• Journal of Geographical Sciences
  • Vol. 30, Issue 9, 1507 (2020)
Wenbo ZHU*, Jingjing ZHANG, Yaoping CUI, and Lianqi ZHU
Author Affiliations
  • College of Environment & Planning, Henan University, Kaifeng 475004, Henan, China
  • show less
    DOI: 10.1007/s11442-020-1796-6 Cite this Article
    Wenbo ZHU, Jingjing ZHANG, Yaoping CUI, Lianqi ZHU. Ecosystem carbon storage under different scenarios of land use change in Qihe catchment, China[J]. Journal of Geographical Sciences, 2020, 30(9): 1507 Copy Citation Text show less
    References

    [1] Tree biomass and soil organic carbon densities across the Sudanese woodland savannah: A regional carbon sequestration study. Journal of Arid Environments, 89, 67-76(2013).

    [2] et alEstimated carbon dioxide emissions from tropical deforestation improved by carbon-density maps. Nature Climate Change, 2, 182-185(2012).

    [3] et alCarbon emissions from agricultural expansion and intensification in the Chaco. Global Change Biology, 23, 1902-1916(2017).

    [4] et alTotal below ground carbon allocation in China’s forests. Acta Ecologica Sinica, 27, 5148-5157(2007).

    [5] Researches on carbon sequestration functions of main forest types in northern China(2003).

    [6] et alLand use change and its influence on carbon storage of terrestrial ecosystems in Jiangsu Province. Resources Science, 33, 1932-1939(2011).

    [7] et alSpatial-temporal features of carbon source-sink and its relationship with climate factors in Inner Mongolia grassland ecosystem. Acta Geographica Sinica, 71, 21-34(2016).

    [8] et alMethods, tools and research framework of ecosystem service trade-offs. Geographical Research, 35, 1005-1016(2016).

    [9] et alLand use driving forces and its future scenario simulation in the Three Gorges Reservoir Area using CLUE-S model. Acta Geographica Sinica, 71, 1979-1997(2016).

    [10] Biomass and net production of forest vegetation in China. Acta Ecologica Sinica, 16, 497-508(1996).

    [11] et alCarbon sequestration in China’s terrestrial ecosystems under climate change: Progress on ecosystem carbon sequestration from the CAS Strategic Priority Research Program. Bulletin of the Chinese Academy of Sciences, 30, 848-857(2015).

    [12] et alGlobal consequences of land use. Science, 309, 570-574(2005).

    [13] Evidence that decomposition rates of organic carbon in mineral soil do not vary with temperature. Nature, 404, 858-861(2000).

    [14] Influence of carbon mapping and land change modelling on the prediction of carbon emissions from deforestation. Environmental Conservation, 39, 325-336(2012).

    [15] et alUnderstanding soil carbon sequestration following the afforestation of former arable land by physical fractionation. Catena, 150, 317-327(2017).

    [16] Carbon emissions and the drivers of deforestation and forest degradation in the tropics. Current Opinion in Environmental Sustainability, 4, 597-603(2012).

    [17] et alChapter G2 carbon emissions from land use and land-cover change. Biogeosciences, 9, 5125-5142(2012).

    [18] Simulation of land-use scenarios for Beijing using CLUE-S and Markov composite models. Chinese Geographical Science, 23, 92-100(2013).

    [19] Modeling study of vegetation shoot and root biomass in China. Acta Ecologica Sinica, 26, 4156-4163(2006).

    [20] Prediction of carbon exchanges between China terrestrial ecosystem and atmosphere in 21st century. Science in China Series D: Earth Sciences, 38, 211-223(2008).

    [21] et alSimulating urban land use change by incorporating an autologistic regression model into a CLUE-S model. Journal of Geographical Sciences, 25, 836-850(2015).

    [22] et alModelling the potential impacts of urban ecosystem changes on carbon storage under different scenarios by linking the CLUE-S and the InVEST models. Ecological Modelling, 345, 30-40(2017).

