Simon, Journal of Maps, 15(2), 247–256. https://doi.org/10.1080/17445647.2019.1585980
, & Meusburger, Katrin. (2019). Monthly RUSLE soil erosion risk of Swiss grasslands. Shetaya, Waleed H., Huang, Jen-How, Osterwalder, Stefan, Mestrot, Adrien, Bigalke, Moritz, & Chemosphere, 221(19), 193–202. https://doi.org/10.1016/j.chemosphere.2019.01.034
. (2019). Sorption kinetics of isotopically labelled divalent mercury (196Hg2+) in soil. Zweifel, Lauren, Meusburger, Katrin, & Remote sensing of environment, 235, 111441. https://doi.org/10.1016/j.rse.2019.111441
. (2019). Spatio-temporal pattern of soil degradation in a Swiss Alpine grassland catchment. Mignani, C., Creamean, J. M., Zimmermann, L., Alewell, C., & Conen, F. (2018). Direct evidence for secondary ice formation at around −15 °C in mixed-phase clouds [Posted-content]. Copernicus GmbH. https://doi.org/10.5194/acp-2018-829
Borrelli, Pasquale, Meusburger, Katrin, Ballabio, Cristiano, Panagos, Panos, & Land Degradation & Development, 29(4), 1270–1281. https://doi.org/10.1002/ldr.2898
. (2018). Object‐oriented soil erosion modelling: A possible paradigm shift from potential to actual risk assessments in agricultural environments. Borrelli, Pasquale, Panagos, Panos, Lugato, Emanuele, Global Change Biology, 24(8), 3283–3284. https://doi.org/10.1111/gcb.14125
, Ballabio, Cristiano, Montanarella, Luca, & Robinson, David A. (2018). Lateral carbon transfer from erosion in noncroplands matters. Mabit, Lionel, Gibbs, Max, Mbaye, Modou, Meusburger, Katrin, Toloza, Arsenio, Resch, Christian, Klik, Andreas, Swales, Andrew, & Geoderma, 316, 19–26. https://doi.org/10.1016/j.geoderma.2017.12.008
. (2018). Novel application of a Compound Specific Stable Isotope (CSSI) technique to investigate on-site sediment origins across arable fields. Meusburger, Katrin, Porto, Paolo, Mabit, Lionel, La Spada, Carmelo, Arata, Laura, & Environmental Research, 160, 195–202. https://doi.org/10.1016/j.envres.2017.09.020
. (2018). Excess Lead-210 and Plutonium-239+240: Two suitable radiogenic soil erosion tracers for mountain grassland sites. Osterwalder, S., Sommar, J., Akerblom, S., Jocher, G., Fritsche, J., Nilsson, M. B., Bishop, K., & Atmospheric Environment, 172, 16–25. https://doi.org/10.1016/j.atmosenv.2017.10.025
(2018). Comparative study of elemental mercury flux measurement techniques over a Fennoscandian boreal peatland. Schmidt, Simon, Remote Sensing of Environment, 211, 89–104. https://doi.org/10.1016/j.rse.2018.04.008
, & Meusburger, Katrin. (2018). Mapping spatio-temporal dynamics of the cover and management factor (C-factor) for grasslands in Switzerland. Schmidt, Simon, Data in Brief, 20, 1992–1998. https://doi.org/10.1016/j.dib.2018.09.039
, & Meusburger, Katrin. (2018). Change of permanent grasslands extent (1996-2015) and national grassland dataset of Switzerland. Schmidt, Simon, Ballabio, Cristiano, Journal of Plant Nutrition and Soil Science, 181(5), 737–748. https://doi.org/10.1002/jpln.201800128
, Panagos, Panos, & Meusburger, Katrin. (2018). Filling the European blank spot-Swiss soil erodibility assessment with topsoil samples. Tobias, Silvia, Conen, Franz, Duss, Adrian, Wenzel, Leonore M., Buser, Christine, & Land Degradation & Development, 29(6), 2015–2024. https://doi.org/10.1002/ldr.2919
. (2018). Soil sealing and unsealing: State of the art and examples. Earth Science Reviews, 172, 107–123. https://doi.org/10.1016/j.earscirev.2017.07.009
, Pitois, A, Meusburger, K., Ketterer, M., & Mabit, L. (2017). 239 + 240Pu from “contaminant” to soil erosion tracer: Where do we stand? Arata, Laura, Meusburger, Katrin, Bürge, Alexandra, Zehringer, Markus, Ketterer, Michael E., Mabit, Lionel, & SOIL, 3(3), 113–122. https://doi.org/10.5194/soil-3-113-2017
. (2017). Decision support for the selection of reference sites using 137Cs as a soil erosion tracer. Arata, Laura, Meusburger, Katrin, Frenkel, Elena, A’Campo-Neuen, Annette, Iurian, Andra-Rada, Ketterer, Michael E., Mabit, Lionel, & Soils Newsletter, 39(2), 6–7. https://www.iaea.org/publications/12214/soils-newsletter-vol39-no2-january-2017
