992 resultados para Soil porosity


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Pós-graduação em Agronomia (Irrigação e Drenagem) - FCA

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Pós-graduação em Agronomia (Produção Vegetal) - FCAV

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Com este estudo objetivou-se avaliar a variação na fertilidade do solo e na fauna edáfica sob reflorestamento com paricá (Schizolobium amazonicum Heber ex. Ducke) em monocultivo ou em sistema agroflorestal quando comparados com floresta secundária em área experimental considerando a sazonalidade da precipitação no período de 2009 e 2010. A área experimental pertence a Fazenda Tramontina Belém S/A, localizada no nordeste paraense, no município de Aurora do Pará. Foram analisados quatro tratamentos submetidos a reflorestamento com: Curauá (Ananas comosus var. erectifolius L.B.Smith), Paricá (Shizolobium var. amazonicum Huber ex Ducke) sob a forma de monocultivos, Paricá + curauá (Ananas comosus var. erectifolius L.B.Smith; Shizolobium var. amazonicum Huber ex Ducke); Paricá + Mogno + Freijó + Curauá (Shizolobium var. amazonicum Huber ex Ducke; Switenia macrophylla, King; Cordia goeldiana Huber; Ananas comosus var. erectifolius L.B.Smith). As amostragens foram realizadas em dezembro de 2009, abril e julho de 2010, o que caracterizou o período sazonal de transição (estiagem para chuva intensa), chuva intensa e estiagem respectivamente, para avaliar a granulometria, densidade aparente, densidade da partícula, porosidade total e umidade atual, bases trocáveis, soma de bases, CTC, acidez, fósforo, teor de carbono orgânico, pH, em três profundidades diferentes (0 – 10 cm. 10 - 20 cm; 20 – 40 cm) e a ocorrência de macrofauna edáfica. Os resultados mostraram a ação dos períodos sazonais sobre a densidade aparente, densidade da partícula, porosidade total do solo. Fatores químicos como, por exemplo, carbono orgânico, cujos teores variaram entre 5,85 g/kg e 13,00 g/kg, com teores elevados no sistema de cultivo S2, sofreu alterações nos períodos sazonais chuva intensa e estiagem. Quanto a fauna edáfica, foram capturados 9.964 invertebrados pertencentes a 26 táxons diferentes. Os mais abundantes foram Hymenoptera- Formicidae (5.805), Coleoptera (1.454), Acari (862), Collembola (649), Diplopoda (307) e Isopoda (110). Dos 26 táxons identificados, aproximadamente 40% deles apresentaram apenas um representante nas três amostragens efetuadas ou em apenas uma delas. Os maiores valores para frequência relativa ocorreu no sistema de cultivo S2, S4 e S3, respectivamente. O maior valor para frequência absoluta ocorreu durante o período sazonal chuva intensa em S1. As áreas sob reflorestamento com monocultivo e sistema agroflorestal paricà + curauá mostraram melhores desempenhos na recuperação da fertilidade do solo e da fauna edáfica comprovando a eficácia do paricá em monocultivo ou em sistema agroflorestal na recuperação da fertilidade do solo e da fauna edáfica.

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Pós-graduação em Agronomia - FEIS

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Pós-graduação em Agronomia - FEIS

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The understanding and quantification of the impact of tillage systems in their physical quality are fundamental in the development of sustainable agricultural systems. This study aimed to evaluate the quality of an Oxisol under conventional tillage (CT) and no-tillage system (NT), through different physical indicators. The management systems were: CT and NT for seven or eight consecutive years (medium textured soil) and CT and NT by nine and ten consecutive years (clay soil). Were determined, at the layers 0-0.10, 0.10-0.20; 0.20-0.30 m, soil resistance to penetration, total soil porosity, macroporosity and microporosity, soil water retention, S index, soil bulk density, maximum density and relative bulk density. Was observed great variation of soil resistance to penetration throughout the soybean and corn cycles, with its highest values were found in the surface layers. The NT showed greater resistance to penetration. Among the management systems, the results against indicators of soil physical quality were similar.

