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Displacement of Sodium, Potassium, Calcium, Magnesium and Improvements in a Saline Soil Treated with Organic and Chemical Amendments
Corresponding Author(s) : Judith Prieto-Méndez
Asian Journal of Chemistry,
Vol. 31 No. 12 (2019): Vol 31 Issue 12
Abstract
The accumulation of salts in the soil produces conditions that affect the growth of most crops. Currently, soil amendments have been used to improve the texture and chemical & biological reactions of the soil. The objective of this work was to simulate the transport of sodium, potassium, calcium and magnesium in columns of saline soil through the use of organic and chemical amendments. Saline soil samples of the municipality of Tlahuelilpan, Hidalgo state, Mexico were studied. Compost, vermicompost, phosphogypsum and malting barley husk were used as amendments. The results showed that the highest metal element removal was obtained with the combined treatment of vermicompost at 4 % and phosphogypsum at 2 % (V4FY2) (59 %). Improvements in soil physico-chemical properties were also observed. These findings indicated that the combination of organic and chemical amendments promotes the leaching of metals, (mainly sodium). Therefore, the amendments evaluated in this study can be a good alternative for the remediation and improvement of saline soils.
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- S. Busoms, J. Teres, X.-Y. Huang, K. Bomblies, J. Danku, A. Douglas, D. Weigel, C. Poschenrieder and D.E. Salt, Plant Physiol., 168, 915 (2015); https://doi.org/10.1104/pp.15.00427.
- C.A. Wada, K. Burnett and J.J. Gurdak, Sustain. Agric. Res., 5, 76 (2016); https://doi.org/10.5539/sar.v5n3p76.
- L. Giménez, M. Petillo, P. Paredes and L. Pereira, Water, 8, 309 (2016); https://doi.org/10.3390/w8070309.
- A. Rodríguez-Vila, V. Asensio, R. Forján and E.F. Covelo, Spanish J. Soil Sci., 5, 130 (2015); https://doi.org/10.3232/SJSS.2015.V5.N2.03.
- J. Huerta, Professional Thesis, Mejoradores potenciales de pH para suelos ácidos y alcalinos, Flooring Department, Autonomous University of Chapingo, p. 13 (2011) (In Spanish).
- P.M. Ramírez, Engineering Thesis, Condiciones de salinidad y recuper-ación de los suelos de la cancha pública de golf San Antonio, Lima, Perú, National Agrarian University La Molina, Lima, Peru, p. 10 (2016).
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- F.A. Núñez, Invest. Geog. Bol. Inst. Geografía, 2017, 3 (2017).
- K. Wang, H. Mao and X. Li, Bioresour. Technol., 249, 527 (2018); https://doi.org/10.1016/j.biortech.2017.10.034.
- K. Hashemimajd, M. Kalbasi, A. Golchin and H. Shariatmandari, J. Plant Nutr., 27, 1107 (2004); https://doi.org/10.1081/PLN-120037538.
- M.M. Acosta Álvarez, Bachelor Thesis in Biology, Determinación de metales pesados en suelos agrícolas del Valle del Mezquital, Hidalgo. Universidad Autónoma del Estado de Hidalgo, pp. 50-59 (2007) (In Spanish).
- Inegi, National Institute of Statistic and Geography, Hidalgo Statistical and Geographic Yearbook 2013 pp. 35-45 (2014).
- SMN-CONAGUA, National Metereological Service; National Water Comission (2016).
- F. Lobo and R.E. Espinoza, Copeia, 2004, 850 (2004); https://doi.org/10.1643/CH-03-241R1.
- IFA, International Association of the Fertilizer Industry. Fertilizers and their Uses, IFA: France, edn 4, pp. 44-51 (2002).
- A.M. Landini, D. Martínez, H. Días, E. Soza, D. Agnes and C. Sainato, C. Suelo (Argentina), 25, 123 (2007).
- L. Valverde, Bol. Sanid. Veg., Plagas, 33, 163 (2007).
