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Regional Farmers’ Perception and Societal Issues in Vineyards Affected by High Erosion Rates

Author

Listed:
  • Artemi Cerdà

    (Soil Erosion and Degradation Research Group, Department of Geography, Valencia University, Blasco Ibàñez, 28, 46010 Valencia, Spain)

  • Jesús Rodrigo-Comino

    (Soil Erosion and Degradation Research Group, Department of Geography, Valencia University, Blasco Ibàñez, 28, 46010 Valencia, Spain
    Department of Physical Geography, Trier University, D-54286 Trier, Germany)

Abstract

We explore the current situation in a viticultural region in Eastern Spain from a holistic and multifaceted research approach, which allowed us to understand the biophysical conditions, economic cost, social impact, and perception of the farmers’ community to the use of catch crops. A survey of the perception of the farmers, and an assessment of the biophysical impact of catch crops (CC) and tillage (C = Control plot) on soil organic matter, bulk density, infiltration capacity (single ring infiltrometer), and runoff generation and soil erosion (rainfall simulation experiments) was carried out. Two representative fields as study sites were selected in Les Alcusses valley, within Els Alforins wine production region. The results show that the use of CC increased soil organic matter, favored higher infiltration rates and runoff generation was delayed. Moreover, runoff rates and soil erosion were lowered. The perception of the farmers was mainly against the use of catch crops due to their view as it being ‘dirty’, their cost, and the loss of their reputation and respect by other farmers. Our survey proves that the farmers would accept the catch crops if a subsidy of 76.56 € ha −1 on average would be paid. Farmers see the use of a catch crop more as a benefit for the health of the Planet than for themselves. To achieve land degradation neutrality, education and dissemination programs should be developed to teach and inform the farmers of their key role in the proper management of vineyards.

Suggested Citation

  • Artemi Cerdà & Jesús Rodrigo-Comino, 2021. "Regional Farmers’ Perception and Societal Issues in Vineyards Affected by High Erosion Rates," Land, MDPI, vol. 10(2), pages 1-18, February.
  • Handle: RePEc:gam:jlands:v:10:y:2021:i:2:p:205-:d:501269
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    References listed on IDEAS

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    1. Dingde Xu & Zhixing Ma & Xin Deng & Yi Liu & Kai Huang & Wenfeng Zhou & Zhuolin Yong, 2020. "Relationships between Land Management Scale and Livelihood Strategy Selection of Rural Households in China from the Perspective of Family Life Cycle," Land, MDPI, vol. 9(1), pages 1-15, January.
    2. Andrzej Sałata & Gaetano Pandino & Halina Buczkowska & Sara Lombardo, 2020. "Influence of Catch Crops on Yield and Chemical Composition of Winter Garlic Grown for Bunch Harvesting," Agriculture, MDPI, vol. 10(4), pages 1-14, April.
    3. Valdemir Antoneli & Ana Caroline Mosele & João Anésio Bednarz & Manuel Pulido-Fernández & Javier Lozano-Parra & Saskia Deborah Keesstra & Jesús Rodrigo-Comino, 2019. "Effects of Applying Liquid Swine Manure on Soil Quality and Yield Production in Tropical Soybean Crops (Paraná, Brazil)," Sustainability, MDPI, vol. 11(14), pages 1-11, July.
    4. Abhijeet Ravankar & Ankit A. Ravankar & Michiko Watanabe & Yohei Hoshino & Arpit Rawankar, 2020. "Development of a Low-Cost Semantic Monitoring System for Vineyards Using Autonomous Robots," Agriculture, MDPI, vol. 10(5), pages 1-19, May.
    5. United Nations, 2016. "The Sustainable Development Goals 2016," Working Papers id:11456, eSocialSciences.
    6. Ilaria Zambon & Artemi Cerdà & Sirio Cividino & Luca Salvati, 2019. "The (Evolving) Vineyard’s Age Structure in the Valencian Community, Spain: A New Demographic Approach for Rural Development and Landscape Analysis," Agriculture, MDPI, vol. 9(3), pages 1-13, March.
    7. Laura Onofri & Samuele Trestini & Vasco Boatto, 2020. "Who Is Afraid of Biotic Threats? An Econometric Analysis of Veneto Wine Grape Farmers’ Propensity to Insure," Agriculture, MDPI, vol. 10(8), pages 1-9, August.
    8. Agata Novara & Valentina Catania & Marco Tolone & Luciano Gristina & Vito Armando Laudicina & Paola Quatrini, 2020. "Cover Crop Impact on Soil Organic Carbon, Nitrogen Dynamics and Microbial Diversity in a Mediterranean Semiarid Vineyard," Sustainability, MDPI, vol. 12(8), pages 1-18, April.
    9. Saskia Keesstra & Gerben Mol & Jan De Leeuw & Joop Okx & Co Molenaar & Margot De Cleen & Saskia Visser, 2018. "Soil-Related Sustainable Development Goals: Four Concepts to Make Land Degradation Neutrality and Restoration Work," Land, MDPI, vol. 7(4), pages 1-20, November.
    10. Matthias Böldt & Friedhelm Taube & Iris Vogeler & Thorsten Reinsch & Christof Kluß & Ralf Loges, 2021. "Evaluating Different Catch Crop Strategies for Closing the Nitrogen Cycle in Cropping Systems—Field Experiments and Modelling," Sustainability, MDPI, vol. 13(1), pages 1-22, January.
    11. Carolina Perpiña Castillo & Eloína Coll Aliaga & Carlo Lavalle & José Carlos Martínez Llario, 2020. "An Assessment and Spatial Modelling of Agricultural Land Abandonment in Spain (2015–2030)," Sustainability, MDPI, vol. 12(2), pages 1-23, January.
    12. Saskia Visser & Saskia Keesstra & Gilbert Maas & Margot de Cleen & Co Molenaar, 2019. "Soil as a Basis to Create Enabling Conditions for Transitions Towards Sustainable Land Management as a Key to Achieve the SDGs by 2030," Sustainability, MDPI, vol. 11(23), pages 1-19, November.
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    1. Saskia Keesstra & Saskia Visser & Margot De Cleen, 2021. "Achieving Land Degradation Neutrality: A Robust Soil System Forms the Basis for Nature-Based Solutions," Land, MDPI, vol. 10(12), pages 1-4, November.
    2. Saskia Keesstra & Tamara Metze & Linda Ofori & Marleen Buizer & Saskia Visser, 2022. "What Does the Circular Household of the Future Look Like? An Expert-Based Exploration," Land, MDPI, vol. 11(7), pages 1-15, July.

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