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Research Article

Comparative Evaluation of Fe-Impregnated Filter Paper and Some Conventional Phosphorus Extractants for Assessing Phosphorus Availability in Some Amended Soils of Southwest Nigeria

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Pages 1767-1789 | Received 04 Aug 2021, Accepted 27 Mar 2023, Published online: 12 May 2023

References

  • Adepetu, J. A.1990. Soil-test data interpatation soil-testing programme. Paper presented at national workshop on soil testing service for efficient fertilizer use in Nigeria. Moor plantation, Ibadan.
  • Adepetu, J. A., and B. A. Adebusuyi 1985. Available data base for soil testing programme in Nigeria and further requirement for its development. Paper presented at workshop on soil fertility survey of Nigeria. Jos, Jos, Nigeria.
  • Adepetu, J. A., and R. B. Corey. 1975. Organic phosphorus as a predictor of plant available phosphorus in Southern Nigeria. Journal of Soil Science 122 (3):159–64. doi:10.1097/00010694-197609000-00006.
  • Azeez, J. O., U. U. Inyang, and O. C. Olubuse. 2013. Determination of appropriate soil test extractant for available phosphorus in Southwestern Nigeria soils. Communications in Soil Science & Plant Analysis 44 (10):1540–56. doi:10.1080/00103624.2013.768259.
  • Bache, B. W., and C. Ireland. 1980. Desorption of phosphate from soils using anion exchange resins. Journal of Soil Science 31:297–306. doi:10.1111/j.1365-2389.1980.tb02082.x.
  • Bouyoucous, G. H. 1951. A recalibration of the hydrometer method for making mechanical analysis of soils 1. Agronomy Journal 43 (9):434–38. doi:10.2134/agronj1951.00021962004300090005x.
  • Bray, R. H., and L. T. Kurtz. 1945. Determination of total, organic and available forms of phosphorus in soils. Soil Science 59 (1):39–45. doi:10.1097/00010694-194501000-00006.
  • Chang, C. W., D. A. Laird, M. J. Mausbach, and C. R. Hurburgh. 2014. Near-infrared reflectance spectroscopy—principal components regression analyses of soil properties. Soil Science Society of America 65 (2):480–90. doi:10.2136/sssaj2001.652480x.
  • Chardon, W. J., R. G. Menon, and S. H. Chien. 1996. Iron oxide-impregnated filter paper (Pi test): A review of its development and methodological research. Nutrient Cycling in Agroecosystems 46 (1):41–51. doi:10.1007/BF00210223.
  • David, B., M. Darry, P. Roger, and S. Duncan 2017. Introduction to genstat for windows 19th Edition. VSN International, 2 Amberside, Wood Lane, Hemel Hempstead, Hertfordshire HP2 4TP, UK.
  • Gikonyo, E. W., A. R. Zaharah, M. M. Hanafi, and A. R. Anuar. 2008. Evaluation of phosphorus pools and fractions in an acid tropical soil recapitalized with different phosphorus sources. Communications in Soil Science & Plant Analysis 39:1385–405. doi:10.1080/00103620802004151.
  • Hao, X., F. Godlinski, and C. Chang. 2008. Distribution of phosphorus forms in soil following long-term continuous and discontinuous cattle manure applications. Soil Science Society of American Journal 72 (1):90_97. doi:10.2136/sssaj2006.0344.
  • Hunter, A. H. 1974. Tentative ISFEJ soil extractant procedure: International soil fertility evaluation and improvement project. Raleigh: North Carolina State University.
  • Indiati, R., and U. Neri. 2004. Time-dependent phosphorus extractability from soils treated with different fertilizer phosphorus sources. Communications in Soil Science & Plant Analysis 35:1741–55. doi:10.1081/CSS-120038566.
