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Transition from subsistence grazing to nature-based recreation: A nuanced view of land abandonment in a mountain social-ecological system, southwestern Cape, South Africa

Author

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  • Holden, Petra B.
  • Ziervogel, Gina
  • Hoffman, M. Timm
  • New, Mark G.

Abstract

Over the last 50 years, studies have shown a decline in the use of mountain lands, a phenomenon termed land abandonment. We investigate the causal mechanisms of land use change in a mountain catchment important for regional water supplies in the southwestern Cape of South Africa. Uniquely, we include nature-based recreational land use types typically excluded from land abandonment studies. We repeated a structured questionnaire originally conducted with landowners 38 years previously and analysed orthoimages from 1948, 1972 and 2014. To identify and contextualise causal mechanisms of change we used thematic analysis and generated narratives from in-depth interviews with landowners. The land use system in 1948 and 1972 was dominated by livestock-based, subsistence agriculture and small-scale farming. This transitioned to agricultural intensification on the lowlands and small portions of the mountains and the utilisation of mountains for non-economic nature-based recreation and ecotourism. The use of frequent small, low intensity-controlled fires was prevalent in the past. More recently, fires have been actively suppressed resulting in the build-up of biomass and the development of infrequent, extensive, high-intensity wildfires. Land use change in the mountains was driven primarily by socio-economic drivers, including socio-economic benefits related to globalisation and economic growth, and not by concerns over land degradation or resource depletion. Our findings support evidence that shows that people’s responses to economic opportunities drive local determinants of land use change and highlights the importance of perceptions in driving land use transitions. We show that existing models of land abandonment are likely overly deterministic in that they do not consider social and cultural factors that may cause a landowner to continue using their land for semi-economic or non-economic reasons. While there is merit in large-scale remote sensing studies, we emphasise the importance of using mixed remote sensing and social science methods for informing models of land use change.

Suggested Citation

  • Holden, Petra B. & Ziervogel, Gina & Hoffman, M. Timm & New, Mark G., 2021. "Transition from subsistence grazing to nature-based recreation: A nuanced view of land abandonment in a mountain social-ecological system, southwestern Cape, South Africa," Land Use Policy, Elsevier, vol. 105(C).
  • Handle: RePEc:eee:lauspo:v:105:y:2021:i:c:s0264837721001526
    DOI: 10.1016/j.landusepol.2021.105429
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    References listed on IDEAS

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    1. Enrico Celio & Adrienne Grêt-Regamey, 2016. "Understanding farmers' influence on land-use change using a participatory Bayesian network approach in a pre-Alpine region in Switzerland," Journal of Environmental Planning and Management, Taylor & Francis Journals, vol. 59(11), pages 2079-2101, November.
    2. Gina Ziervogel & Anna Cowen & John Ziniades, 2016. "Moving from Adaptive to Transformative Capacity: Building Foundations for Inclusive, Thriving, and Regenerative Urban Settlements," Sustainability, MDPI, vol. 8(9), pages 1-20, September.
    3. Hinojosa, Leonith & Lambin, Eric F. & Mzoughi, Naoufel & Napoléone, Claude, 2016. "Place attachment as a factor of mountain farming permanence: A survey in the French Southern Alps," Ecological Economics, Elsevier, vol. 130(C), pages 308-315.
    4. Jonathan Newby & Rob Cramb & Somphanh Sakanphet, 2014. "Forest Transitions and Rural Livelihoods: Multiple Pathways of Smallholder Teak Expansion in Northern Laos," Land, MDPI, vol. 3(2), pages 1-22, June.
    5. Sharma, Bharat & Molden, D. & Cook, Simon, 2015. "Water use efficiency in agriculture: measurement, current situation and trends," IWMI Books, Reports H046807, International Water Management Institute.
    6. Sharma, Bharat & Molden, D. & Cook, Simon, 2015. "Water use efficiency in agriculture: measurement, current situation and trends," Book Chapters,, International Water Management Institute.
    7. McGinlay, J. & Gowing, D.J.G & Budds, J., 2017. "The threat of abandonment in socio-ecological landscapes: Farmers’ motivations and perspectives on high nature value grassland conservation," Environmental Science & Policy, Elsevier, vol. 69(C), pages 39-49.
    8. Drechsel, Pay & Heffer, P. & Magen, H. & Mikkelsen, R. & Wichelns, D., 2015. "Managing water and fertilizer for sustainable agricultural intensification," IWMI Books, Reports H046805, International Water Management Institute.
    9. Drechsel, Pay & Heffer, P. & Magen, H. & Mikkelsen, R. & Wichelns, D., 2015. "Managing water and fertilizer for sustainable agricultural intensification," IWMI Books, International Water Management Institute, number 208412.
    10. McGinlay, J. & Gowing, D.J.G. & Budds, J., 2016. "Conserving socio-ecological landscapes: An analysis of traditional and responsive management practices for floodplain meadows in England," Environmental Science & Policy, Elsevier, vol. 66(C), pages 234-241.
    11. Holman, I.P. & Brown, C & Janes, V & Sandars, D, 2017. "Can we be certain about future land use change in Europe? A multi-scenario, integrated-assessment analysis," Agricultural Systems, Elsevier, vol. 151(C), pages 126-135.
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    1. Chen, Qianru & Wu, Manyu & Xie, Hualin, 2023. "Tillage conditions or social economy? An analysis of the dominant driving force of farmland marginalization from the farmers' perspective," Land Use Policy, Elsevier, vol. 133(C).
    2. Liu, Jingming & Chen, Haibin & Hou, Xianhui & Zhang, Daojun & Zhang, Hui, 2021. "Time to adopt a context-specific and market-based compensation scheme for a new round of the Grain for Green Program," Land Use Policy, Elsevier, vol. 108(C).
    3. Xiaolei Wang & Zihan Zhao & Ximou Han & Jinliang Liu & Jessica Kitch & Yongmei Liu & Hao Yang, 2022. "Evaluating the Evolution of Soil Erosion under Catchment Farmland Abandonment Using Lakeshore Sediment," Sustainability, MDPI, vol. 14(19), pages 1-21, September.
    4. Zhixin Zhao & Aidi Huo & Qi Liu & Jianbing Peng & Ahmed Elbeltagi & Mohamed EL-Sayed Abuarab & Mohamed Said Desouky Abu-Hashim, 2023. "Spatiotemporal Variation in the Coupling Relationship between Human Activities and Soil Erosion—A Case Study in the Weihe River Basin," Sustainability, MDPI, vol. 15(14), pages 1-19, July.

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