    [23] The vertical zonation of mountain vegetation in Henan. Journal of Henan Normal University (Natural Science Edition), 19, 91-95(1991).

    [24] Carbon accumulation in agricultural soils after afforestation: A meta-analysis. Global Change Biology, 16, 439-453(2010).

    [25] et alCarbon emissions from land-use change and management in China between 1990 and 2010. Science Advances, 2, e1601063(2016).

    [26] Accurate estimate of soil organic carbon storage in Henan Province based on high-density profile(2016).

    [27] Vegetation and soil carbon storage in China. Scientia Sinica (Terrae), 33, 72-80(2003).

    [28] Integrating the SD-CLUE-S and InVEST models into assessment of oasis carbon storage in northwestern China. PLos One, 12, e0172494(2017).

    [29] et alCarbon sequestration potential of biomass carbon pool for new afforestation in China during 2005-2013. Acta Geographica Sinica, 71, 1939-1947(2016).

    [30] Study on national resources and environment survey and dynamic monitoring using remote sensing. Journal of Remote Sensing, 1, 225-230(1997).

    [31] Land use scenario design and simulation based on Dyna-CLUE model in Dianchi Lake Catchment. Geographical Research, 34, 1619-1629(2015).

    [32] et alChallenges to estimating carbon emissions from tropical deforestation. Global Change Biology, 13, 51-66(2007).

    [33] et alCarbon stocks and losses to deforestation in protected areas in Brazilian Amazonia. Regional Environmental Change, 18, 261-270(2018).

    [34] et alSpatial distribution of grassland biomass in China. Chinese Journal of Plant Ecology, 28, 491-498(2004).

    [35] et alThe carbon balance of terrestrial ecosystems in China. Nature, 458, 1009-1013(2009).

    [36] Land-cover change model validation by a ROC method for the Ipswich catchment, Massachusetts, USA. Agriculture, Ecosystems and Environment, 85, 239-248(2001).

    [37] et alChange and tradeoffs-synergies analysis on catchment ecosystem services: A case study of Bailongjiang catchment, Gansu. Acta Geographica Sinica, 73, 868-879(2018).

    [38] A research on the vegetation in the southern part of Taihang Mountain. Journal of Shanxi Normal University (Natural Science Edition), 7, 54-58(1993).

    [39] et alRecent patterns and mechanisms of carbon recent patterns and mechanisms of carbon exchange by terrestrial ecosystems. Nature, 414, 169-172(2001).

    [40] et alVariation in ecosystem services across an urbanization gradient: A study of terrestrial carbon stocks from Changzhou, China. Ecological Modelling, 318, 210-216(2015).

    [41] et alModeling the spatial dynamics of regional land use: The CLUE-S model. Environmental Management, 30, 391-405(2002).

    [42] Study on the ecosystem carbon storage of different land use types in the Taihang Mountain(2007).

    [43] Land use optimization simulation based on low-carbon emissions in eastern part of Qinghai Plateau. Geographical Research, 34, 1270-1284(2015).

    [44] et alEffects of land use/land cover change on carbon storage in Manas River catchment over the past 50 years. Journal of Natural Resources, 28, 994-1006(2013).

    [45] et alSpatial variations of terrain and their impacts on landscape patterns in the transition zone from mountains to plains: A case study of catchment in the Taihang Mountains. Scientia Sinica (Terrae), 48, 476-486(2018).

    [46] et alSpatial distribution of forest vegetation carbon stock in China based on HASM. Acta Geographica Sinica, 24, 1212-1224(2013).

    [47] et alCharacteristic of tradeoffs between timber production and carbon storage for plantation under harvesting impact: A case study of Huitong National Research Station of Forest Ecosystem. Acta Geographica Sinica, 73, 152-163(2018).

    Wenbo ZHU, Jingjing ZHANG, Yaoping CUI, Lianqi ZHU. Ecosystem carbon storage under different scenarios of land use change in Qihe catchment, China[J]. Journal of Geographical Sciences, 2020, 30(9): 1507
    Download Citation