  • Jackson, M. L. 1964. Soil chemical analysis practice Hall Inc, 86–92. New York: Englewood Cliffs.
  • Jackson, M. L. 1973. Soil chemical analysis practice Hall Inc. 86-92. New York: Englewood Cliffs.
  • Kumaragamage, D., O. O. Akinremi, J. Heard, and J. Heard. 2007. Agronomic and environmental soil test phosphorus in manured and non-manured Manitoba soils. Canadian Journal of Soil Science 87 (1):73–83. doi:10.4141/S06-030.
  • Kumar, V., M. D. A. Bolland, and R. J. Gilkes. 1994. Comparison of the Pi, Colwell, Bray 1, calcium acetate lactate (CAL) and Truog soil phosphorus test for predicting growth of oats, barley, triticale and clover in the field in lateritic soils fertilised with superphosphate and rock phosphate. Fertilizer Research 37 (2):115–24. doi:10.1007/BF00748552.
  • Mallarino, A. P. 1997. Interpretation of soil phosphorus tests for corn in soils with varying pH and calcium carbonate content. Journal of Agricultural Production 10 (1):163–67. doi:10.2134/jpa1997.0163.
  • McDowell, R. W., A. N. Sharpley, and J. A. Kleinman. 2004. Amounts, forms, and solubility of phosphorus in soils receiving manure. Soil Science Society of America Journa3l 68 (6):2048–57. doi:10.2136/sssaj2004.2048.
  • Mclean, E. O. 1982. Methods of Soil Analysis, Part 2. In Soil pH and lime requirement, ed. by A. Klute, G.S. Campbell, and R.D. Jackson, 199–224. Madison: American Society of Agronomy.
  • Mehlich, A. 1953. Determination of P, Ca, Mg, K, Na, and NH4. North Carolina Soil Test Division (Mimeo). Raleigh, NC.
  • Menon, R. G., and S. H. Chien. 1995. Soil testing for available phosphorus in soils where phosphate rock-based fertilizers are used. Fertilizer Research 41:179–87. doi:10.1007/BF00748307.
  • Menon, R. G., S. H. Chien, and L. L. Hammond. 1990. Development and evaluation of the Pi soil test for plant-available phosphorus. Communications in Soil Science & Plant Analysis 21:1131–50. doi:10.1080/00103629009368295.
  • Menon, R. G., L. L. Hammond, and H. A. Sissingh. 1989. Determination of plant-available phosphorus by the iron hydroxide-impregnated filter paper (Pi) soil test. Soil Science Society of America Journal 53:110–15. doi:10.2136/sssaj1989.03615995005300010020x.
  • Murphy, J. A. M. E. S., and J. P. Riley. 1962. A modified single solution method for the determination of phosphate in natural waters. Analytica chimica acta 27:31–36.
  • Myers, R. G., G. M. Pierzynski, and S. J. Thien. 1997. Iron oxide sink method for extracting soil phosphorus: Paper preparation and use. Soil Science Society of America Journal 61:1400–07. doi:10.2136/sssaj1997.03615995006100050017x.
  • Myers, R. G., A. N. Sharpley, S. J. Thien, and G. M. Pierzynski. 2005. Ion-sink phosphorus extraction methods applied on 24 soils from the continental USA. Soil Science Society of America Journal 69:511–21. doi:10.2136/sssaj2005.0511.
  • Nelson, D. W., and L. E. Sommer. 1982. A simple digestion procedure for estimation of total nitrogen in soil and sediments. Journal of Environmental Quality 1 (4):423–25. doi:10.2134/jeq1972.00472425000100040020x.
  • Neyroud, J. A., and P. Lischer. 2003. Do different methods used to estimate soil phosphorus availability across Europe give comparable results? Journal of Plant Nutrition & Soil Science 166 (4):422–31. doi:10.1002/jpln.200321152.
