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Agronomy & Crop Ecology

Eggshell powder as calcium source on growth and yield of groundnut (Arachis hypogaea L.)

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Pages 413-420 | Received 27 Feb 2021, Accepted 30 Aug 2022, Published online: 13 Sep 2022

References

  • Alva, A. K., Gascho, G. J., & Guang, Y. (1989). Gypsum material effects on peanut and soil calcium. Communications in Soil Science and Plant Analysis, 20(17), 1727–1744. https://doi.org/10.1080/00103628909368179
  • Arabhosseini, A., & Faridi, H. (2018). Application of eggshell wastes as valuable and utilizable products: A review. Research in Agricultural Engineering, 64(2), 104–114. https://doi.org/10.17221/6/2017-RAE
  • Bledsoe, R. W., Comar, C. L., & Harris, H. C. (1949). Absorption of radioactive calcium by the peanut fruit. Science, 109(2831), 329–330. https://doi.org/10.1126/science.109.2831.329
  • Cheema, S. S., Dhaliwal, B. K., & Sahota, T. S. (1991). Agronomy: Theory and digest. Kalyani Publisher.
  • Daughtry, J. A., & Cox, F. R. (1974). Effect of calcium source, rate, and time of application on soil calcium level and yield of peanuts (Arachis hypogaea L). Peanut Science, 1(2), 68–72. https://doi.org/10.3146/i0095-3679-1-2-8
  • FAOSTAT - Food and Agriculture Organization of the United Nations Statistical Databases. 2020. https://www.fao.org/faostat/en/#data/QCL
  • Gascho, G. J., & Davis, J. G. (1994). Mineral nutrition. In J. Smart (Ed.), The groundnut crop - A scientific basis for improvement (pp. 214–254). Chapman and Hall.
  • Gascho, G. J., Hodges, S. C., Alva, A. K., Csinos, A. S., & Mullinix, B. G.,sJr. (1993). Calcium source and time of application for runner and Virginia peanuts. Peanuts Science, 20, 31–35. https://doi.org/10.3146/i0095-3679-20-1-9
  • Gashti, A. H., Vishekaei, M. N. S., & Hosseinzadeh, M. H. (2012). Effect of potassium and calcium application on yield, yield components, and qualitative characteristics of peanut (Arachis hypogaea L.) in Guilan Province, Iran. World Applied Sciences Journal, 16(4), 540–546.
  • GRDC. (2017). GrowNotes: Peanuts. Section 5. Nutrition and fertilizer. Grains Research & Development Corporation. https://grdc.com.au/resources-and-publications/grownotes/scrop-agronomy/peanutgrownotes
  • Hartzog, D., & Adams, F. (1973). Fertilizer, gypsum, and lime experiments with peanuts in Alabama, 1967-1972. Agricultural Experiment Station, Auburn University.
  • Holmes, J. D., Sawyer, J. E., Kassel, P., & Ruiz Diaz, D. (2011). Using ground eggshells as a liming material in corn and soybean production. Crop Management, 10, 1–12. https://doi.org/10.1094/CM-2011-1129-01-RS
  • Kamara, E. G. (2010). Effect of calcium and phosphorus fertilization on the growth, yield and seed quality of two groundnut varieties (Master’s thesis, Kwame Nkrumah University of Science and Technology). http://129.122.16.11/bitstream/123456789/199/1/Binder1.pdf
  • King’ori, A. M. (2011). A Review of the Uses of Poultry Eggshells and Shell Membranes. International Journal of Poultry Science, 10(11), 908–912. https://doi.org/10.3923/ijps.2011.908.912
  • Kurniastuti, T. (2018). Effect of rice husk ash and eggshell on the growth and yield of red chili (Capsicum annuum L.). Journal Academic Research and Science, 3(1), 46–52.
  • Marschner, P. (2012). Mineral nutrition of higher plants (3rd ed.). Elsevier.
  • Mizuno, S. (1959). Physiological studies on fructification of peanut: 1. Distribution of radioactive calcium administered to the fruiting zone on the fruiting organ. Proceedings of Crop Science Society of Japan, 28(1), 83–85.
  • Ntare, B. R., Diallo, A. T., Ndjeunga, A. T., & Waliyar, F. (2008). Groundnut Seed Production Manual. Patancheru 502324, Andhra Pradesh, India. International Crops Research Institute for the Semi-Arid Tropics (ICRISAT). OEC. https://oec.world/en/profile/hs92/ground-nuts
  • Ojiewo, C. O., Janila, P., Bhatnagar-Mathur, R. K., et al. (2020). Advances in crop improvement and delivery research for nutritional quality and health benefits of groundnut (Arachis hypogaea L.). Frontiers in Plant Science, 11, 29. https://doi.org/10.3389/fpls.2020.00029
  • Park, H. J., Jeong, S. W., Yang, J. K., Kim, B. J., & Lee, S. M. (2007). Removal of heavy metals using waste eggshell. Journal of Environmental Sciences, 19, 1436–1441. http://dx.doi.org/10.1016/S1001-0742(07)60234-4
  • Pattee, H. E., & Stalker, H. T. (1995). Advances in Peanut Science. American Peanut Research and Education Society, Inc.
  • Radha, T., & Karthikeyan, G. (2019). Hen eggshell waste as fertilizer for the growth of phaseolus vulgaris (Cowpea seeds). Research Journal of Life Sciences, Bioinformatics, Pharmaceutical and Chemical Sciences, 51(1), 398–406.
  • Singh, A. L., & Chaudhari, V. (2007). Macronutrient requirement of groundnut: Effects on uptake of macronutrients. Indian Journal of Plant Physiology, 12(1), 72–77.
  • Skelton, B. J., & Shear, G. M. (1971). Calcium translocation in peanut (Arachis hypogaea L.). Agronomy Journal, 63, 409–412. https://doi.org/10.2134/agronj1971.00021962006300030018x
  • Taufique, T., Shiam, I. H., Mehraj, H., Nishizawa, T., & Uddin, A. F. M. J. (2014). Performance of Bari tomato 14 to different levels chicken eggshell as a source of calcium. International Journal of Business, Social and Scientific Research, 2(2), 148–152.
  • Ullah, M. A., Hyder, S. I., & Ahmed, R. (2019). Effect of gypsum application on groundnut growth and nodules under rain fed condition. International Journal of Research in Agriculture and Forestry, 6(1), 8–13.
  • Vietnam Ministry of Agricultural and Rural Development. (2011). The Vietnam National Technical Regulation on Testing for Value of Cultivation and Use of Groundnut Varieties -. QCVN 01-57:2011/BNNPTNT.
  • Walker, M. E., & Keisling, T. C. (1978). Response of five peanut cultivars to gypsum fertilization on soils varying in calcium content. Peanut Science, 5, 57–60. https://doi.org/10.3146/i0095-3679-5-1-14
  • Wiersum, L. K. (1951). Water transport in the xylem as related to calcium uptake by groundnuts (Arachis hypogaea L.). Plant and Soil, 3, 160–169. https://doi.org/10.1007/BF01676372