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Research Articles

Effects of applying lime and phosphogypsum in soybean and wheat nutrition

ORCID Icon, , , , & ORCID Icon
Pages 1418-1437 | Received 11 May 2022, Accepted 09 Jan 2024, Published online: 06 Feb 2024

References

  • Alves, L. A., V. G. Ambrosini, L. G. O. Denardin, J. P. M. Flores, A. M. Martins, D. Filippi, C. Bremm, P. C. F. Carvalho, G. D. Farias, I. A. Ciampitti, et al. 2021. Biological N2 fixation by soybeans grown with or without liming on acid soils in a no-till integrated crop-livestock system. Soil and Tillage Research 209:104923. doi: 10.1016/j.still.2020.104923.
  • Andreotti, M., E. C. A. Souza, C. A. C. Crusciol, J. D. Rodrigues, and L. T. Büll. 2000. Dry matter yield and nutrient uptake in corn plants as a function of potassic fertilization and of basis soil saturation. Pesquisa Agropecuária Brasileira 35 (12):2437–46. (In Portuguese, Abstract in English) doi: 10.1590/S0100-204X2000001200015.
  • Banzatto, D. A., and S. N. Kronla. 2008. Agricultural Experimentation. 4th ed. Jaboticabal: Editora Funep. (In Portuguese)
  • Barber, S. A. 1995. Soil nutrient bioavailability: A mechanistic approach. 2nd ed. New York: John Wiley & Sons, 414p.
  • Besen, M. R., G. A. R. Dias, V. R. Cordioli, A. F. d Goes Neto, É. J. d O. Zampar, L. S. d O. Moreira, T. T. Inoue, and M. A. Batista. 2021c. Short-term effects of lime and phosphogypsum reapplication methods on wheat and maize nutrition. Journal of Plant Nutrition 44 (17):2583–96. doi: 10.1080/01904167.2021.1913183.
  • Besen, M. R., M. Esper Neto, B. M. A. R. Cassim, E. M. Cassim, T. T. Inoue, and M. A. Batista. 2021a. Potential waste application of several industries segments in Brazilian agriculture: Effects on physical and chemical soil properties. Communications in Soil Science and Plant Analysis 52 (15):1721–44. doi: 10.1080/00103624.2021.1892732.
  • Besen, M. R., R. H. Ribeiro, M. Esper Neto, E. A. Minato, C. F. Coneglian, W. D. Kachinski, C. A. Tormena, T. T. Inoue, and M. A. Batista. 2021b. Lime and phosphogypsum application management: Changes in soil acidity, sulfur availability and crop yields. Revista Brasileira De Ciência Do Solo 45: 1–20. doi: 10.36783/18069657rbcs20200135.
  • Borkert, C. M., M. A. Pavan, and O. C. Bataglia. 2001. Availability and evaluation of cationic elements: Iron and manganese. In Micronutrients and toxic elements in Agriculture, ed. M. E. Ferreira, M. C. P. Cruz, B. V. Raij, and C. A. Abreu. Japoticabal, Brazil: CNPq/FAPESP/POTAFOS, 600p. (In Portuguese)
  • Bredemeier, C., and C. M. Mundstock. 2000. Regulation of nitrogen absortion and assimilation in plants. Ciência Rural 30 (2):365–72. (In Portuguese, Abstract in English) doi: 10.1590/S0103-84782000000200029.
  • Brignoli, F. M., A. Anacleto de Souza Junior, D. L. Grando, G. L. Mumbach, and F. Francisco Dillmann Pajara. 2020. Soybean biometric atributes influenced by pH soil level. Revista Científica Rural 22 (2):13–28. (In Portuguese, Abstract in English). doi: 10.30945/rcr-v22i2.3211.
  • Caires, E. F., A. F. Fonseca, J. Mendes, W. A. Chueiri, and E. F. Madruga. 1999. Corn, wheat and soybean yields as a function of the changes in soil chemical characteristics due to surface application of lime and gypsum under a no-tillage system. Revista Brasileira De Ciência Do Solo 23 (2):315–27. (In Portuguese, Abstract in English). doi: 10.1590/S0100-06831999000200016.
  • Caires, E. F., F. J. Garbuio, L. R. F. Alleoni, and M. A. Cambri. 2006. Surface lime application and black oat cover preceding corn and soybean crops under a no-till system. Revista Brasileira De Ciência Do Solo 30 (1):87–98. (In Portuguese, Abstract in English). doi: 10.1590/S0100-06832006000100010.
