The impact of shifting Köppen-Geiger climate zones on soil organic carbon concentrations in Australian grasslands

Global and Planetary Change - Tập 202 - Trang 103523 - 2021
A.J. Gibson1,2, G.R. Hancock1, D.C. Verdon-Kidd1, C. Martinez3, T. Wells4
1School of Environmental and Life Sciences, The University of Newcastle, Australia
2The University of Newcastle, University Drive, Callaghan, NSW, 2308, Australia
3School of Agriculture and Food Sciences, The University of Queensland, Australia
4School of Engineering, The University of Newcastle, Australia

Tài liệu tham khảo

Allen, 2013, What determines soil organic carbon stocks in the grazing lands of North-Eastern Australia?, Soil Res., 51, 695, 10.1071/SR13041

Bui, 2009, Using knowledge discovery with data mining from the Australian Soil Resource Information System database to inform soil carbon mapping in Australia, Glob. Biogeochem. Cycles, 23, 10.1029/2009GB003506

Chaplot, 2010, Soil organic carbon stocks in Laos: spatial variations and controlling factors, Glob. Chang. Biol., 16, 1380, 10.1111/j.1365-2486.2009.02013.x

Charman, 2007

Doetterl, 2012, Carbon cycling in eroding landscapes: geomorphic controls on soil organic C pool composition and C stabilization, Global Change Biology, 187, 2218, 10.1111/j.1365-2486.2012.02680.x

Didan, 2015

Dlamini, 2016, Overgrazing decreases soil organic carbon stocks the most under dry climates and low soil pH: a meta-analysis shows, Agric. Ecosyst. Environ., 221, 258, 10.1016/j.agee.2016.01.026

Geoscience Australia

Gray, 2015, Factors controlling soil organic carbons stocks with depth in eastern Australia, Soil Sci. Soc. Am. J., 79, 1741, 10.2136/sssaj2015.06.0224

Hancock, 2020, Effects of grazing exclusion on soil organic carbon: Hillslope and soil profile results (an Australian example), Sci. Total Environ., 705, 135844, 10.1016/j.scitotenv.2019.135844

Hancock, 2008, Estimation of soil erosion using field and modelling approaches in an undisturbed Arnhem Land catchment, Northern Territory, Australia, Geogr. Res., 46, 333, 10.1111/j.1745-5871.2008.00527.x

Hancock, 2013, Soil properties and environmental tracers: a DEM based assessment in an Australian Mediterranean environment, Geomorphology, 183, 45, 10.1016/j.geomorph.2012.08.020

Hassink, 1997, The capacity of soils to preserve organic C and N by their association with clay and silt particles, Plant Soil, 191, 77, 10.1023/A:1004213929699

Haverd, 2013, The Australian terrestrial carbon budget, Biogeosciences, 10, 851, 10.5194/bg-10-851-2013

Haverd, 2016, Process contributions of Australian ecosystems to interannual variations in the carbon cycle, Environ. Res. Lett., 11, 7, 10.1088/1748-9326/11/5/054013

Hazelton, 2007

Hoyle, 2016, Spatially governed climate factors dominate management in determining the quantity and distribution of soil organic carbon in dryland agricultural systems, Sci. Rep., 6, 31468, 10.1038/srep31468

Jobbágy, 2000, The vertical distribution of soil organic carbon and its relation to climate and vegetation, Ecol. Appl., 10, 423, 10.1890/1051-0761(2000)010[0423:TVDOSO]2.0.CO;2

Kiem, 2002, Refractory organic carbon in particle-size fractions of arable soils II: organic carbon in relation to mineral surface area and iron oxides in fractions <6 mu m, Org. Geochem., 33, 1699, 10.1016/S0146-6380(02)00112-2

Kunkel, 2019, Large catchment-scale spatiotemporal distribution of soil organic carbon, Geoderma, 334, 175, 10.1016/j.geoderma.2018.07.046

Liu, 2017, Effects of land use and topography on spatial variety of soil organic carbon density in a hilly, subtropical catchment of China, Soil Res., 55, 134, 10.1071/SR15038

Luo, 2017, Soil organic carbon dynamics jointly controlled by climate, carbon inputs, soil properties and soil carbon fractions, Glob. Chang. Biol., 23, 4430, 10.1111/gcb.13767

Martinez, 2009, Comparison of fallout radionuclide (caesium-137) and modelling approaches for the assessment of soil erosion rates for an uncultivated site in South-Eastern Australia, Geoderma, 151, 128, 10.1016/j.geoderma.2009.03.023

Minasny, 2013, Digital mapping of soil carbon, 10.1016/B978-0-12-405942-9.00001-3

Oades, 1993, The role of biology in the formation, stabilization and degradation of soil structure, Geoderma, 56, 377, 10.1016/0016-7061(93)90123-3

Poulter, 2014, Contribution of semi-arid ecosystems to interannual variability of the global carbon cycle, Nature, 509, 600, 10.1038/nature13376

Raupach, 2009

Raupach, 2012

Story, 1963, Land systems of the hunter valley, vol. 8, 14

Teng, 2016, Assimilating satellite imagery and visible–near infrared spectroscopy to model and map soil loss by water erosion in Australia, Environ. Model. Softw., 77, 156, 10.1016/j.envsoft.2015.11.024

Timbal, 2010, The climate of the Eastern Seaboard of Australia: a challenging entity now and for future projections, IOP Conf. Ser. Earth Environ. Sci., 11, 10.1088/1755-1315/11/1/012013

Viscarra Rossel, 2016

Viscarra Rossel, 2014, A Baseline map of organic carbon in Australian soil to support national carbon accounting and monitoring under climate change, Glob. Chang. Biol., 20, 2953, 10.1111/gcb.12569

Viscarra Rossel, 2015, The Australian three-dimensional soil grid: Australia's contribution to the GlobalSoilMap project, Soil Res., 53, 845, 10.1071/SR14366

Wiesmeier, 2019, Soil organic carbon storage as a key function of soils - a review of drivers and indicators at various scales, Geoderma, 333, 149, 10.1016/j.geoderma.2018.07.026