Characterization of solute transport in agricultural volcanic soils by TDR and inverse simulation. [Spanish

Volcanic soils have particular properties that may influence solute transport. The use of TDR (Time Domain Reflectometry) to monitor bromide breakthrough curves during a miscible displacement experiment in a large, undisturbed, layered volcanic soil column, is presented. The soil solute transport pa...

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Bibliographic Details
Main Authors Ritter A, Regalado C.M, Socorro A.R, Mu.oz Carpena R
Format Conference Proceeding
LanguageSpanish
Published 2003
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Summary:Volcanic soils have particular properties that may influence solute transport. The use of TDR (Time Domain Reflectometry) to monitor bromide breakthrough curves during a miscible displacement experiment in a large, undisturbed, layered volcanic soil column, is presented. The soil solute transport parameters were estimated from bromide resident concentrations obtained with TDR by using inverse modeling. Under the high soil moisture regime considered, bromide was found to move in the undisturbed soil column mainly by convection. In addition, the early solute breakthrough observed at different depths in the soil column suggests rapid solute movement that may increase the risk of groundwater contamination by agrochemicals applied to this soil. Although bromide is assumed to behave as a tracer, adsorption of this anion was observed at the bottom of the soil profile. This is explained by means of the variablecharge nature of the minerals present in this volcanic soil (Fe and Al oxihydroxides) that exhibit anion-exchange capacity when the pH of the soil solution is below the zero point of charge. Los suelos volc.nicos presentan propiedades particulares que pueden afectar a la distribuci.n de agua y solutos en el suelo. Aplicando una t.cnica avanzada de an.lisis de la se.al de TDR (Time Domain Reflectometry) es posible estimar la concentraci.n de un soluto salino y por tanto obtener las curvas de ruptura autom.ticamente. Esta t.cnica se utiliza en un experimento de desplazamiento miscible de bromuro (Br-) en una columna de suelo inalterado de grandes dimensiones (45 cm x 85 cm), instrumentada con sondas TDR a distintas profundidades. A partir de la concentraci.n residente de Br- y empleando t.cnicas de optimizaci.n inversa se estiman los par.metros de transporte m.s relevantes en este suelo volc.nico con varios horizontes. Bajo el r.gimen de humedad contemplado, el desplazamiento del soluto resulta principalmente por convecci.n y el frente abruto que presentan las curvas de ruptura sugiere un desplazamiento r.pido de los solutos a trav.s del perfil. En consecuencia, el potencial contaminante de productos agroqu.micos aplicados a estos suelos volc.nicos se espera que sea mayor. Se observa tambi.n cierta retenci.n de Bren el horizonte inferior del perfil que puede explicarse por fen.menos de eluviaci.n y acumulaci.n de arcillas en la parte baja del perfil. En suelos volc.nicos, estos minerales tienen carga variable, y bajo determinadas condiciones de pH, su superficie puede presentar capacidad de ani.nico.
Bibliography:P
P33
84-688-3698-2
ISBN:9788468836980
8468836982