  • Caires, E. F., G. Barth, F. J. Garbuio, and M. T. Kusman. 2002. Influence of surface lime application in a notillage system on soil acidity, corn root growth and nutrition. Revista Brasileira De Ciência Do Solo 26 (4):1011–22. (In Portuguese, Abstract in English). doi: 10.1590/S0100-06832002000400019.
  • Caires, E. F., L. R. F. Alleoni, M. A. Cambri, and G. Barth. 2005. Surface application of lime for crop grain production under a no-till system. Agronomy Journal 97 (3):791–8. doi: 10.2134/agronj2004.0207.
  • Caires, E. F., R. Zardo Filho, G. Barth, and H. Joris. 2016. Optimizing nitrogen use efficiency for no-till corn production by improving root growth and capturing NO3-N in subsoil. Pedosphere 26 (4):474–85. doi: 10.1016/S1002-0160(15)60058-3.
  • Churka Blum, S., E. F. Caires, and L. R. F. Alleoni. 2013. Lime and phosphogypsum application and sulfate retention in subtropical soils under no-till system. Journal of Soil Science and Plant Nutrition 13 (2):279–300. doi: 10.4067/S0718-95162013005000024.
  • Companhia Nacional de Abastecimento (CONAB). 2021. Acompanhamento da safra brasileira de grãos: Safra 2020/21. Brasília, DF: Sexto levantamento.
  • Esper Neto, M., E. A. Minato, M. R. Besen, T. T. Inoue, and M. A. Batista. 2018. Biometric Responses of soybean to different potassium fertilization manegement practices in years with high and low precipitation. Revista Brasileira De Ciência Do Solo 42:1–13. doi: 10.1590/18069657rbcs20170305.
  • Kabata-Pendias, A., and H. Pendias. 2001. Trace elements in soils and plants. 3rd ed. Boca Raton, FL: CRC Press, 413p.
  • Lehninger, A. L., L. D. Nelson, and M. M. Cox. 1995. Principles of biochemistry. São Paulo: Sarvier, 839p. (In Portuguese)
  • Lindsay, W. 1979. Chemical equilibria in soil. New York: John Wiley & Sons, 449p.
  • Loyola, E., Jr., and M. A. Pavan. 1989. Selectivity of cation exchange in acidic soils. Revista Brasileira De Ciência Do Solo 13 (2):131–8. (In Portuguese)
  • Malavolta, E., G. C. Vitti, and S. A. Oliveira. 1997. Evaluation of the nutritional status of plants: Principles and applications. 2nd ed. Piracicaba, Brazil: POTAFOS. (In Portuguese).
  • Monteiro, J. E. B. A., P. C. Sentelhas, E. J. Chiavegato, C. Guiselini, A. V. Santiago, and A. Prela. 2005. Cotton leaf area estimates based on leaf dimensions and dry mass methods. (In Portuguese, Abstract in English). Bragantia 64 (1):15–24. doi: 10.1590/S0006-87052005000100002.
  • Moreira, A., E. Malavolta, R. Heinrichs, and R. T. Tanaka. 2003. Magnesium influence on manganese and zinc uptake by excised roots of soybean. Pesquisa Agropecuária Brasileira 38 (1):95–101. (In Portuguese, Abstract in English) doi: 10.1590/S0100-204X2003000100013.
  • Nava, G., P. R. Ernani, A. A. Sá, and A. J. Pereira. 2012. Soil Composition and nutritional status of apple as affected by long-term application of gypsum. Revista Brasileira De Ciência Do Solo 36 (1):215–22. doi: 10.1590/S0100-06832012000100022.
  • Novais, R. F., J. C. L. Neves, N. F. Barrose, and T. Sediyama. 1989. Manganese deficiency in soybean plants grown in cerrado soils. Revista Brasileira De Ciência Do Solo 13:199–204. (In Portuguese)
  • Pauletti, V., L. Pierri, T. Ranzan, G. Barth, and A. C. V. Motta. 2014. Long-term effects of the application of gypsum and lime in a no-till system. Revista Brasileira De Ciência Do Solo 38 (2):495–505. (In Portuguese, Abstract in English) doi: 10.1590/S0100-06832014000200014.
  • Pereira, J. M. M. 2000. Caracterização fisiológica e agronómica de diferentes estratégias culturais para minimizar o stress estival em vitis vinifera L. na Região Demarcada do Douro [tese]. Vila Real, Portugal: Universidade de Trás-os-Montes e Alto Douro.
