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Optimization of Mineral Nutrition in a Coconut Plantation Taking an Experimental Approach in situ

Published online by Cambridge University Press:  03 October 2008

X. Bonneau
Affiliation:
CIRAD-CP, Avenue du Val de Montferrand, BP 5035-34032 Montpellier Cedex 1. France

Summary

Over several decades agronomists have developed a mineral nutrition management method for perennial oil crops based on leaf analysis combined with reference field trials. This method has been used in a coconut plantation on the peats of the east coast of Sumatra to optimize mineral nutrition in a very short time, at minimum cost and with maximum reliability, through successive adjustments of the fertilizer schedules. Two reference trials were set up to study a wide range of mineral nutrients assumed to be deficient on this area. Further experiments were set up as new nutritional problems occurred at the plantation, and as soon as the first results were obtained from these two trials. In this way, the iron and copper deficiency problems at the plantation were dealt with satisfactorily taking an experimental approach. New experiments were set up recently to test the hypothesis of a silicon deficiency. The fertilization schedules for the commercial plantation were developed by successive adjustments based on the trial results. Leaf analysis data showed that the coconut palms in the commercial plots always complied with the experimental models. In addition to being rapid and reliable, this method was also cost-effective, especially when larger areas were involved.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1996

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References

REFERENCES

Andriesse, J. P. (1974). The characteristics, agricultural potential and reclamation problems of tropical lowland peats in South East Asia. Amsterdam, The Netherlands: Koninklijk Institut Voor de Tropen.Google Scholar
Bonneau, X. (1993). Ajustement d'un barème de fumure cocotier par approche expérimentale. In Proceedings of the EUROCOCO Conference, September 1993. 106–115. Montpellier, France: EUROCOCO.Google Scholar
Bonneau, X., Ochs, R., Qusairi, L. & Nurlaini, Lubis L. (1993). Nutrition minérale des cocotiers hybrides sur tourbe, de la pépinière à l'entrée en production. Oléagineux 48:926.Google Scholar
Daniel, C. (1984). Mise en place d'expériences en plantations de palmiers à huile ou de cocotiers. I. Principes généraux. II Dispositions pratiques. Oléagineux 39:412 and 6972.Google Scholar
Dolmat, M. T., Hassan, A. H. & Zakaria, Z. Z. (1982). Development of peat soil for oil palm planting in Malaysia. Johor Barat Agricultural project as a case study. PORIM Bulletin 5:117.Google Scholar
Joseph, K. T., Chew, W. Y. & Tay, T. H. (1974). Potential of peat for agriculture. Serdang, Selangor, Malaysia: MARDI.Google Scholar
Kee, N. S. & Tan, Y. P. (1974). Nutritional complexes of oil palm planted on peat in Malaysia. Foliar symptoms, nutrient composition and yield. Oléagineux 29:114.Google Scholar
Ochs, R. (1985). Stratégie de mise en oeuvre du contrôle nutritionnel des plantes pérennes. Oléagineux 40:583594.Google Scholar
Ochs, R. & Bonneau, X. (1988). Symptômes de carence en cuivre et en fer du cocotier sur tourbe en Indonésie. Oléagineux 43:455457.Google Scholar
Ochs, R., de Bengy, A. & Bonneau, X. (1992). Etablissement d'une cocoteraie sur tourbe profonde. Oléagineux 47:922.Google Scholar
Ochs, R., Bonneau, X. & Qusairi, L. (1993). Nutrition minérale en cuivre des cocotiers hybrides sur tourbe. Oléagineux 48:6576.Google Scholar
Singh, G., Tan, Y. P., Padman, R. C. V. & Lee, F. W. (1987). Experiences on the cultivation and management of oil palm on deep peat in United Plantations Berhad. Planter 733:143157.Google Scholar