Zobrazeno 1 - 10
of 12
pro vyhledávání: '"Katharina Leiber"'
Publikováno v:
Horticulturae, Vol 7, Iss 7, p 164 (2021)
Due to the major environmental impact of peat-based growing media production and the need of lowering greenhouse gas emissions in all sectors, a wider application of peat substitutes in growing media is requested. All peat substitutes under use have
Externí odkaz:
https://doaj.org/article/f55ddb557ec94cad998f8d740acb8e8e
Autor:
Katharina Leiber-Sauheitl, Jan Heinichen, Colja Beyer, Gerald Jurasinski, Mathias Hoffmann, Elisa Albiac Borraz, Stephan Glatzel, Matthias Drösler, Sascha Beetz, Tim Eickenscheidt, Martin Ebli, Christoph Förster, Mandy Peichl-Brak, Annette Freibauer, Andreas Gensior, Heinrich Höper, Michael Giebels, Bärbel Tiemeyer, Michel Bechtold, Jürgen Augustin, Andreas Laggner, Sabine Fiedler
Drained organic soils are large sources of anthropogenic greenhouse gases (GHG) in many European and Asian countries. Therefore, these soils urgently need to be considered and adequately accounted for when attempting to decrease emissions from the Ag
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::cbea5d5ab1c2b565605b020e84f05400
https://lirias.kuleuven.be/handle/123456789/643071
https://lirias.kuleuven.be/handle/123456789/643071
Publikováno v:
Biogeosciences. 11:749-761
Drained organic soils are anthropogenic emission hotspots of greenhouse gases (GHGs). Most studies have focused on deep peat soils and on peats with high organic carbon content. In contrast, histic Gleysols are characterized by shallow peat layers, w
Publikováno v:
Geochimica et Cosmochimica Acta. 126:614-623
The oxygen isotopic composition of cellulose is a valuable proxy in paleoclimate research. However, its application to sedimentary archives is challenging due to extraction and purification of cellulose. Here we present compound-specific δ 18 O resu
Autor:
Katharina Leiber, Wolfgang Zech, V. Tashak, Darima Andreeva, Margarita A. Erbajeva, Bruno Glaser, Ulrich Hambach, Galina D. Chimitdorgieva
Publikováno v:
Quaternary International. 243:313-326
Soils with deep and dark brown to black humic surface horizons, derived from sandy-silty aeolian and alluvial sediments, are relatively fertile and store huge amounts of carbon. Globally, they mainly correlate with steppe ecosystems. Because their de
Publikováno v:
Quaternary International. 243:327-336
This study presents numerical dating and geochemical results obtained for a soil transect on the northern slopes of Mt. Kilimanjaro, East Africa. Accordingly, the investigated soils in the montane forest zone comprise Late Quaternary palaeosol-sequen
Autor:
Bruno Glaser, Karsten Kalbitz, Katharina Leiber, Björn Buggle, Nikolai Pedentchouk, Michael Zech, Slobodan B. Marković
Publikováno v:
Geochimica et Cosmochimica Acta, 75, 4917-4928. Elsevier
During the last decade, compound-specific hydrogen isotope analysis of plant leaf-wax and sedimentary n -alkyl lipids has become a promising tool for paleohydrological reconstructions. However, with the exception of several previous studies, there is
Autor:
Andrei Andreev, Katharina Leiber, Michael Zech, Wolfgang Zech, Roland Zech, Michaela A. Dippold, R. Bussert, Manfred Frechen
Publikováno v:
Quaternary International. 234:133-145
Reconstructing Quaternary glacial and environmental changes in the vast, high-northern latitudes of Siberia is essential for a better understanding of global past climate variability and its potential solar forcings. Two sediment outcrops in the Dyan
Publikováno v:
Geochimica et Cosmochimica Acta. 141:680-682
Autor:
Guido L. B. Wiesenberg, Thomas Stevens, Björn Buggle, Bernd Huwe, Slobodan B. Marković, Ludwig Zöller, Pál Sümegi, Michael Zech, Katharina Leiber, Bruno Glaser, Ulrich Hambach
Publikováno v:
Eiszeitalter und Gegenwart, Vol 58, Pp 148-155 (2010)
Seit einigen Jahren gibt es zunehmend Studien, die, basierend auf der Untersuchung von fossilen Holzkohlen und Schneckenschalen aus Löss-Paläoboden Sequenzen, die traditionelle Vorstellung von weitestgehend baumlosen Steppen im Karpaten-Becken wäh