93
Views
1
CrossRef citations to date
0
Altmetric
Research Papers

Impact of liming on extractable phosphorus, exchangeable base cations, and effective cation exchange capacity of eastern Free State soils

& ORCID Icon
Pages 351-359 | Received 14 Jun 2022, Accepted 02 Oct 2022, Published online: 23 Nov 2022

References

  • ARC-SCW. 2021. Meteorolgical data base. Pretoria: Agriculture Research Council-Soil, Climate and Water.
  • ARC-SG. 2021. Guidelines for the production of small grains in the summer rainfall area. Bethlehem: Agriculture Research Council-Small Grain.
  • Bolan NS, Adriano DC, Curtin D. 2003. Soil acidification and liming interactions with nutrient and heavy metal transformation and bioavailability. Advances in Agronomy 78: 215–272.
  • Bosch OJH, Otto WM. 1995. The extent of soil acidity in the dryland wheat production regions of South Africa. Cereal Research Communications 23: 1–2.
  • Chaganti VN, Culman SW. 2017. Historical perspective of soil balancing theory and identifying knowledge gaps. A review. Crop, Forage and Turfgrass Management 3: 1–7.
  • Culman SW, Brock C, Doohan D, Jackson-Smith D, Herms C, Chaganti VN, Kleinhenz M, Sprunger CD, Spargo J. 2021. Base cation saturation ratios vs. sufficiency level of nutrients: A false dichotomy in practice. Agronomy Journal 113: 5633–5634.
  • Das R, Saha D. 2014. Effect of liming on the changes of different forms of potassium in a soil treated with N and K fertilizers. Journal of the Indian Chemical Society 91: 1619–1625.
  • Du Preez CC, Steyn JT, Kotze, E. 2001. Long-term effects of wheat residue management on some fertility indicators on a semi-arid Plinthosol. Soil and Tillage Research 63: 25–33.
  • Edmeades DC. 1982. Effects of lime on effective exchange capacity and exchangeable cations on a range of New Zealand soils. New Zealand Journal of Agricultural Research 25: 27–33.
  • Ernami PR, Mantovani A, Scheidt FR, Nesi C. 2012. Liming decreases the vertical mobility of potassium in acidic soils. Communications in Soil Science and Plant Analysis 43: 2544–2549.
  • FERTASA. 2016. Fertilizer handbook. Lynnwood Ridge: Fertilizer Association of Southern Africa.
  • FSSA. 2003. Fertilizer handbook. Lynnwood Ridge: Fertilizer Society of South Africa.
  • Haumann PE. 1997. Soil acidity management in South Africa. Proceedings of Soil Acidity Initiative Symposium. Ermelo, Mpumalanga, South Africa.
  • Havlin JL, Tisdale SL, Nelson WL, Benton JD. 2014. Soil fertility and fertilizers: an introduction to nutrient management (8th edn). Upper Saddle River: Pearson Prentice Hall.
  • Haygarth PM, Bardgett RD, Condron LM. 2013. Nitrogen and phosphorus cycles and their management. In: Gregory PJ, Nortcliff S (eds), Soil conditions and plant growth. Chichester: Wiley-Blackwell.
  • Herrera EMC, Perez FA. 2020. Effect of liming on the soil chemical properties and the development of tomato crop in Sucre-Columbia. Journal of Applied Biotechnology and Bioengineering 7: 87–93.
  • Kopittke PM, Menzies NW. 2007. A review of the use of the basic cation saturation ratio and the ‘ideal’ soil. Soil Science Society American Journal 71: 259–265.
  • Kotze E, Du Preez CC. 2008. Influence of long-term wheat residue management on acidity and some macronutrients in an Avalon soil. South African Journal of Plant and Soil 25: 14–21.
  • Levene H. 1960. Robust tests for equality of variances. In: Olkin I, Ghurye SG, Hoeffding W, Madow WG, Mann HB (eds), Contribution to probability and statistics. Palo Alto: Stanford University Press.
  • Liao P, Ros MBN, Van Gestel N, Sun Y, Zhang J, Huang S, Zeng Y, Kees Z, Van Groenigen KJ. 2020. Liming reduces soil phosphorus availability but promotes yield and P uptake in a double rice cropping system. Journal of Integrative Agriculture 19: 2807–2819.
  • Non-affiliated Soil Analysis Work Committee. 1990. Handbook of standard soil testing methods for advisory purposes. Pretoria: Soil Science Society of South Africa.
  • Nduwumuremyi A, Rugaza V, Mugwe JN, Rusanganwa AC. 2013. Effects of unburned lime on soil pH and base cations in acidic soil. Soil Science 2013: 707569.
  • Opala PA. 2017. Influence of lime and phosphorus application rates on growth of maize in an acid soil. Advances in Agriculture 2017: 7083206.
  • Payne RW, Murray DA, Harding SA, Baird DB, Souter DM. 2017. GenStat for windows (19th edn). Hemel Hempstead: VSN international.
  • Sarkar A, Kashan MH, Osman KT, Hassain I, Ahmed F. 2014. Evaluation of available phosphorus by soil test methods in an acidic soil incubated with different levels of lime and phosphorus. Journal of Science 4: 43756.
  • Shapiro SS, Wilk MB. 1965. An analysis of variance test for normality (complete samples). Biometrika 52: 591–611.
  • Sims JT. 2020. Lime requirement. In: Sparks DL, Page AL, Helmke PA, Loeppert RH (eds), Methods of soil analysis, Part 3: Chemical methods. New York: John Wiley & Sons.
  • Smyth TJ. 2012. Soil acidity and liming. In: Hung PM, Li Y and Summer ME (eds), Handbook of soil sciences: resource management and environment impacts (2nd edn). Boca Raton: CRC Press.
  • Soil Classification Working Group. 1991. Soil Classification – A taxonomic system for South Africa. Pretoria: Soil and Irrigation Research Institute.
  • van Huyssteen CW. 2020. Relating the South African soil taxonomy to the World Reference Base for Soil Resources. Bloemfontein: Sun Media.
  • van Zyl HJJ, Du Preez CC. 2022a. Liming guidelines for eastern Free State soils cropped with wheat. South African Journal of Plant and Soil. https://doi.org/10.1080/02571862.2022.2121438
  • van Zyl HJJ, Du Preez CC. 2022b. Response of wheat cultivars with varying acid tolerances to liming of eastern Free State soils. South African Journal of Plant and Soil. https://doi.org/10.1080/02571862.2022.2137590
  • Weil RR, Brady NC. 2017. The nature and properties of soils (15th edn). Upper Saddle River: Pearson Prentice Hall.
  • White PJ, Greenwood DJ. 2013. Properties and management of cationic elements for crop growth. In: Gregory PJ, Nortcliff S (eds). Soil conditions and plant growth. Chichester: Wiley-Blackwell.

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.