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Coupling a land use model and an ecosystem model for a crop-pasture zone

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  • Xu, Xia
  • Gao, Qiong
  • Liu, Ying-Hui
  • Wang, Jing-Ai
  • Zhang, Yong

Abstract

This paper describes the development of a land use model coupling ecosystem processes. For a given land use pattern in a region, a built-in regional ecosystem model (TESim) simulates leaf physiology of plants, carbon and nitrogen dynamics, and hydrological processes including runoff generation and run-on re-absorption, as well as runoff-induced soil erosion and carbon and nitrogen loss from ecosystems. The simulation results for a certain period from 1976 to 1999 were then used to support land use decisions and to assess the impacts of land use changes on environment. In the coupling model, the land use type for a land unit was determined by optimization of a weighted suitability derived from expert knowledge about the ecosystem state and site conditions. The model was applied to the temperate crop-pasture band in northern China (CCPB) to analyze the interactions between land use and major ecosystem processes and functions and to indicate the added value of the feedbacks by comparing simulations with and without the coupling and feedbacks between land use module and ecosystem processes. The results indicated that the current land use in CCPB is neither economical nor ecologically judicious. The scenario with feedbacks increased NPP by 46.78gCm−2a−1, or 32.23% of the scenario without feedbacks, also decreased soil erosion by 0.65kgm−2a−1, or 23.13%. Without altering the regional land use structure (proportions of each land use type). The system developed in this study potentially benefits both land managers and researchers.

Suggested Citation

  • Xu, Xia & Gao, Qiong & Liu, Ying-Hui & Wang, Jing-Ai & Zhang, Yong, 2009. "Coupling a land use model and an ecosystem model for a crop-pasture zone," Ecological Modelling, Elsevier, vol. 220(19), pages 2503-2511.
  • Handle: RePEc:eee:ecomod:v:220:y:2009:i:19:p:2503-2511
    DOI: 10.1016/j.ecolmodel.2009.04.043
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    1. Rutherford, Gillian N. & Bebi, Peter & Edwards, Peter J. & Zimmermann, Niklaus E., 2008. "Assessing land-use statistics to model land cover change in a mountainous landscape in the European Alps," Ecological Modelling, Elsevier, vol. 212(3), pages 460-471.
    2. Castella, Jean-Christophe & Verburg, Peter H., 2007. "Combination of process-oriented and pattern-oriented models of land-use change in a mountain area of Vietnam," Ecological Modelling, Elsevier, vol. 202(3), pages 410-420.
    3. Rabbinge, R. & Van Latesteijn, H. C., 1992. "Long-term options for land use in the European community," Agricultural Systems, Elsevier, vol. 40(1-3), pages 195-210.
    4. Ozaki, Noriatsu & Fukushima, Takehiko & Kojiri, Toshiharu, 2008. "Simulation of the effects of the alteration of the river basin land use on river water temperature using the multi-layer mesh-typed runoff model," Ecological Modelling, Elsevier, vol. 215(1), pages 159-169.
    5. Maarten Hilferink & Piet Rietveld, 1999. "LAND USE SCANNER: An integrated GIS based model for long term projections of land use in urban and rural areas," Journal of Geographical Systems, Springer, vol. 1(2), pages 155-177, July.
    6. de Wit, C. T. & van Keulen, H. & Seligman, N. G. & Spharim, I., 1988. "Application of interactive multiple goal programming techniques for analysis and planning of regional agricultural development," Agricultural Systems, Elsevier, vol. 26(3), pages 211-230.
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