  • Pereira, N. M. Z., P. R. Ernani, and L. Sangoi. 2007. Availability of zinc to maize as affected by zn addition and by soil pH. Revista Brasileira De Milho e Sorgo 6 (3):273–84. (In Portuguese, Abstract in English) doi: 10.18512/1980-6477/rbms.v6n3p273-284.
  • Pias, O. H. C., T. Tiecher, M. R. Cherubin, A. G. B. Silva, and C. Bayer. 2020. Does gypsum increase crop grain yield on no-tilled acid soils? A meta-analysis. Agronomy Journal 112 (2):675–92. doi: 10.1002/agj2.20125.
  • Prado, R. M. 2008. Plant nutrition. São Paulo: Editora Unesp. (In Portuguese).
  • Quaggio, J. A. 2000. Acidity and liming in tropical soils. Campinas, Brazil: Instituto Agronômico de Campinas. (In Portuguese)
  • Raij, B. v, and M. Peech. 1972. Electrochemical properties of some Oxisols and Alfisols of the tropics. Soil Science Society of America Journal 36 (4):587–93. doi: 10.2136/sssaj1972.03615995003600040027x.
  • Ramos, B. Z., J. P. V. Toledo, J. M. Lima, M. E. Serafim, A. R. R. Bastos, P. T. G. Guimarães, and A. R. Coscione. 2013. Gypsum applications to coffee: Influence on calcium, magnesium and potassium contents and ph of the solution of a dystrophic red Latosol. Revista Brasileira De Ciência Do Solo 37 (4):1018–26. (In Portuguese, Abstract in English) doi: 10.1590/S0100-06832013000400019.
  • SBCS/NEPAR. 2019. Sociedade Brasileira de Ciência do Solo. Núcleo Estadual do Paraná. Fertilization and liming manual for the state of Parana. Curitiba, Brasil: Sociedade Brasileira de Ciência do Solo. 289p. (In Portuguese)
  • Soil Survey Staff. 2014. Key to soil taxonomy. Washington, DC: Natural Resources Conservation Service.
  • Souza, D. M. G., E. Lobato, and T. A. Rein. 2005. Use of agricultural gypsum in cerrado soils. Circular Técnica 32. Planaltina, Brazil: Embrapa. (In Portuguese)
  • Souza, D. M. G., L. N. Miranda, and A. S. Oliveira. 2007. Soil acidity and its correction. In Soil fertility, ed. R. F. Novais, V. H. V. Alvarez, N. F. Barros, R. L. F. Fontes, R. B. Cantarutti, and J. C. L. Neves. (Org), Viçosa, Brasil. Sociedade Brasileira de Ciência do Solo. (In Portuguese)
  • Souza, T. V., C. M. Ribeiro, J. D. Scalon, and F. L. Guedes. 2014. Relationships between yield components and morphological characteristics of maize. Magistra 26 (4):495–506. (In Portuguese, Abstract in English)
  • Tiecher, T., O. H. C. Pias, C. Bayer, A. P. Martins, L. G. O. Denardin, and I. Anghinoni. 2018. Crop response to gypsum application to subtropical soils under no-till in Brazil: A systematic review. Revista Brasileira De Ciência Do Solo 42:1–17. doi: 10.1590/18069657rbcs20170025.
  • Tissi, J. A., E. F. Caires, and V. Pauletti. 2004. Effect of lime application on no-tillage corn. Bragantia 63 (3):405–13. (In Portuguese, Abstract in English) doi: 10.1590/S0006-87052004000300010.
  • Vicensi, M., C. Lopes, V. Koszalka, R. C. Umburanas, J. Kawakami, C. A. Pott, and M. M. L. Müller. 2020. Gypsum rates and splitting under no-till: Soil fertility, corn performance, accumulated yield and profits. Journal of Soil Science and Plant Nutrition 20 (2):690–702. doi: 10.1007/s42729-019-00157-1.
  • Withers, P. A., M. Rodrigues, A. Soltangheisi, T. S. Carvalho, L. R. G. Guilherme, V. M. Benites, L. C. Gatiboni, D. M. G. Sousa, R. S. Nunes, C. A. Rosolem, et al. 2018. Transitions to sustainable management of phosphorus in Brazilian agriculture. Scientific Reports 8 (1):2537. doi: 10.1038/s41598-018-20887-z.
  • Zambrosi, F. C. B., L. R. F. Alleoni, and E. F. Caires. 2007. Gypsum application and ionic speciation of the solution from an Oxisol under no-till system. Ciência Rural 37 (1):110–7. (In Portuguese, Abstract in English) doi: 10.1590/S0103-84782007000100018.

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