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Original Articles

Nitrogen mineralization dynamics in acid vineyard soils amended with bentonite winery waste

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Pages 805-818 | Received 20 Apr 2017, Accepted 30 Sep 2017, Published online: 26 Oct 2017

References

  • Aciego Pietri JC, Brookes PC. 2008. Nitrogen mineralisation along a pH gradient of a silty loam UK soil. Soil Biol Biochem. 40:797–802.
  • Arias-Estévez M, López-Periago E, Nóvoa-Muñoz JC, Torrado-Agrasar A, Simal-Gándara J. 2007. Treatment of an acid soil with bentonite used for wine fining: effects on soil properties and the growth of Lolium multiflorum. J Agric Food Chem. 55:7541–7546.
  • Bell S-J, Henschke PA. 2005. Implications of nitrogen nutrition for grapes, fermentation and wine. Austr J Grape Wine Res. 11:242–295.
  • Bertsch PM, Bloom PR. 1996. Aluminum. In: Sparks DL, editor. Methods of soil analysis part 3. chemical methods. Madison: Soil Science Society of America; p. 517–550.
  • Boechat CL, Ribeiro MO, Santos JAG, Maria De Aguiar AA. 2014. Mineralizable nitrogen of organic wastes and soil chemical changes under laboratory conditions. Commun Soil Sci Plant Anal. 45:1981–1994.
  • Bustamante MA, Moral R, Paredes C, Pérez-Espinosa A, Moreno-Caselles J, Pérez-Murcia MD. 2008. Agrochemical characterisation of the solid by-products and residues from the winery and distillery industry. Waste Manage. 28:372–380.
  • Bustamante MA, Pérez-Murcia MD, Paredes C, Moral R, Pérez-Espinosa A, Moreno-Caselles J. 2007. Short-term carbon and nitrogen mineralisation in soil amended with winery and distillery organic wastes. Bioresour Technol. 98:3269–3277.
  • Bustamante MA, Said-Pullicino D, Agulló E, Andreu J, Paredes C, Moral R. 2011. Application of winery and distillery waste composts to a jumilla (SE Spain) vineyard: effects on the characteristics of a calcareous sandy-loam soil. Agric Ecosyst Environ. 140:80–87.
  • Chae YM, Tabatabai MA. 1986. Mineralization of nitrogen in soils amended with organic wastes. J Environ Qual. 15:193–198.
  • Christou M, Avramides EJ, Jones DL. 2006. Dissolved organic nitrogen dynamics in a mediterranean vineyard soil. Soil Biol Biochem. 38:2265–2277.
  • Cordovil C, Cabral F, Coutinho J. 2007. Potential mineralization of nitrogen from organic wastes to ryegrass and wheat crops. Bioresour Technol. 98:3265–3268.
  • Cordovil CMDS, Coutinho J, Goss M, Cabral F. 2005. Potentially mineralizable nitrogen from organic materials applied to a sandy soil: fitting the one-pool exponential model. Soil Use Manage. 21:65–72.
  • De Boer W, Klein Gunnewiek PA, Laanbroek HJ. 1995. Ammonium-oxidation at low pH by a chemolithotrophic bacterium belonging to the genus nitrosospira. Soil Biol Biochem. 27:127–132.
  • De Souza HA, Natale W, Modesto VC, Rozane DE. 2011. Nitrogen mineralization from the application of the residue of guava processing industry in ultisol. Bragantia. 70:882–887.
  • Devesa-Rey R, Vecino X, Varela-Alende JL, Barral MT, Cruz JM, Moldes AB. 2011. Valorization of winery waste vs. the costs of not recycling. Waste Manage. 31:2327–2335.
  • Diaz MJ, Madejón E, López F, López R, Cabrera F. 2002. Optimization of the rate vinasse/grape marc for co-composting process. Process Biochem. 37:1143–1150.
  • Dou Z, Toth JD, Jabro JD, Fox RH, Fritton DD. 1996. Soil nitrogen mineralization during laboratory incubation: dynamics and model fitting. Soil Biol Biochem. 28:625–632.
  • Eghball B. 2000. Nitrogen mineralization from field-applied beef cattle feedlot manure or compost. Soil Sci Soc Am J. 64:2024–2030.
  • Fernández-Calviño D, Nóvoa-Muñoz JC, Díaz-Raviña M, Arias-Estévez M. 2009. Copper accumulation and fractionation in vineyard soils from temperate humid zone (NW Iberian Peninsula). Geoderma. 153:119–129.
  • Fontanive AV, De La Horra AM. 1995. Soil´s nitrate, comparison of two dosage methods. Agr Tec. 55:278–282.
  • Gee GW, Bauder JW. 1986. Particle-size analysis. In Klute K, editor. SSSA book series 5, Methods of soil analysis part 1.Physical and mineralogical methods. 2nd ed. Madison: ASA and SSSA; p. 377–382.
