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Adams, W.A. (1973): The effect of organic matter on the bulk and true densities of some uncultivated podzolic soils. Journal of Soil Science 24, 10–17. AdamsW.A. 1973 The effect of organic matter on the bulk and true densities of some uncultivated podzolic soils Journal of Soil Science 24 10 17 10.1111/j.1365-2389.1973.tb00737.x Search in Google Scholar

Ad-hoc-Arbeitsgruppe Boden (2005): Bodenkundliche Kartieranleitung, 5. Auflage. ed. Bundesanstalt für Geowissenschaften und Rohstoffe in Zusammenarbeit mit den Staatlichen Geologischen Diensten, Hannover. Ad-hoc-Arbeitsgruppe Boden 2005 Bodenkundliche Kartieranleitung 5. Auflage. ed. Bundesanstalt für Geowissenschaften und Rohstoffe in Zusammenarbeit mit den Staatlichen Geologischen Diensten Hannover Search in Google Scholar

Batjes, N.H. (1996): Total carbon and nitrogen in the soils of the world. European Journal of Soil Science 47, 151–163. BatjesN.H. 1996 Total carbon and nitrogen in the soils of the world European Journal of Soil Science 47 151 163 10.1111/j.1365-2389.1996.tb01386.x Search in Google Scholar

Bohner, A., Gehmacher, P., Bodner, G. and P. Strauss (2017): Bodenverdichtung im Dauergrünland und ihre Auswirkung auf die Grünlandvegetation. Die Bodenkultur: Journal of Land Management, Food and Environment 68, 113–129. BohnerA. GehmacherP. BodnerG. StraussP. 2017 Bodenverdichtung im Dauergrünland und ihre Auswirkung auf die Grünlandvegetation Die Bodenkultur: Journal of Land Management, Food and Environment 68 113 129 10.1515/boku-2017-0011 Search in Google Scholar

Callesen, I., Liski, J., Ralund-Rassmusen, K., Olsson, M.T., Tau-Strand, L., Vesterdal, L. and C.J. Westman (2003): Soil carbon stores in Nordic well-drained forest soils—relationships with climate and texture class. Global Change Biology 9, 358–370. CallesenI. LiskiJ. Ralund-RassmusenK. OlssonM.T. Tau-StrandL. VesterdalL. WestmanC.J. 2003 Soil carbon stores in Nordic well-drained forest soils—relationships with climate and texture class Global Change Biology 9 358 370 10.1046/j.1365-2486.2003.00587.x Search in Google Scholar

Chen, S., Richer-de-Forges, A.C., Saby, N.P.A., Martin, M.P., Walter, C. and D. Arrouays (2018): Building a pedotransfer function for soil bulk density on regional dataset and testing its validity over a larger area. Geoderma 312, 52–63. ChenS. Richer-de-ForgesA.C. SabyN.P.A. MartinM.P. WalterC. ArrouaysD. 2018 Building a pedotransfer function for soil bulk density on regional dataset and testing its validity over a larger area Geoderma 312 52 63 10.1016/j.geoderma.2017.10.009 Search in Google Scholar

Cools, N. and B. De Vos (2016): Part X: Sampling and Analysis of Soil. In: UNECE IPC Forest Programme Co-ordination Centre (Ed.): Manual on methods and criteria for harmonized sampling, assessment, monitoring and analysis of the effects of air pollution on forests., 5th ed. Thünen Institute of Forest Ecosystems, Eberswalde, Germany. CoolsN. De VosB. 2016 Part X: Sampling and Analysis of Soil In: UNECE IPC Forest Programme Co-ordination Centre (Ed.): Manual on methods and criteria for harmonized sampling, assessment, monitoring and analysis of the effects of air pollution on forests 5th ed. Thünen Institute of Forest Ecosystems Eberswalde, Germany Search in Google Scholar

De Vos, B., van Meirvenne, M., Quataert, P., Deckers, J. and B. Muys (2005): Predictive Quality of Pedotransfer Functions for Estimating Bulk Density of Forest Soils. Soil Science Society of America Journal 500–510. De VosB. van MeirvenneM. QuataertP. DeckersJ. MuysB. 2005 Predictive Quality of Pedotransfer Functions for Estimating Bulk Density of Forest Soils Soil Science Society of America Journal 500 510 10.2136/sssaj2005.0500 Search in Google Scholar

