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Residual Effects of Biosolids Application on Forage Production of Semiarid Grassland in Jalisco, Mexico

DOI: 10.1155/2013/835960

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Abstract:

Single application of biosolids increases forage production on semiarid grasslands. Residual effects of biosolids on forage production have been scarcely measured in semiarid grasslands. The objective was to evaluate the residual effects of biosolids application on forage production of blue grama (Bouteloua gracilis (Willd. ex Kunth) Lag. ex Griffiths) and other grasses at a semiarid grassland in Jalisco, Mexico. The study was performed at shortgrass prairie in northeast Jalisco. Field plots were selected to include blue grama plants before rainy season in 2002. Aerobic biosolids were applied at 0 (control), 15, 30, 45, 60, 75, or 90 dry Mg?ha?1 under a completely random design with five replications. Forage production was estimated by clipping at the end of the growing season during five years. Data analysis was performed with linear mixed model and repeated measures. Forage production was influenced by a rate × year × species interaction ( ). Blue grama forage production increased with increasing biosolids rates during all years, with the magnitude of this response varying among years. Forage production of other grass species slightly decreased with biosolids application. Single biosolids application had a residual effect on forage production throughout five years in semiarid grasslands. 1. Introduction Approximately half of the world native grasslands show moderate to strong degradation [1], while approximately 95% of the grasslands are overgrazed and show degradation in Mexico [2]. Studies in Mexico indicate that most of the shortgrass prairie in Jalisco [3], Zacatecas, and Chihuahua [4] show moderate-extreme to extreme rangeland health. Oak-bunchgrass and Halophyte grasslands also show deterioration, including high invasion of native shrubs and exotic grasses in Chihuahua [5]. Practices to recover degraded grasslands may include use of fertilizers, prescribed fire, shrub management, and soil and water conservation techniques. Fertilizer application to native grasslands has increased forage production [6, 7] although high fertilizer costs make this a low profitability technique. An alternative might be application of organic byproducts such as biosolids that are generated at wastewater treatment plants and can be used as fertilizer and soil amendments [8, 9]. Several studies have shown that surface-applied biosolids promote grass production at arid and semiarid grasslands [10–12]. Biosolids rates from 18 to 45?Mg?ha?1 have been recommended for arid rangelands with good agronomic results in terms of grass forage production and soil fertility [13].