- WWF, World Wildlife Fund, Annual Review Conservation Achieve-ments So Far (2009).
- Official Mexican Standard NOM-021-RECNAT-2000. Specifications of Fertility, Salinity and Classification of Soils. Studies, Sampling and Analysis (2000).
- M.D. Rodríguez-Torres, J. Venegas-Gonzalez, M.V. Angoa-Perez and J.L. Montañez-Sato, Bioagro, 21, 183 (2009).
- J.I. Manzano Banda, P. Rivera Ortiz, F. Briones Encinia and C. Zamora Tovar, Terra Latinoamericana, 32, 211 (2014).
- J.A. Hernández, Doctoral Thesis, Biorecuperation of Saline Soils using Organic Materials, Polytechnic University of Madrid, Spain, p. 39 (2011).
- M. Vázquez and A. Pagani, eds.: H. Echeverría and F. García, Calcium and Magnesium from the Soil. Fertilization Management and Amend-ments. In: Soil Fertility and Crop Fertilization, INTA, Chap. 11, pp. 317-356 (2015).
- W. Guo, H. Nazim, Z. Liang and D. Yang, Crop J., 4, 83 (2016); https://doi.org/10.1016/j.cj.2015.11.003.
- J.A. Villazón Gómez, G. Martín Gutiérrez and Y. Cobo Vidal, Cent. Agríc., 44, 56 (2017).
- M.A. Velásquez -Valle, I. Sánchez-Cohen, R. Gutiérrez-Luna, J.A. Muñoz-Villalobos and H. Macias-Rodríguez, Rev. Chapingo Ser. Zonas Áridas, 13, 47 (2014); https://doi.org/10.5154/r.rchsza.2013.10.004.
- M.A. Delgado-Londoño, Lámpsakos, 17, 77 (2017); https://doi.org/10.21501/21454086.1907.
- M.L. Medina Guerrero, G.A. Zanor and J.A. Suárez-Mendoza, Jóvenes en la Ciencia, 1, 89 (2015).
- F. Adani, P. Genevini, F. Tambone and E. Montoneri, Chemosphere, 65, 1414 (2006); https://doi.org/10.1016/j.chemosphere.2006.03.070.
- A. Abril, L. Noe and M.F. Filippini, Rev. Investig. Agropecu, 40, 83 (2014).
- D.P.H. Lejon, J. Sebastia, I. Lamy, R. Chaussod and L. Ranjard, Microb. Ecol., 53, 650 (2007); https://doi.org/10.1007/s00248-006-9145-6.
References
S. Busoms, J. Teres, X.-Y. Huang, K. Bomblies, J. Danku, A. Douglas, D. Weigel, C. Poschenrieder and D.E. Salt, Plant Physiol., 168, 915 (2015); https://doi.org/10.1104/pp.15.00427.
C.A. Wada, K. Burnett and J.J. Gurdak, Sustain. Agric. Res., 5, 76 (2016); https://doi.org/10.5539/sar.v5n3p76.
L. Giménez, M. Petillo, P. Paredes and L. Pereira, Water, 8, 309 (2016); https://doi.org/10.3390/w8070309.
A. Rodríguez-Vila, V. Asensio, R. Forján and E.F. Covelo, Spanish J. Soil Sci., 5, 130 (2015); https://doi.org/10.3232/SJSS.2015.V5.N2.03.
J. Huerta, Professional Thesis, Mejoradores potenciales de pH para suelos ácidos y alcalinos, Flooring Department, Autonomous University of Chapingo, p. 13 (2011) (In Spanish).
P.M. Ramírez, Engineering Thesis, Condiciones de salinidad y recuper-ación de los suelos de la cancha pública de golf San Antonio, Lima, Perú, National Agrarian University La Molina, Lima, Peru, p. 10 (2016).
M. Mesic, L. Brezinsèak, Z. Zgorelec, A. Perèin, I. Sestak, D. Bilandzija, M. Trdenic and H. Lisac, Agric. Conspectus Scient. cus., 81, 7 (2016).
