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Registro Completo |
Biblioteca(s): |
Embrapa Meio-Norte; Embrapa Rondônia; Embrapa Solos / UEP-Recife; Embrapa Uva e Vinho. |
Data corrente: |
20/08/1992 |
Data da última atualização: |
23/04/2009 |
Autoria: |
FASSBENDER, H. W. |
Título: |
Quimica de suelos: con enfasis en suelos de America Latina. |
Ano de publicação: |
1984 |
Fonte/Imprenta: |
San Jose : IICA, 1984. |
Páginas: |
398 p. |
Idioma: |
Espanhol |
Conteúdo: |
Componentes inorganicos de la fase solida del suelo; Componentes organicos de la fase solida del suelo; Componentes organo-minerales del suelo; Composicion quimica de las fases liquida y gaseosa del suelo; Propiedades quimicas del suelo; Intercambios cationico y anionico; Reaccion del suelo; Condiciones de oxidacion y reduccion; Coagulacion y peptzacion; Quimica dinamica de los elementos nutritivos; Nitrogeno; Fosforo; Azufre; Potasio; Calcio y Magnesio; Elementos menores. |
Palavras-Chave: |
America Latina; Caracteristica; Propriedade; Soils; Solos. |
Thesagro: |
Química; Química do Solo; Solo. |
Thesaurus Nal: |
chemistry; Latin America. |
Categoria do assunto: |
-- |
Marc: |
LEADER 01056nam a2200241 a 4500 001 1537620 005 2009-04-23 008 1984 bl uuuu 00u1 u #d 100 1 $aFASSBENDER, H. W. 245 $aQuimica de suelos$bcon enfasis en suelos de America Latina. 260 $aSan Jose : IICA$c1984 300 $a398 p. 520 $aComponentes inorganicos de la fase solida del suelo; Componentes organicos de la fase solida del suelo; Componentes organo-minerales del suelo; Composicion quimica de las fases liquida y gaseosa del suelo; Propiedades quimicas del suelo; Intercambios cationico y anionico; Reaccion del suelo; Condiciones de oxidacion y reduccion; Coagulacion y peptzacion; Quimica dinamica de los elementos nutritivos; Nitrogeno; Fosforo; Azufre; Potasio; Calcio y Magnesio; Elementos menores. 650 $achemistry 650 $aLatin America 650 $aQuímica 650 $aQuímica do Solo 650 $aSolo 653 $aAmerica Latina 653 $aCaracteristica 653 $aPropriedade 653 $aSoils 653 $aSolos
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Embrapa Uva e Vinho (CNPUV) |
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Registro Completo
Biblioteca(s): |
Embrapa Solos. |
Data corrente: |
21/09/2021 |
Data da última atualização: |
21/09/2021 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
B - 1 |
Autoria: |
ALLEONI, L. R. F.; PEIXOTO, R. T. dos G.; AZEVEDO, A. C. de; MELO, L. C. A. |
Afiliação: |
LUIS REYNALDO FERRACCIU ALLEONI, ESALQ/USP; RICARDO TRIPPIA DOS G PEIXOTO, CNPS; ANTONIO CARLOS DE AZEVEDO, USP; LEONIDAS CARRIJO AZEVEDO MELO, USP. |
Título: |
Components of surface charge in tropical soils with contrasting mineralogies. |
Ano de publicação: |
2009 |
Fonte/Imprenta: |
Soil Science, v. 174, n. 11, p. 629-638, Nov. 2009. |
DOI: |
http://doi.org/10.1097/SS.0b013e3181c17a93 |
Idioma: |
Inglês |
Conteúdo: |
Study of surface electric charges of soil colloids helps in understanding the physicochemical phenomena that influence the capacity of retaining nutrients and their availability to plants. The structural charge (sigma(0), (min)), the variable charge (sigma(q, min)), and the organic matter (OM) charge (sigma(total) (OM)) of 12 tropical soils with contrasting mineralogies were evaluated based on the difference of selectivity for Cs+ and Li+ between the functional ionizable surfaces groups and the mineral 2:1 siloxane surface. Soils were divided into three groups: G1, soils with a predominance of kaolinite and gibbsite in the clay fraction; G2, soils with hydroxy-interlayered 2:1 minerals; and G3, soils with smectite but without hydroxy-interlayered 2:1 minerals. The Cs absorption method was efficient for detecting the charge components in tropical soils. The mineral structural charge contributed 11% and 16%, 28% and 31%, and 52% and 59% of total soil charge of A and B horizons of soils from groups G 1, G2, and G3, respectively. On the other hand, OM contributed 53% and 37%, 48% and 41%, and 21% and 20% of total charge for the same samples, respectively, In highly weathered soils of group G I