References

[1]  R. B. White, S. Murray, and M. Roheder, Pilot Analysis of Global Ecosystems-Grassland Ecosystems, World Resources Institute, Washington, DC, USA, 2000, http://pdf.wri.org/page_grasslands.pdf.
[2]  SEMARNAT, Secretaría del Medio Ambiente y Recursos Naturales, Informe de la situación del medio ambiente en Mexico, Vegetacion y uso del suelo, 2005, http://www.semarnat.gob.mx/informacionambiental/.
[3]  P. Jurado, M. Luna, and M. Royo, “Estimating rangeland health in the Highlands of Jalisco,” in Proceedings of the Monitoring Science and Technology Symposium:Unifying knowledge for sustainability in the western hemisphere, C. Aguirre-Bravo, et al., Ed., Rocky Mountain Experimental Station-USDA Forest Service, Denver, CO, USA, September 2004.
[4]  M. Royo, A. Melgoza, J. S. Sierra et al., “La salud de los pastizales medianos en los estados de Chihuahua y Zacatecas,” in Proceedings of the II Simposio Internacional de Manejo de Pastizales, Zacatecas, Mexico, 2005.
[5]  A. Valerio, E. Carreon, A. Lafon et al., “Extension Espacial y Condicion de los Pastizales en el Estado de Chihuahua,” in Proteccion de la Fauna Mexicana, A.C. The Nature Conservancy, Chihuahua, Mexico, 2005.
[6]  J. T. Arredondo, “Efecto de la fertilización de nitrógeno y fósforo en un pastizal mediano abierto en el norte de Jalisco,” Tecnica Pecuaria en Mexico, vol. 47, pp. 49–59, 1984.
[7]  H. O. Rubio, M. K. Wood, A. Gomez, and G. Reyes, “Native forage quality, quantity, and profitability as affected by fertilization in northern Mexico,” Journal of Range Management, vol. 49, no. 4, pp. 315–319, 1996.
[8]  USEPA, United States Environmental Protection Agency, “Biosolids Technology Fact Sheet: Land Application of Biosolids,” EPA 832-F-00-064, United States Environmental Protection Agency, 2000.
[9]  The National Research Council, Biosolids Applied To Land: Advancing Standards and Practices, National Academy Press, Washington, DC, USA, 2002.
[10]  M. W. Benton and D. B. Wester, “Biosolids effects on tobosagrass and alkali sacaton in a Chihuahuan desert grassland,” Journal of Environmental Quality, vol. 27, no. 1, pp. 199–208, 1998.
[11]  P. Jurado and D. B. Wester, “Effects of biosolids on tobosagrass growth in the Chihuahuan desert,” Journal of Range Management, vol. 54, no. 1, pp. 89–95, 2001.
[12]  P. Jurado, M. Luna, R. Barretero, M. Royo, and A. Melgoza, “Produccion y calidad de forraje y semilla de zacate navajita con la aplicacion de biosolidos en un pastizal semiarido de Jalisco,” Tecnica Pecuaria en Mexico, vol. 44, pp. 289–300, 2006.
[13]  D. B. Wester, R. E. Sosebee, R. E. Zartman et al., “Biosolids effects in Chihuahuan desert rangelands: a Ten-Year Study,” Applied and Environmental Soil Science, vol. 2011, Article ID 717863, 13 pages, 2011.
[14]  C. S. White, S. R. Loftin, and R. Aguilar, “Application of biosolids to degraded semiarid rangeland: nine-year responses,” Journal of Environmental Quality, vol. 26, no. 6, pp. 1663–1671, 1997.
[15]  I. Walter, F. Martínez, and G. Cuevas, “Biosolid amendment of a calcareous, degraded soil in a semi-arid environment,” Spanish Journal of Agricultural Research, vol. 4, no. 1, pp. 47–54, 2006.
[16]  P. Jurado, T. Arredondo, E. Flores, V. Olalde, and J. Frias, “Efecto de los biosolidos sobre la humedad y nutrimentos del suelo y produccion de forraje en pastizales semiaridos,” Terra Latinoamericana, vol. 25, pp. 211–218, 2007.
[17]  G. G. Medina, A. Ruiz, and R. Martinez, Los Climas de México. Una Estratificación Ambiental Basada en el componente Climático, Issue 1 of Libro técnico, CIRPAC-INIFAP-SAGAR, Guadalajara, Jalisco, México, 1998.
[18]  FAO-ISSS-ISRIC, World Reference Base for Soil Resources, 1998, http://www.fao.org/W8594E00.htm.
[19]  COTECOCA, “Comision Tecnico Consultiva para la Determinacion de Coeficientes de Agostadero,” in Coeficientes de agostadero de la Republica Mexicana, Tomo II, pp. 165–244, Estado de Jalisco, SARH-Subsecretaria de Ganaderia, Jalisco, Mexico, 1979.
[20]  D. W. Nelson and L. E. Sommers, “Total carbon, organic carbon and organic matter,” in Methods of Soil Analysis, Part 2, A. L. Page, R. H. Miller, and D. R. Keeney, Eds., 9. ASA-SSSA, pp. 539–579, Agronomy Monogr, Madison, WI, USA, 1982.
[21]  J. M. Bremner and C. S. Mulvaney, “Nitrogen—total,” in Methods of Soil Analysis. Part 2, A. L. Page, R. H. Miller, and D. R. Keeney, Eds., 9. ASA-SSSA, pp. 595–624, Agronomy Monogr, Madison, WI, USA, 1982.
[22]  S. R. Olsen and L. E. Sommers, “Phosphorus,” in Methods of Soil Analysis. Part 2, A. L. Page, R. H. Miller, and D. R. Keeney, Eds., 9. ASA-SSSA, pp. 403–430, Agronomy Monogr, Madison, WI, USA, 1982.
[23]  W. L. Lindsay and W. A. Norvell, “Development of DTPA soil test for zinc, iron, manganese and copper,” in Soil Science Society of America Journal, vol. 42, pp. 421–428, 1978.
[24]  SEMARNAT, “SECRETARIA DEL MEDIO AMBIENTE Y RECURSOS NATURALES Normas Oficiales Mexicanas Vigentes,” NOM-004-SEMARNAT-2002-Proteccion Ambiental Lodos y Biosolidos, 2003, http://www.semarnat.gob.mx/leyesynormas/pages/resultados.aspx.
[25]  R. G. D. Steel and J. H. Torrie, Principles and Procedures of Statistics, McGraw-Hill Book Company, New York, NY, USA, 2nd edition, 1980.
[26]  SAS, Statistical Analysis System. Versión 9. 0., SAS Institute, Cary, NC, USA, 2008.
[27]  P. R. Fresquez, R. E. Francis, and G. L. Dennis, “Soil and vegetation responses to sewage sludge on a degraded semiarid broom snakeweed/blue grama plant community,” Journal of Range Management, vol. 43, no. 4, pp. 325–331, 1990.
[28]  J. A. Ippolito, K. A. Barbarick, M. W. Paschke, and R. B. Brobst, “Infrequent composted biosolids applications affect semi-arid grassland soils and vegetation,” Journal of Environmental Management, vol. 91, no. 5, pp. 1123–1130, 2010.
[29]  F. Martínez, G. Cuevas, R. Calvo, and I. Walter, “Biowaste effects on soil and native plants in a semiarid ecosystem,” Journal of Environmental Quality, vol. 32, no. 2, pp. 472–479, 2003.
[30]  C. A. Moffet, R. E. Zartman, D. B. Wester, and R. E. Sosebee, “Surface biosolids application: effects on infiltration, erosion, and soil organic carbon in Chihuahuan Desert grasslands and shrublands,” Journal of Environmental Quality, vol. 34, no. 1, pp. 299–311, 2005.
[31]  T. S. Sullivan, M. E. Stromberger, M. W. Paschke, and J. A. Ippolito, “Long-term impacts of infrequent biosolids applications on chemical and microbial properties of a semi-arid rangeland soil,” Biology and Fertility of Soils, vol. 42, no. 3, pp. 258–266, 2006.
[32]  W. F. Jaynes, R. E. Zartman, R. E. Sosebee, and D. B. Wester, “Biosolids decomposition after surface applications in west Texas,” Journal of Environmental Quality, vol. 32, no. 5, pp. 1773–1781, 2003.
[33]  CONAGUA, Comision Nacional del Agua, Manual de agua potable, alcantarillado y saneamiento-Guia para el manejo, tratamiento y disposición de lodos residuales de plantas de tratamiento municipales, 2007, http://www.cna.gob.mx/.
[34]  H. R. Uribe, N. Chavez, G. Orozco, and S. Espino, “Biosolidos digeridos anaerobicamente en la producción de maiz forrajero,” Agricultura Tecnica en Mexico, vol. 29, pp. 25–34, 2003.
[35]  Q. Lu, Z. L. He, and P. J. Stoffella, “Land application of biosolids in the USA: a review,” Applied and Environmental Soil Science, vol. 2012, Article ID 201462, 11 pages, 2012.

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