Dixon, R.K., Solomon, A.M., Brown, S., Houghton, R.A., Trexier, M.C. and J. Wisniewski (1994): Carbon Pools and Flux of Global Forest Ecosystems. Science 263, 185. DixonR.K. SolomonA.M. BrownS. HoughtonR.A. TrexierM.C. WisniewskiJ. 1994 Carbon Pools and Flux of Global Forest Ecosystems Science 263 185 10.1126/science.263.5144.18517839174 Search in Google Scholar

Gerzabek, M.H., Strebl, F., Tulipan, M. and S. Schwarz (2005): Quantification of organic carbon pools for Austria's agricultural soils using a information system. Canadian Journal of Soil Science 491–498. GerzabekM.H. StreblF. TulipanM. SchwarzS. 2005 Quantification of organic carbon pools for Austria's agricultural soils using a information system Canadian Journal of Soil Science 491 498 10.4141/S04-083 Search in Google Scholar

Gottschalk, P., Wattenbach, M., Neftel, A., Fuhrer, J., Jones, M., Lanigan, G., Davis, P., Campbell, C., Soussana, J.-F. and P. Smith (2007): The role of measurement uncertainties for the simulation of grassland net ecosystem exchange (NEE) in Europe. Agriculture, Ecosystems & Environment 121, 175–185. GottschalkP. WattenbachM. NeftelA. FuhrerJ. JonesM. LaniganG. DavisP. CampbellC. SoussanaJ.-F. SmithP. 2007 The role of measurement uncertainties for the simulation of grassland net ecosystem exchange (NEE) in Europe Agriculture, Ecosystems & Environment 121 175 185 10.1016/j.agee.2006.12.026 Search in Google Scholar

Haslmayr, H.-P., Baumgarten, A., Schwarz, M., Huber, S., Weiss, P., Obersteiner, E., Aust, G., Englisch, M., Horvath, D., Jandl, R., Leitgeb, E., Rodlauer, C. and A. Bohner (2018): ASOC-Österreichische Karte des organischen Bodenkohlenstoffs - Endbericht zum Forschungsprojekt Nr. 101255. Vienna, Austria. HaslmayrH.-P. BaumgartenA. SchwarzM. HuberS. WeissP. ObersteinerE. AustG. EnglischM. HorvathD. JandlR. LeitgebE. RodlauerC. BohnerA. 2018 ASOC-Österreichische Karte des organischen Bodenkohlenstoffs - Endbericht zum Forschungsprojekt Nr. 101255 Vienna, Austria Search in Google Scholar

Hollis, J.M., Hannam, J. and P.H. Bellamy (2012): Empirically-derived pedotransfer functions for predicting bulk density in European soils. European Journal of Soil Science 63, 96–109. HollisJ.M. HannamJ. BellamyP.H. 2012 Empirically-derived pedotransfer functions for predicting bulk density in European soils European Journal of Soil Science 63 96 109 10.1111/j.1365-2389.2011.01412.x Search in Google Scholar

Kätterer, T., Andrén, O. and P.-E. Jansson (2006):Pedotransfer functions for estimating plant available water and bulk density in Swedish agricultural soils. Acta Agriculturae Scandinavica, Section B - Soil & Plant Science 56, 263–276. KättererT. AndrénO. JanssonP.-E. 2006 Pedotransfer functions for estimating plant available water and bulk density in Swedish agricultural soils Acta Agriculturae Scandinavica, Section B - Soil & Plant Science 56 263 276 10.1080/09064710500310170 Search in Google Scholar

Keller, T. and I. Håkansson (2010): Estimation of reference bulk density from soil particle size distribution and soil organic matter content. Geoderma 154, 398–406. KellerT. HåkanssonI. 2010 Estimation of reference bulk density from soil particle size distribution and soil organic matter content Geoderma 154 398 406 10.1016/j.geoderma.2009.11.013 Search in Google Scholar