  • Olsen, S. R., C. V. Cole, F. S. Watanabe, and L. A. Dean. 1954. Estimation of available phosphorus in soils by extraction with sodium bicarbonate. Washington D.C: U.S. Government Printing Office. USDA Circular 939.
  • Raven, K. P., and L. R. Hossner. 1993. Phosphate desorption quantity-intensity relationships in soil. Soil Science Society of America Journal 57 (6):1505–08. doi:10.2136/sssaj1993.03615995005700060018x.
  • Sarkar, D., and G. A. O’Connor. 2001. Using Pi soil test to estimate available phosphorus in biosolids-amended soil. Communications in Soil Science & Plant Analysis 32 (13–14):2049–63. doi:10.1081/CSS-120000268.
  • Sharpley, A. N., and S. J. Smith. 1994. Wheat tillage and water quality in the Southern plains. Soil and Tillage Research 30 (1):33–48. doi:10.1016/0167-1987(94)90149-X.
  • Shin, H., H. S. Shin, G. R. Dewbre, and M. J. Harrison. 2004. Phosphate transport in Arabidopsis: Pht1; 1 and Pht1; 4 play a major role in phosphate acquisition from both low- and high-phosphate environments. The Plant Journal 39 (4):629–42. doi:10.1111/j.1365-313X.2004.02161.x.
  • Simard, R. R., T. Sentran, and J. Zizka. 1991. Stronsium chloride-citric acid extraction evaluate as a soil-testing procedure for phosphorus. Soil Science Society of America Journal 55 (2):414–21. doi:10.2136/sssaj1991.03615995005500020021x.
  • Sissingh, H. A. 1983. Estimation of plant available phosphates in tropical soils. A new analytical technique. Haren, Netherlands: Institute of Soil Fertility Research.
  • Wang, Y. T., T. O. Zhang, S. C. Hu, C. S. Tan, I. P. O’Halloran, C. F. Drury, D. K. Reid, B. L. Ma, B. Ball-Coelho, J. D. Lauzon, et al. 2010. Estimating dissolved reactive phosphorus concentration in surface runoff water from major Ontario soils. Journal Environmental Quality 39 (5):1771_1781. doi:10.2134/jeq2009.0504.
  • Watson, M. E. 1980. Conventional soil and tissue tests for assessing the phosphorus status of soils. In The Role of Phosphorus in Agriculture, ed. F. E. Khasawneh, E. C. Sample, and E. J. Kamprath (ed.), C. ASA, 443–64. and SSSA: Madison.
  • Withers, P. J. A., S. D. Clay, and V. G. Breeze. 2001. Phosphorus transfer in runoff following application of fertilizer, manure, and sewage sludge. Journal Environmental Quality 30 (1):180_188. doi:10.2134/jeq2001.301180x.
  • Wuenscher, R., H. Unterfrauner, R. Peticzka, and F. Zehetner. 2015. A comparison of 14 soil phosphorus extraction methods applied to 50 agricultural soils from Central Europe. Journal of Plant, Soil and Environment 61 (2):86–96. doi:10.17221/932/2014-PSE.
  • Zehetner, F., R. Wuenscher, R. Peticzka, and H. Unterfrauner. 2018. Correlation of extractable soil phosphorus (P) with plant P uptake: 14 extraction methods applied to 50 agricultural soils from central Europe. Plant, Soil & Environment 64 (4):192–201. doi:10.17221/70/2018-PSE.
  • Zhang, H., C. Chen, E. M. Gray, S. E. Boyd, H. Yang, and D. Zhang. 2016. Roles of biochar in improving phosphorus availability in soils: A phosphate adsorbent and a source of available phosphorus. Geoderma 276:1–6. doi:10.1016/j.geoderma.2016.04.020.
  • Zhang, X., Luo, Y., Müller, K., Chen, J., Lin, Q., Xu, J., and Wang, H. 2016. Research and application of biochar in China. In Agricultural and environmental applications of biochar: Advances and barriers, ed. M. Guo, Z. He, and M. Uchimiya. Madison, WI: SSSA Special Publication. https://doi.org/10.2136/sssaspecpub63.2014.0049.

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