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Agroforestry for soil and water conservation in the western Himalayan Valley Region of India 1. Runoff, soil and nutrient losses

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Abstract

Erosion losses were investigated in a field experiment, from 90 × 15 m erosion plots at 4% slope in the western Himalayan valley region of India. The plots were planted with Leucaena leucocephala and Eucalyptus hybrid, either as block plantation or in alley farming with maize (Zea mays), Chrysopogon fulvus grass or turmeric (Curcuma longa). The treatments also included contour planting of sole maize, sole Chrysopogon fulvus grass and a clean weeded cultivated fallow. During the nine year study period, the average annual monsoon rainfall was about 1000 mm and it caused 347 mm runoff and 39 Mg ha-1 soil loss per year from fallow plots. The runoff and soil loss were reduced by 27% and 45% by contour cultivation of maize. Contour tree-rows or leucaena hedges reduced the runoff and soil loss by 40% and 48%, respectively, over the maize plot, reducing soil loss to about 12.5 Mg ha-1. This reduction in erosion was primarily due to the barrier effect of tree or hedgerows and micro-terraces formed through sediment deposition along the contour barriers. Such vegetative measures, that are productive while being protective, offer viable alternative for erosion control in areas with gentile slopes of the valley region. High density block plantations of eucalyptus and leucaena almost completely controlled erosional losses and can be recommended for steeper slopes that are vulnerable to heavy erosion.

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References

  • Alegre JC and Rao MR (1996) Soil and water conservation on contour hedging in the humid tropic of Peru. Agriculture Ecosystems and Environment 57: 17–25

    Article  Google Scholar 

  • Banda AZ, Meghembe JA, Ngugi DN and Chome VA (1994) Effect of intercropping maize and closely spaced Leucaena hedgerows on soil conservation and maize yield on a steep slope at Ntcheu, Malawai. Agroforestry Systems 27: 19–22

    Article  Google Scholar 

  • Bregman L (1993) Comparison of agroforestry systems in the Himalayan region. Agroforestry Systems 21: 101–116

    Article  Google Scholar 

  • Chinamani S and Rege ND (1965) Tripsacum laxum — A promising grass for humid areas. Agric Res 5: 154

    Google Scholar 

  • Dhruva Narayana VV and Ram Babu (1983) Estimation of soil erosion in India. J Irrig and Drainage Engg ASCE 109: 419–433

    Article  Google Scholar 

  • Grewal SS, Juneja ML, Singh K and Singh S (1994) A comparison of two agroforestry systems for water and nutrient conservation on degraded land. Soil Technology 7: 145–153

    Article  Google Scholar 

  • Jackson ML (1962) Soil Chemical Analysis. Prentice-Hall, Englewood Cliffs, NJ

    Google Scholar 

  • Kang BT, Reynolds L and Atta-Krah AN (1990) Alley farming. Advances in Agronomy 43: 315–359

    Article  Google Scholar 

  • König D (1992) The potential of agroforestry methods for erosion control in Rwanda. Soil Technology 5: 167–176

    Article  Google Scholar 

  • Lal R (1989) Agroforestry systems and soil surface management of a tropical alfisol. Agroforestry Systems 8: 97–111

    Article  Google Scholar 

  • Mittal SP and Singh P (1989) Intercropping field crops between rows of Leucaena leucocephala under rainfed conditions in northern India. Agroforestry Systems 8: 165–172

    Article  Google Scholar 

  • MOA (1994) Draft report on Status of land degradation in India. Department of Agriculture and Cooperation, Ministry of Agriculture, New Delhi

    Google Scholar 

  • Moench M (1991) Soil erosion under a successional agroforestry sequence: A case study from Idukki District Kerala, India. Agroforestry Systems 15: 31–50

    Article  Google Scholar 

  • Narain P, Singh G and Joshi P (1992) Technological needs of vegetative land protection measures. Proc. 7th ISCO Conference, held in Sydney, Australia 28–30th Sept., 1992, pp 638–643

  • Narain P, Khybri ML, Tomar HPS and Sindhwal NS (1994) Estimation of runoff, soil loss and USLE parameters for Doon valley, Indian J Soil Cons 22: 1–9

    Google Scholar 

  • Rao MR, Ong CK, Pathak P and Sharma MM (1991) Productivity of annual cropping and agroforestry systems on a shallow afisol in semiarid India. Agroforestry Systems 10: 51–63

    Article  Google Scholar 

  • Singh G, Ram Babu, Narain P and Abrol IP (1992) Soil erosion rates in India. J Soil and Water Cons 47: 97–99

    Google Scholar 

  • Singh G, Venkataramanan C, Sastry G and Joshie BP (1990) Manual of soil and water conservation practices. Oxford and IBH Co. Pvt. Ltd. New Delhi, p 52

    Google Scholar 

  • Singh RP, Ong CK and Saharan N (1989) Above and below ground interactions in alley cropping in semiarid India. Agroforestry Systems 9: 259–274

    Article  Google Scholar 

  • Tacio HP (1993) Sloping Agricultural Land Technology (SALT); a sustainable agroforestry scheme for the uplands. Agroforestry Systems 22: 145–152

    Article  Google Scholar 

  • Wiersum KF (1985) Effects of various vegetation layers in an Acacia auriculiformis forest plantation on surface erosion in Java, Indonesia. In: El-Swaify SA et al. (eds) Soil Erosion and Conservation, pp 79–89. Soil Conservation Society of America, Ankeny, Iowa

    Google Scholar 

  • Wiersum KF (1991) Soil erosion and conservation in agroforestry systems. In: Avery ME, Cannell MGR and Ong C (eds) Biophysical Research for Asian Agroforestry, pp 210–229. Winrock International, USA

    Google Scholar 

  • Wischmeier WH and Smith DD (1978) Predicting rainfall-erosion losses from crop land east of the Rocky Mountains — A guide for selection of practices for Soil and Water Conservation. USDA Agril. Hand Book No 282

  • Young A (1989) Agroforestry for Soil Conservation, CAB International, Walling Ford, Oxon, UK

    Google Scholar 

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Narain, P., Singh, R.K., Sindhwal, N.S. et al. Agroforestry for soil and water conservation in the western Himalayan Valley Region of India 1. Runoff, soil and nutrient losses. Agroforestry Systems 39, 175–189 (1997). https://doi.org/10.1023/A:1005916713956

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