109
Views
1
CrossRef citations to date
0
Altmetric
Original Articles

Comparison of EDTA and ammonium Bicarbonate-DTPA for the extraction of phosphorus in calcareous soils from Kerman, Iran

, , &
Pages 1277-1282 | Received 22 Apr 2018, Accepted 24 May 2018, Published online: 03 Jun 2019

References

  • Ahmed, B., and A. Islam. 1975. The use of sodium EDTA as an extractant for determining available phosphate in soil. Geoderma 14 (3):261–265. doi: 10.1016/0016-7061(75)90006-3.
  • Bouyoucous, G. J. 1951. A recalibration of hydrometer method for making mechanical analysis of soil. Agronomy Journal 43:434–438.
  • Chapman, H. D. 1965. Cation exchange capacity. In Methods of soil analysis, ed. C. A. Black, 891–901. Madison, WI: American society of Agronomy.
  • Elrashidi, M. A., M. D. Mays, and C. W. Lee. 2003. Assessment of Mehlich 3 and ammonium bicarbonate-DTPA extraction for simultaneous measurement of fifteen elements in soils. Communications in Soil Science and Plant Analysis 34 (19–20):2817–2838. doi: 10.1081/CSS-120025208.
  • Jackson, M. L. 1975. Soil chemical analysis, advanced course. Madison, WI, USA: Univ. Wis, College Agric., Dept. Soils.
  • Li, Y. 2013. Calcareous soils in Miami-Dade County (Florida Cooperative Extension Service Fact Sheet SL183).
  • Gainesville, Florida: University of Florida, Institute of Food and Agricultural Sciences. The UF/IFAS Electronic Data Information Source (EDIS) database.
  • Murphy, J., and J. P. Riley. 1962. A modified single solution method for the determination of phosphate in natural waters. Analytica Chimica Acta 27:31–36. doi: 10.1016/S0003-2670(00)88444-5.
  • Mylavarapu, R. S., W. d’Angelo, N. Wilkinson, and D. Moon. 2014a. UF/IFAS extension soil testing laboratory (ESTL) analytical procedures and training manual (Florida cooperative extension service fact sheet CIRC 1248). Gainesville, Florida: University of Florida, Institute of Food and Agricultural Sciences. The UF/IFAS Electronic Data Information Source (EDIS) database.
  • Mylavarapu, R., T. Obreza, K. Morgan, G. Hochmuth, V. Nair, and A. Wright. 2014b. Extraction of soil nutrients using mehlich-3 reagent for acid-mineral soils of Florida (Florida cooperative extension service fact sheet SL407). Gainesville. Florida: University of Florida, Institute of Food and Agricultural Sciences. The UF/IFAS Electronic Data Information Source (EDIS) database.
  • Peck, T. R., and P. N. Soltanpour. 1990. The principles of soil testing. In Soil testing and plant analysis, ed. R. L. Westerman, 1–8. Madison, Wisconsin: Soil Science Society of America.
  • Rashid, A., J. Din, and M. Bashir. 1999. Phosphorus deficiency diagnosis and fertilization in mungbean grown in rainfed calcareous soils of Pakistan. Communications in Soil Science and Plant Analysis 30 (13–14):2045–2056. doi: 10.1080/00103629909370352.
  • Richards, L. A. 1954. Diagnosis and improvement of saline and alkali soils. U.S.D.A. Handbook NO.60. Washington, DC, USA: US Salinity Laboratory Staff, US Department of Agriculture.
  • Self, J. 2000. Phosphorus levels in Colorado soils. In Agronomy news, eds. R. Waskom, J. Stednick, and J. Davis, 7. Fort Collins, Colorado: Cooperative Extension, Department of Soil and Crop Sciences, Colorado State University.
  • Skogley, E. O. 1994. Reinventing soil testing for the future. In Soil testing prospects for improving nutrient recommendations. Eds. J. L. Havlin and J. S. Jacobsen, 187–201. Madison, Wisconsin: Soil Science Society of America.
  • Soltanpour, P. N. 1985. Use of ammonium bicarbonate DTPA soil test to evaluate elemental availability and toxicity. Communications in Soil Science and Plant Analysis 16 (3):323–38. doi: 10.1080/00103628509367607.
  • Soltanpour, P. N., and A. P. Schwab. 1977. A new soil test for simultaneous extraction of macro- and micro-nutrients in alkaline soils. Communications in Soil Science and Plant Analysis 8 (3):195–207. doi: 10.1080/00103627709366714.
  • Ussiri, D. A., P. N. S. Mnkeni, A. F. MacKenzie, and J. M. R. Semoka. 1998. Soil test calibration studies for formulation of phosphorus fertilizer recommendations for maize in Morogoro district, Tanzania. I. evaluation of soil test methods. Communications in Soil Science and Plant Analysis 29 (17-18):2801–2813. doi: 10.1080/00103629809370155.
  • Wandruszka, R. V. 2006. Phosphorus retention in calcareous soils and the effect of organic matter on its mobility. Geochemical Transactions 7 (1):6. doi: 10.1186/1467-4866-7-6
  • Zhang, M., C. Li, Y. C. Li, and W. G. Harris. 2014. Phosphate minerals and solubility in native and agricultural calcareous soils. Geoderma 232–234:164–171. doi: 10.1016/j.geoderma.2014.05.015.
  • Zhou, M., and Y. Li. 2001. Phosphorus-sorption characteristics of calcareous soils and limestone from the southern Everglades and adjacent farmlands. Soil Science Society of America Journal 65 (5):1404–1412. doi: 10.2136/sssaj2001.6551404x.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.