  • González-Prieto SJ, Cabaneiro A, Villar MC, Carballas M, Carballas T. 1996. Effect of soil characteristics on N mineralization capacity in 112 native and agricultural soils from the Northwest of Spain. Biol Fertil Soils. 22:252–260.
  • Hernández T, Moral R, Perez-Espinosa A, Moreno-Caselles J, Perez-Murcia MD, García C. 2002. Nitrogen mineralisation potential in calcareous soils amended with sewage sludge. Bioresour Technol. 83:213–219.
  • IUSS Working Group WRB. 2015. World reference base for soil resources 2014, International soil classification system for naming soils and creating legends for soil maps. World Soil Resources Reports No. 106. Rome: FAO.
  • Kumar K, Rosen CJ, Gupta SC. 2002. Kinetics of nitrogen mineralization in soils amended with sugar beet processing by-products. Commun Soil Sci Plant Anal. 33:3635–3651.
  • Meisner A, Bååth E, Rousk J. 2013. Microbial growth responses upon rewetting soil dried for four days or one year. Soil Biol Biochem. 66:188–192.
  • Moldes AB, Vázquez M, Domínguez JM, Díaz-Fierros F, Barral MT. 2008. Negative effect of discharging vinification lees on soils. Bioresour Technol. 99:5991–5996.
  • Morlat R, Chaussod R. 2008. Long-term additions of organic amendments in a Loire valley vineyard. I. Effects on properties of a calcareous sandy soil. Am J Enol Vitic. 59:353–363.
  • Mulvaney RL. 1996. Nitrogen – Inorganic forms. In: Sparks DL, editor. Methods of soil analysis part 3. chemical methods. Madison: Soil Science Society of America; p. 1123–1184.
  • Nendel C, Reuter S. 2007. Kinetics of net nitrogen mineralisation from soil-applied grape residues. Nutr Cycl Agroecosyst. 79:233–241.
  • Paradelo M, Perez-Rodríguez P, Arias-Estévez M, López-Periago JE. 2010. Effect of particle size on copper oxychloride transport through saturated sand columns. J Agric Food Chem. 58:6870–6875.
  • Pateiro-Moure M, Nóvoa-Muñoz JC, Arias-Estévez M, López-Periago E, Martínez-Carballo E, Simal-Gándara J. 2009. Quaternary herbicides retention by the amendment of acid soils with a bentonite-based waste from wineries. J Hazard Mater. 164:769–775.
  • Rasouli-Sadaghiani MH, Moradi N. 2014. Effect of poultry, cattle, sheep manures and sewage sludge on N mineralisation. Chem Ecol. 30:666–675.
  • Requejo MI, Cartagena MC, Villena R, Giraldo L, Arce A, Ribas F, Cabello MJ, Castellanos MT. 2016. Nitrogen mineralisation in soil after addition of wine distillery waste compost: laboratory and field evaluation. Soil Res. 54:144–153.
  • Rodríguez-Salgado I, Paradelo-Pérez M, Pérez-Rodríguez P, Cutillas-Barreiro L, Fernández-Calviño D, Nóvoa-Muñoz JC, Arias-Estévez M. 2014. Cyprodinil retention on mixtures of soil and solid wastes from wineries. effects of waste dose and ageing. Environ Sci Pollut Res. 21:9785–9795.
  • Schmidt EL. 1982. Nitrification in soil. In: Stevenson FJ, editor. Nitrogen in agricultural soils. Agron Monogr 22. Madison: ASA, CCSA, SSSA; p. 253–288.
  • Stanford G, Smith SJ. 1972. Nitrogen mineralization potentials of soils. Soil Sci Soc Am Proc. 36:465–472.
  • Sumner ME, Miller WP. 1996. Cation exchange capacity and exchange coefficients. In: Sparks DL, editor. Methods of soil analysis part 3, chemical methods. Madison: Soil Science Society of America; p. 1201–1229.
  • Van Kessel JS, Reeves JB. 2002. Nitrogen mineralization potential of dairy manures and its relationship to composition. Biol Fertil Soils. 36:118–123.
  • Villar MC, Beloso MC, Acea MJ, Cabaneiro A, González-Prieto SJ, Carballas M, Díaz-Raviña M, Carballas T. 1993. Physical and chemical characterization of four composted urban refuses. Bioresour Technol. 45:105–113.
  • Wang N, Xu R, Li J. 2011. Amelioration of an acid ultisol by agricultural by-products. Land Degrad Dev. 22:513–518.
  • Xiao K, Xu J, Tang C, Zhang J, Brookes PC. 2013. Differences in carbon and nitrogen mineralization in soils of differing initial pH induced by electrokinesis and receiving crop residue amendments. Soil Biol Biochem. 67:70–84.

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