Körschens M. and U. Waldschmidt (1995): Ein beitrag zur quantifizierung der beziehungen zwischen humusgehalt und bodenphysikalischen eigenschaften. Archives of Agronomy and Soil Science 39, 165–173. KörschensM. WaldschmidtU. 1995 Ein beitrag zur quantifizierung der beziehungen zwischen humusgehalt und bodenphysikalischen eigenschaften Archives of Agronomy and Soil Science 39 165 173 10.1080/03650349509365899 Search in Google Scholar

Leifeld, J., Bassin, S. and J. Fuhrer (2005): Carbon stocks in Swiss agricultural soils predicted by land-use, soil characteristics, and altitude. Agriculture, Ecosystems & Environment 105, 255–266. LeifeldJ. BassinS. FuhrerJ. 2005 Carbon stocks in Swiss agricultural soils predicted by land-use, soil characteristics, and altitude Agriculture, Ecosystems & Environment 105 255 266 10.1016/j.agee.2004.03.006 Search in Google Scholar

Manrique, L.A. and C.A. Jones (1991): Bulk Density in Soils in Relation to Soil Physical and Chemical Properties. Soil Science Society of American Journal 55, 476–481. ManriqueL.A. JonesC.A. 1991 Bulk Density in Soils in Relation to Soil Physical and Chemical Properties Soil Science Society of American Journal 55 476 481 10.2136/sssaj1991.03615995005500020030x Search in Google Scholar

Moore, T. (1998): Dissolved Organic Carbon: Sources, Sinks, and Fluxes and Role in the Soil Carbon Cycle. In: Lal, R., Kimble, J.M., Follett, R.F., Stewart, B.A. (Eds.), Soil Processes and the Carbon Cycöe. CRC Press Inc., Boca Raton, pp. 281–292. MooreT. 1998 Dissolved Organic Carbon: Sources, Sinks, and Fluxes and Role in the Soil Carbon Cycle In: LalR. KimbleJ.M. FollettR.F. StewartB.A. (Eds.), Soil Processes and the Carbon Cycöe CRC Press Inc. Boca Raton 281 292 10.1201/9780203739273-19 Search in Google Scholar

Nanko, K., Ugawa, S., Hashimoto, S., Imaya, A., Kobayashi, M., Sakai, H., Ishizuka, S., Miura, S., Tanaka, N., Takahashi, M. and S. Kaneko (2014): A pedotransfer function for estimating bulk density of forest soil in Japan affected by volcanic ash. Geoderma 213, 36–45. NankoK. UgawaS. HashimotoS. ImayaA. KobayashiM. SakaiH. IshizukaS. MiuraS. TanakaN. TakahashiM. KanekoS. 2014 A pedotransfer function for estimating bulk density of forest soil in Japan affected by volcanic ash Geoderma 213 36 45 10.1016/j.geoderma.2013.07.025 Search in Google Scholar

Nussbaum, M., Papritz, A., Zimmermann, S. and L. Walthert (2016): Pedotransfer function to predict density of forest soils in Switzerland. Journal of Plant Nutrition and Soil Science 179, 321–326. NussbaumM. PapritzA. ZimmermannS. WalthertL. 2016 Pedotransfer function to predict density of forest soils in Switzerland Journal of Plant Nutrition and Soil Science 179 321 326 10.1002/jpln.201500546 Search in Google Scholar

Pan, Y., Birdsey, R.A., Fang, J., Houghton, R., Kauppi, P.E., Kurz, W.A., Phillips, O.L., Shvidenko, A., Lewis, S.L., Canadell, J.G., Ciais, P., Jackson, R.B., Pacala, S.W., McGuire, A.D., Piao, S., Rautiainen, A., Sitch, S. and D. Hayes (2011): A Large and Persistent Carbon Sink in the World's Forests. Science 333, 988. PanY. BirdseyR.A. FangJ. HoughtonR. KauppiP.E. KurzW.A. PhillipsO.L. ShvidenkoA. LewisS.L. CanadellJ.G. CiaisP. JacksonR.B. PacalaS.W. McGuireA.D. PiaoS. RautiainenA. SitchS. HayesD. 2011 A Large and Persistent Carbon Sink in the World's Forests Science 333 988 10.1126/science.120160921764754 Search in Google Scholar