and, to a lesser extent, in soils in group G2, surface charges depended mainly on their variable components, resulting from the OM (sigma(toal) (OM)), as well as from imperfections found in 1:1 minerals (sigma(q, min)). The importance of OM in determining the magnitude of electric charges in humid tropical soils is highlighted. MenosStudy of surface electric charges of soil colloids helps in understanding the physicochemical phenomena that influence the capacity of retaining nutrients and their availability to plants. The structural charge (sigma(0), (min)), the variable charge (sigma(q, min)), and the organic matter (OM) charge (sigma(total) (OM)) of 12 tropical soils with contrasting mineralogies were evaluated based on the difference of selectivity for Cs+ and Li+ between the functional ionizable surfaces groups and the mineral 2:1 siloxane surface. Soils were divided into three groups: G1, soils with a predominance of kaolinite and gibbsite in the clay fraction; G2, soils with hydroxy-interlayered 2:1 minerals; and G3, soils with smectite but without hydroxy-interlayered 2:1 minerals. The Cs absorption method was efficient for detecting the charge components in tropical soils. The mineral structural charge contributed 11% and 16%, 28% and 31%, and 52% and 59% of total soil charge of A and B horizons of soils from groups G 1, G2, and G3, respectively. On the other hand, OM contributed 53% and 37%, 48% and 41%, and 21% and 20% of total charge for the same samples, respectively, In highly weathered soils of group G I and, to a lesser extent, in soils in group G2, surface charges depended mainly on their variable components, resulting from the OM (sigma(toal) (OM)), as well as from imperfections found in 1:1 minerals (sigma(q, min)). The importance of OM in determining the magnitude of electric charges ... Mostrar Tudo |
Thesagro: |
Matéria Orgânica; Solo. |
Thesaurus NAL: |
Soil organic matter. |
Categoria do assunto: |
P Recursos Naturais, Ciências Ambientais e da Terra |
Marc: |
LEADER 02176naa a2200205 a 4500 001 2134609 005 2021-09-21 008 2009 bl uuuu u00u1 u #d 024 7 $ahttp://doi.org/10.1097/SS.0b013e3181c17a93$2DOI 100 1 $aALLEONI, L. R. F. 245 $aComponents of surface charge in tropical soils with contrasting mineralogies.$h[electronic resource] 260 $c2009 520 $aStudy of surface electric charges of soil colloids helps in understanding the physicochemical phenomena that influence the capacity of retaining nutrients and their availability to plants. The structural charge (sigma(0), (min)), the variable charge (sigma(q, min)), and the organic matter (OM) charge (sigma(total) (OM)) of 12 tropical soils with contrasting mineralogies were evaluated based on the difference of selectivity for Cs+ and Li+ between the functional ionizable surfaces groups and the mineral 2:1 siloxane surface. Soils were divided into three groups: G1, soils with a predominance of kaolinite and gibbsite in the clay fraction; G2, soils with hydroxy-interlayered 2:1 minerals; and G3, soils with smectite but without hydroxy-interlayered 2:1 minerals. The Cs absorption method was efficient for detecting the charge components in tropical soils. The mineral structural charge contributed 11% and 16%, 28% and 31%, and 52% and 59% of total soil charge of A and B horizons of soils from groups G 1, G2, and G3, respectively. On the other hand, OM contributed 53% and 37%, 48% and 41%, and 21% and 20% of total charge for the same samples, respectively, In highly weathered soils of group G I and, to a lesser extent, in soils in group G2, surface charges depended mainly on their variable components, resulting from the OM (sigma(toal) (OM)), as well as from imperfections found in 1:1 minerals (sigma(q, min)). The importance of OM in determining the magnitude of electric charges in humid tropical soils is highlighted. 650 $aSoil organic matter 650 $aMatéria Orgânica 650 $aSolo 700 1 $aPEIXOTO, R. T. dos G. 700 1 $aAZEVEDO, A. C. de 700 1 $aMELO, L. C. A. 773 $tSoil Science$gv. 174, n. 11, p. 629-638, Nov. 2009.
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