F.A. Núñez, Invest. Geog. Bol. Inst. Geografía, 2017, 3 (2017).
K. Wang, H. Mao and X. Li, Bioresour. Technol., 249, 527 (2018); https://doi.org/10.1016/j.biortech.2017.10.034.
K. Hashemimajd, M. Kalbasi, A. Golchin and H. Shariatmandari, J. Plant Nutr., 27, 1107 (2004); https://doi.org/10.1081/PLN-120037538.
M.M. Acosta Álvarez, Bachelor Thesis in Biology, Determinación de metales pesados en suelos agrícolas del Valle del Mezquital, Hidalgo. Universidad Autónoma del Estado de Hidalgo, pp. 50-59 (2007) (In Spanish).
Inegi, National Institute of Statistic and Geography, Hidalgo Statistical and Geographic Yearbook 2013 pp. 35-45 (2014).
SMN-CONAGUA, National Metereological Service; National Water Comission (2016).
F. Lobo and R.E. Espinoza, Copeia, 2004, 850 (2004); https://doi.org/10.1643/CH-03-241R1.
IFA, International Association of the Fertilizer Industry. Fertilizers and their Uses, IFA: France, edn 4, pp. 44-51 (2002).
A.M. Landini, D. Martínez, H. Días, E. Soza, D. Agnes and C. Sainato, C. Suelo (Argentina), 25, 123 (2007).
L. Valverde, Bol. Sanid. Veg., Plagas, 33, 163 (2007).
WWF, World Wildlife Fund, Annual Review Conservation Achieve-ments So Far (2009).
Official Mexican Standard NOM-021-RECNAT-2000. Specifications of Fertility, Salinity and Classification of Soils. Studies, Sampling and Analysis (2000).
M.D. Rodríguez-Torres, J. Venegas-Gonzalez, M.V. Angoa-Perez and J.L. Montañez-Sato, Bioagro, 21, 183 (2009).
J.I. Manzano Banda, P. Rivera Ortiz, F. Briones Encinia and C. Zamora Tovar, Terra Latinoamericana, 32, 211 (2014).
J.A. Hernández, Doctoral Thesis, Biorecuperation of Saline Soils using Organic Materials, Polytechnic University of Madrid, Spain, p. 39 (2011).
M. Vázquez and A. Pagani, eds.: H. Echeverría and F. García, Calcium and Magnesium from the Soil. Fertilization Management and Amend-ments. In: Soil Fertility and Crop Fertilization, INTA, Chap. 11, pp. 317-356 (2015).
W. Guo, H. Nazim, Z. Liang and D. Yang, Crop J., 4, 83 (2016); https://doi.org/10.1016/j.cj.2015.11.003.
J.A. Villazón Gómez, G. Martín Gutiérrez and Y. Cobo Vidal, Cent. Agríc., 44, 56 (2017).
M.A. Velásquez -Valle, I. Sánchez-Cohen, R. Gutiérrez-Luna, J.A. Muñoz-Villalobos and H. Macias-Rodríguez, Rev. Chapingo Ser. Zonas Áridas, 13, 47 (2014); https://doi.org/10.5154/r.rchsza.2013.10.004.
M.A. Delgado-Londoño, Lámpsakos, 17, 77 (2017); https://doi.org/10.21501/21454086.1907.
M.L. Medina Guerrero, G.A. Zanor and J.A. Suárez-Mendoza, Jóvenes en la Ciencia, 1, 89 (2015).
F. Adani, P. Genevini, F. Tambone and E. Montoneri, Chemosphere, 65, 1414 (2006); https://doi.org/10.1016/j.chemosphere.2006.03.070.
A. Abril, L. Noe and M.F. Filippini, Rev. Investig. Agropecu, 40, 83 (2014).
D.P.H. Lejon, J. Sebastia, I. Lamy, R. Chaussod and L. Ranjard, Microb. Ecol., 53, 650 (2007); https://doi.org/10.1007/s00248-006-9145-6.