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A comparative assessment of land suitability evaluation methods for agricultural land use planning at village level

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  • Vasu, Duraisamy
  • Srivastava, Rajeev
  • Patil, Nitin G.
  • Tiwary, Pramod
  • Chandran, Padikkal
  • Kumar Singh, Surendra

Abstract

Defining the relationship between soil characteristics and crop requirements must be the first step in planning future agriculture land use. The aim of the present study is to identify the constraints and potentials of major soils in a block of Telangana, India and evaluate them for crop suitability and propose agricultural land use plans (ALUP) at village level. Using IRS P6 LISS IV, Cartosat-I and DEM data, we identified and mapped six soil series through detailed soil survey. Soils varied in depth (<25 to>150 cm), texture, water holding capacity, hydraulic conductivity, pH, organic carbon and other inherent properties. We compared parametric, Storie index and multi-criteria land suitability evaluation (MC-LSE) methods for evaluating land suitability for pigeon pea, maize, cotton, groundnut and rice. The land suitability index (LSI) by the three methods varied for three soil series, but for one series, the methods produced similar results for cotton, maize and pigeon pea. The correlation of LSI with crop yield showed that MC-LSE performed better than other two methods. After analysing the LSE results, existing cropping pattern, potential and adaptability of alternate options through participatory interaction with farmers, ALUP for 19 villages of the study area were developed. Moreover, we also discuss the challenges and opportunities in proposing and implementing ALUP in India. The results of the present study will be helpful for farm managers for making the best use of soils based on their suitability. However, to demonstrate the applicability, practicability, and most importantly, the sustainability of proposed ALUP, coordinated implementation strategies are necessary.

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  • 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.
  • Handle: RePEc:eee:lauspo:v:79:y:2018:i:c:p:146-163
    DOI: 10.1016/j.landusepol.2018.08.007
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    1. Wiggering, Hubert & Steinhardt, Uta, 2015. "A conceptual model for site-specific agricultural land-use," Ecological Modelling, Elsevier, vol. 295(C), pages 42-46.
    2. Jonathan A. Foley & Navin Ramankutty & Kate A. Brauman & Emily S. Cassidy & James S. Gerber & Matt Johnston & Nathaniel D. Mueller & Christine O’Connell & Deepak K. Ray & Paul C. West & Christian Balz, 2011. "Solutions for a cultivated planet," Nature, Nature, vol. 478(7369), pages 337-342, October.
    3. Lu, H.W. & Huang, G.H. & Zhang, Y.M. & He, L., 2012. "Strategic agricultural land-use planning in response to water-supplier variation in a China’s rural region," Agricultural Systems, Elsevier, vol. 108(C), pages 19-28.
    4. Mandal, D. K. & Mandal, C. & Velayutham, M., 2001. "Development of a land quality index for sorghum in Indian semi-arid tropics (SAT)," Agricultural Systems, Elsevier, vol. 70(1), pages 335-350, October.
    5. Zhang, Wei & Ricketts, Taylor H. & Kremen, Claire & Carney, Karen & Swinton, Scott M., 2007. "Ecosystem services and dis-services to agriculture," Ecological Economics, Elsevier, vol. 64(2), pages 253-260, December.
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    9. Fei Xu & Yaping Shao & Baogen Xu & Huan Li & Xuefeng Xie & Yan Xu & Lijie Pu, 2023. "Evaluation and Zoning of Cultivated Land Quality Based on a Space–Function–Environment," Land, MDPI, vol. 12(1), pages 1-20, January.
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    11. 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.
    12. Dorijan Radočaj & Mladen Jurišić & Irena Rapčan & Fran Domazetović & Rina Milošević & Ivan Plaščak, 2023. "An Independent Validation of SoilGrids Accuracy for Soil Texture Components in Croatia," Land, MDPI, vol. 12(5), pages 1-16, May.
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