COMPARATIVE STUDY OF THE EFFECTS OF ORGANIC AND INORGANIC FERTILIZERS ON GROWTH OF SPINACIA OLERACEA L.

Authors

  • Shubh Patel
  • Nainesh Modi
  • Milan Vala

DOI:

https://doi.org/10.56588/iabcd.v2i1.146

Keywords:

Spinacia oleracea L., Organic farming, Inorganic farming

Abstract

The comparative effects of organic and inorganic fertilisers on spinach are the basis of this study. Biological insecticides and fertilisers made from plant or animal waste are used in organic farming as a farming method. Inorganic fertilisers such as muriate of potash, urea, urea-ammonium nitrate mixtures, and anhydrous ammonia (potassium chloride). The experiment was conducted on Spinacia olearcea L. and various parameters such as root length, shoot length, leaf length, root weight, shoot weight, leaf weight and number of leaves were considered in this experiment. After meticulous observations and study, it was concluded that organic farming showed better results in terms of growth as compared to inorganic farming of spinach with chemical fertiliser.

References

Bremner, J. M. (1996). Recent research on problems in the use of urea as a nitrogen fertilizer. In Nitrogen Economy in Tropical Soils: Proceedings of the International Symposium on Nitrogen Economy in Tropical Soils, held in Trinidad, WI, January 9–14, 1994 (pp. 321-329). Springer Netherlands.

Cho, M. J., Howard, L. R., Prior, R. L., & Morelock, T. (2008). Flavonoid content and antioxidant capacity of spinach genotypes determined by high‐performance liquid chromatography/mass spectrometry. Journal of the Science of Food and Agriculture, 88(6), 1099-1106.

Ciesielczuk, T., Rosik-Dulewska, C., Poluszyńska, J., & Sławińska, I. (2017). Acute toxicity of experimental fertilizers made of blood meal, spent coffee ground and biomass ash. Journal of Water and Land Development, 34(1), 95.

El-Kamony, M. F., Ahmed, M. K., Bahr, A. A., & Kabesh, M. O. (2000). Utilization of bio–fertilizers in field crop production. Egypt, Sci. J. Appl. Sci, 15(11), 137-149.

Heal, O. W. (1997). Plant litter quality and decomposition: an historical overview. Driven by nature, plant litter quality and decomposition.

Roberts, J. L., & Moreau, R. (2016). Functional properties of spinach (Spinacia oleracea L.) phytochemicals and bioactives. Food & function, 7(8), 3337-3353.

Toledo, M. E. A., Ueda, Y., Imahori, Y., & Ayaki, M. (2003). L-ascorbic acid metabolism in spinach (Spinacia oleracea L.) during postharvest storage in light and dark. Postharvest biology and technology, 28(1), 47-57.

https://dutchmeadowsfarm.com/blog/fresh-organic-spinach-faq-facts-benefits-and-6-recipes#:~:text=Spinach%20is%20a%20wonderful%20source,system%20and%20give%20you%20energy

https://mowbot.com/blog/organic-fertilizer-vs-inorganic/#:~:text=Both%20organic%20and%20inorganic%20fertilizers,slower%2C%20more%20naturally%20and%20healthily.

https://www.mdpi.com/20770472/10/11/544#:~:text=The%20continuous%20and%20steady%20application,8%2C9%2C10%5D.

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Published

15.05.2023

How to Cite

Patel, S., Modi, N., & Vala, M. (2023). COMPARATIVE STUDY OF THE EFFECTS OF ORGANIC AND INORGANIC FERTILIZERS ON GROWTH OF SPINACIA OLERACEA L. International Association of Biologicals and Computational Digest, 2(1), 295–300. https://doi.org/10.56588/iabcd.v2i1.146

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