. (2017). Unique Conversion Model for Assessing Soil Redistribution Magnitudes from Fallout Radionuclides Inventories: MODERN. Ballabio, Cristiano, Borrelli, Pasquale, Spinoni, Jonathan, Meusburger, Katrin, Michaelides, Silas, Beguería, Santiago, Klik, Andreas, Petan, Sašo, Janeček, Miloslav, Olsen, Preben, Aalto, Juha, Lakatos, Mónika, Rymszewicz, Anna, Dumitrescu, Alexandru, Tadić, Melita Perčec, Diodato, Nazzareno, Kostalova, Julia, Rousseva, Svetla, Banasik, Kazimierz, et al. (2017). Mapping monthly rainfall erosivity in Europe. Science of the Total Environment, 579, 1298–1315. https://doi.org/10.1016/j.scitotenv.2016.11.123
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, Meusburger, Katrin, Modugno, Sirio, Schütt, Brigitta, Ferro, Vito, Bagarello, Vincenzo, Van Oost, Kristof, Montanarella, Luca, & Panagos, Panos. (2017). An assessment of the global impact of 21st century land use change on soil erosion. Borrelli, Pasquale, Van Oost, Kristof, Di Bella, Katrin, Environmental Research, 161, 291–298. https://doi.org/10.1016/j.envres.2017.11.009
, Lugato, Emanuele, & Panagos, Panos. (2017). A step towards a holistic assessment of soil degradation in Europe: Coupling on-site erosion with sediment transfer and carbon fluxes. Huang, Jen-How, Paul, Sonja, Mayer, Silke, Moradpour, Eloise, Hasselbach, Ralf, Gieré, Reto, & Scientific Reports, 7(7), 2981. https://doi.org/10.1038/s41598-017-03055-7
. (2017). Metal biogeochemistry in constructed wetlands based on fluviatile sand and zeolite- and clinopyroxene-dominated lava sand. Larsen, Jarl Are, Conen, Franz, & Royal Society Open Science, 4(8), 170213. https://doi.org/10.1098/rsos.170213
. (2017). Export of ice nucleating particles from a watershed. Lavrieux, Marlène, Meusburger, Katrin, Birkholz, Axel, & Geophysical Research Abstracts, 19, 1. http://meetingorganizer.copernicus.org/EGU2017/EGU2017-9144.pdf
. (2017). Biomarkers and isotopic fingerprinting to track sediment origin and connectivity at Baldegg Lake (Switzerland) [European Geosciences Society]. Leifeld, Jens, Land Degradation and Development (LDD), n. https://doi.org/10.1002/ldr.2812
, Bader, Cédric, Krüger, Jan Paul, Müller, Carsten W., Sommer, Michael, Steffens, Markus, & Szidat, Sönke. (2017). Pyrogenic Carbon Contributes Substantially to Carbon Storage in Intact and Degraded Northern Peatlands. Meusburger, Karin, Mabit, Lionel, Ketterer, Michael, Park, Ji-Hyung, Tarjan, Sandor, Porto, Paolo, & Soils Newsletter, 40(1), 9. https://www.iaea.org/publications/12248/soils-newsletter-vol40-no1-june-2017
. (2017). 239+240Pu to 137Cs activity ratio: a proxy for comparing vertical and lateral radionuclide mobility. Osterwalder, Stefan, Bishop, Kevin, Scientific Reports, 7(1), 16022. https://doi.org/10.1038/s41598-017-16141-7
, Fritsche, Johannes, Laudon, Hjalmar, Åkerblom, Staffan, & Nilsson, Mats B. (2017). Mercury evasion from a boreal peatland shortens the timeline for recovery from legacy pollution. Panagos, Panos, Ballabio, Cristiano, Meusburger, Katrin, Spinoni, Jonathan, Journal of Hydrology, 548, 251–262. https://doi.org/10.1016/j.jhydrol.2017.03.006
, & Borrelli, Pasquale. (2017). Towards estimates of future rainfall erosivity in Europe based on REDES and WorldClim datasets. Schmidt, Simon, BGS Bulletin, 38, 37–46.
, Panagos, Panagos, & Meusburger, Katrin. (2017). Saisonale und räumliche Variabilität der Niederschlagserosivität in der Schweiz. Schmidt, Simon, Meusburger, Katrin, de Figueiredo, Tomás, & Land Degradation & Development, 28(3), 1100–1112. https://doi.org/10.1002/ldr.2652
. (2017). Modelling Hot Spots of Soil Loss by Wind Erosion (SOLOWIND) in Western Saxony, Germany. Shetaya, Waleed H., Osterwalder, Stefan, Bigalke, Moritz, Mestrot, Adrien, Huang, Jen-How, & Environmental Science and Technology Letters, 4(12), 556–561. https://doi.org/10.1021/acs.estlett.7b00510
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