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An important tool against combat climate change: Land suitability assessment for canola (a case study: Çanakkale, NW Turkey)

Author

Listed:
  • Timuçin Everest

    (Çanakkale Onsekiz Mart University)

  • Hakan Koparan

    (Çanakkale Agriculture and Forestry Directorate)

  • Ali Sungur

    (Çanakkale Onsekiz Mart University)

  • Hasan Özcan

    (Çanakkale Onsekiz Mart University)

Abstract

Authorities working to combat climate change should consider land suitability studies for crop-based energy crops rather than broad and categorical land assessments, particularly over macro-areas, to facilitate decisions and policy-making. The primary objective of the present study was to identify suitable productive lands in Çanakkale province, NW Turkey for canola, which may constitute an alternative energy crop to fossil fuels and aid in combating climate change. Literature findings, land observations, analytic hierarchy process (AHP) and geographic information systems (GIS) were used to generate a land suitability model for canola farming in arable lands of Çanakkale province. Within the scope of the study, 12 physical, chemical and topographic parameters (soil texture, pH, EC, depth, organic matter, N, P, K, CaCO3 contents, aspect, slope and elevation) were assessed. Analyses revealed that 5798.28 ha were highly suitable (S1), 18,647.11 ha were moderately suitable (S2), 9342.71 ha were marginally suitable (S3) and 3070.92 ha were not suitable (N) for canola farming. The topographic parameters of slope and soil depth were identified as the primary effective factors and chemical parameters of soil pH and EC were identified as the secondary effective factors. Climate change, alternative searches for energy resources and increasing land demands make it necessary to use land resources more effectively. The combination of GIS and AHP techniques provided useful results in the canola example for the utilization of land resources in accordance with increasing demands. Widespread use of this approach for different energy crops will provide a significant tool to the authorities for carbon management.

Suggested Citation

  • Timuçin Everest & Hakan Koparan & Ali Sungur & Hasan Özcan, 2022. "An important tool against combat climate change: Land suitability assessment for canola (a case study: Çanakkale, NW Turkey)," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 24(11), pages 13137-13172, November.
  • Handle: RePEc:spr:endesu:v:24:y:2022:i:11:d:10.1007_s10668-021-01985-x
    DOI: 10.1007/s10668-021-01985-x
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    References listed on IDEAS

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    1. Vasu, Duraisamy & Srivastava, Rajeev & Patil, Nitin G. & Tiwary, Pramod & Chandran, Padikkal & Kumar Singh, Surendra, 2018. "A comparative assessment of land suitability evaluation methods for agricultural land use planning at village level," Land Use Policy, Elsevier, vol. 79(C), pages 146-163.
    2. Akpoti, Komlavi & Kabo-bah, Amos T. & Zwart, Sander J., 2019. "Agricultural land suitability analysis: State-of-the-art and outlooks for integration of climate change analysis," Agricultural Systems, Elsevier, vol. 173(C), pages 172-208.
    3. Ustaoglu, E. & Sisman, S. & Aydınoglu, A.C., 2021. "Determining agricultural suitable land in peri-urban geography using GIS and Multi Criteria Decision Analysis (MCDA) techniques," Ecological Modelling, Elsevier, vol. 455(C).
    4. H. Damon Matthews & Nathan P. Gillett & Peter A. Stott & Kirsten Zickfeld, 2009. "The proportionality of global warming to cumulative carbon emissions," Nature, Nature, vol. 459(7248), pages 829-832, June.
    5. Amal Aldababseh & Marouane Temimi & Praveen Maghelal & Oliver Branch & Volker Wulfmeyer, 2018. "Multi-Criteria Evaluation of Irrigated Agriculture Suitability to Achieve Food Security in an Arid Environment," Sustainability, MDPI, vol. 10(3), pages 1-33, March.
    6. Tiwari, D. N. & Loof, R. & Paudyal, G. N., 1999. "Environmental-economic decision-making in lowland irrigated agriculture using multi-criteria analysis techniques," Agricultural Systems, Elsevier, vol. 60(2), pages 99-112, May.
    7. Timuçin Everest, 2021. "Suitable site selection for pistachio (Pistacia vera) by using GIS and multi-criteria decision analyses (a case study in Turkey)," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 23(5), pages 7686-7705, May.
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