Sapota (Achras zapota) based bio-engineering measures for slope stabilization and sustainable productive utilization in Mahi ravines, Gujarat

Authors

  • Gaurav Singh ICAR-Indian Institute of Soil and Water Conservation, RC, Vasad, Anand, Gujarat. Author
  • M.J. Kaledhonkar ICAR-Indian Institute of Soil and Water Conservation, RC, Vasad, Anand, Gujarat. Author
  • A.K. Singh ICAR-Indian Institute of Soil and Water Conservation, RC, Vasad, Anand, Gujarat. Author
  • Nandha Kumar Natrajan ICAR-Indian Institute of Soil and Water Conservation, RC, Vasad, Anand, Gujarat. Author
  • Saswat Kumar Kar ICAR-Indian Institute of Soil and Water Conservation, Research Centre, Sunabeda- 763002, District-Koraput, Odisha, India. Author
  • B.K. Rao ICAR-Indian Institute of Soil and Water Conservation, RC, Ballari-583104, Karnataka. Author
  • V.D. Kakade ICAR-National Institute of Abiotic Stress Management, Baramati-413115, Maharashtra. Author
  • Raj Kumar ICAR-Central Soil Salinity Research Institute, Karnal-132001, Haryana. Author
  • Dinesh Jinger ICAR-Indian Institute of Soil and Water Conservation, RC, Vasad, Anand, Gujarat. Author
  • D. Dinesh ICAR-Indian Institute of Soil and Water Conservation, RC, Vasad, Anand, Gujarat. Author
  • M. Madhu ICAR-Indian Institute of Soil and Water Conservation, Dehradun-248195, Uttarakhand Author

DOI:

https://doi.org/10.53550/ijsc.v53.i1.186

Keywords:

Agroforestry, Erosion Control, Ravine Land Management, Sapota Intercropping, Trenching, Terracing, Water Productivity

Abstract

A long-term field experiment (2010-2022) was conducted on 14% sloped ravine lands along the Mahi River in Gujarat to evaluate agroforestry systems integrated with bio-engineering techniques for runoff conservation, soil loss reduction, and productivity enhancement. Five treatments were tested on 72 × 24 m plots: (i) cowpea + castor on bench terraces (CCBT), (ii) sapota + cowpea + castor on bench terraces (SCCBT), (iii) sapota on bench terraces (SBT), (iv) sapota with staggered trenches on slope (SSTS) and (v) sapota on untreated slope (SS - control). Bench terraces were subdivided to reduce slope length; staggered trenching involved 96 trenches (2 × 0.5 × 0.5) m. Tree spacing was 8 × 8 m; Cowpea and Castor were intercropped at 0.3 m spacing. Data on plant growth, yield, runoff, and soil loss were collected using a randomized block design with four replications for crop components, while runoff and soil loss were monitored in a single replication. Results showed that SCCBT achieved the best outcomes: maximum sapota height (4.58 m), stem diameter (13.06 cm), fruit count (256/plant), fruit yield (3672 kg ha-1), and crop equivalent yield (3953 kg ha-1). It also recorded the highest energy efficiency (362%), lowest runoff (96.83% reduction), and soil loss within permissible limits (9.27 t ha-1yr-1). Water productivity peaked at 6.54 kg-1ha-1mm, with a net return of ` 41,726 ha-1yr-1. These results demonstrate that the sapota + cowpea + castor system on bench terraces is the most effective bio-engineering solution for slope stabilization and sustainable land use in the Mahi ravines.

References

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Published

2025-06-09

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How to Cite

Sapota (Achras zapota) based bio-engineering measures for slope stabilization and sustainable productive utilization in Mahi ravines, Gujarat. (2025). Indian Journal of Soil Conservation, 53(1), 36-43. https://doi.org/10.53550/ijsc.v53.i1.186

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