Poeplau, C., Vos, C. and A. Don (2017): Soil organic carbon stocks are systematically overestimated by misuse of the parameters bulk density and rock fragment content. SOIL 3, 61–66. PoeplauC. VosC. DonA. 2017 Soil organic carbon stocks are systematically overestimated by misuse of the parameters bulk density and rock fragment content SOIL 3 61 66 10.5194/soil-3-61-2017 Search in Google Scholar

Rawls, W.J., 1983. Estimating soil bulk density from particle size analysis and organic matter content. Soil Science 123–125. RawlsW.J. 1983 Estimating soil bulk density from particle size analysis and organic matter content Soil Science 123 125 10.1097/00010694-198302000-00007 Search in Google Scholar

Ruehlmann, J. and M. Körschens (2009): Calculating the Effect of Soil Organic Matter Concentration on Soil Bulk Density. Soil Science Society of America Journal 73, 876–885. RuehlmannJ. KörschensM. 2009 Calculating the Effect of Soil Organic Matter Concentration on Soil Bulk Density Soil Science Society of America Journal 73 876 885 10.2136/sssaj2007.0149 Search in Google Scholar

Saini, G.R. (1966): Organic Matter as a Measure of Bulk Density of Soil. Nature 210, 1295–1296. SainiG.R. 1966 Organic Matter as a Measure of Bulk Density of Soil Nature 210 1295 1296 10.1038/2101295a0 Search in Google Scholar

Schrumpf, M., Schulze, E.D., Kaiser, K. and J. Schumacher (2011): How accurately can soil organic carbon stocks and stock changes be quantified by soil inventories? Biogeosciences 8, 1193–1212. SchrumpfM. SchulzeE.D. KaiserK. SchumacherJ. 2011 How accurately can soil organic carbon stocks and stock changes be quantified by soil inventories? Biogeosciences 8 1193 1212 10.5194/bg-8-1193-2011 Search in Google Scholar

Sequeira, C.H., Wills, S.A., Seybold, C.A., West, L.T., 2014. Predicting soil bulk density for incomplete databases. Geoderma 213, 64–73. SequeiraC.H. WillsS.A. SeyboldC.A. WestL.T. 2014 Predicting soil bulk density for incomplete databases Geoderma 213 64 73 10.1016/j.geoderma.2013.07.013 Search in Google Scholar

Suuster, E., Ritz, C., Roostalu, H., Reintam, E., Kõlli, R. and A. Astover (2011): Soil bulk density pedotransfer functions of the humus horizon in arable soils. Geoderma 163, 74–82. SuusterE. RitzC. RoostaluH. ReintamE. KõlliR. AstoverA. 2011 Soil bulk density pedotransfer functions of the humus horizon in arable soils Geoderma 163 74 82 10.1016/j.geoderma.2011.04.005 Search in Google Scholar

Walter, K., Don, A., Tiemeyer, B. and A. Freibauer (2016): Determining Soil Bulk Density for Carbon Stock Calculations: A Systematic Method Comparison. Soil Science Society of America Journal 80, 579–591. WalterK. DonA. TiemeyerB. FreibauerA. 2016 Determining Soil Bulk Density for Carbon Stock Calculations: A Systematic Method Comparison Soil Science Society of America Journal 80 579 591 10.2136/sssaj2015.11.0407 Search in Google Scholar

Wiesmeier, M., Spörlein, P., Geuß, U., Hangen, E., Haug, S., Reischl, A., Schilling, B., von Lützow, M. and I. Kögel-Knabner (2012): Soil organic carbon stocks in southeast Germany (Bavaria) as affected by land use, soil type and sampling depth. Global Change Biology 18, 2233–2245. WiesmeierM. SpörleinP. GeußU. HangenE. HaugS. ReischlA. SchillingB. von LützowM. Kögel-KnabnerI. 2012 Soil organic carbon stocks in southeast Germany (Bavaria) as affected by land use, soil type and sampling depth Global Change Biology 18 2233 2245 10.1111/j.1365-2486.2012.02699.x Search in Google Scholar

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