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A avaliação dos atributos químicos e físicos do solo é necessária em estudos que exploram intensivamente os sistemas de pastejo. No presente trabalho, objetivou-se avaliar as variações nos atributos físicos e químicos de um Argissolo cultivado com capim-milênio, sob pastejo, no intervalo compreendido entre outubro/2001 e maio/2002, no quinto ano de aplicação sucessiva das seguintes doses de N: 0, 150, 300 e 450 kg ha-1. Após os cinco anos de aplicação de 450 kg ha-1 de N, o teor de MO aumentou em 5 g dm-3, o que resultou em aumento da CTC. No período de outubro/2001 a maio/2002 houve diminuição nos valores de pH e de V com a aplicação de N. A densidade do solo variou pouco com a adubação nitrogenada; a percentagem de microporos aumentou e a de macroporos diminuiu na camada de 0-5 cm com o aumento das doses de N, mas a porosidade total permaneceu constante; e a resistência à penetração, quando o solo apresentava 90 g kg-1 de água, não foi afetada pelas doses de N e não foi restritiva ao crescimento das plantas.

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Regeneration microsites are characterized by diverse combinations of attributes which assure the best conditions for seed germination and seedling establishment. By understanding these attributes, we can contribute to determining better management methodologies for reestablishing ecological process in sites under restoration. Thus, we sought to characterize and differentiate the micro-site conditions of restoration plantings to indentify likely physical-chemical limitations for the establishment of native tree species in the forest understory. This study was carried out in reforestation plantings with different ages (10, 22 and 55 years). The physical-chemical characterization of the micro-site of regeneration of the study areas was carried out by evaluating the soil compression level, porosity, humidity, organic matter and nutrients content and granulometry, as well as litter dry mass and canopy cover. An increase on the canopy cover and soil porosity, humidity, clay and organic matter content were observed in the oldest restored areas, as well as a decrease in soil compression. Thus, these findings demonstrated that the evaluated microsite properties are in process of restoration. Therefore, microsite conditions for seedling establishment become even more similar to reference ecosystems as restoration planting evolve.

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This paper investigates the tidal effects on aeration conditions for plant root respiration in a tidal marsh. We extend the work of Ursino et al. ( 2004) by using a two-phase model for air and water flows in the marsh. Simulations have been conducted to examine directly the link between the airflow dynamics and the aeration condition in the marsh soil. The results show that the effects of entrapped air on water movement in the vadose zone are significant in certain circumstances. Single-phase models based on Richards' equation, which neglect such effects, may not be adequate for quantifying the aeration condition in tidal marsh. The optimal aeration condition, represented by the maximum of the integral magnitude of tidally advected air mass ( TAAM) flux, is found to occur near the tidal creek for the four soil textures simulated. This may explain the observation that some salt marsh plant species grow better near tidal creeks than in the inner marsh areas. Our analyses, based on the two-phase model and predicted TAAM flux magnitude, provide further insight into the positive feedback'' mechanism proposed by Ursino et al. ( 2004). That is, pioneer plants may grow successfully near the creek where the root aeration condition is optimal. The roots of the pioneer plants can soften and loosen the rhizosphere soil, which increases the evapotranspiration rate, the soil porosity, and absolute permeability and weakens the capillary effects. These, in turn, improve further the root aeration conditions and may lead to colonization by plants less resistant to anaerobic conditions.

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Soil compaction has been recognised as the greatest problem in terms of damage to Australia's soil resource. Compaction by tractor and harvester tyres, related to trafficking of wet soil, is one source of the problem. In this paper an array of soil properties was measured before and immediately after the application of a known compaction force to a wet Vertisol, A local grain harvester was used on soil that was just trafficable; a common scenario at harvest. The primary aim was to determine the changes in various soil properties in order to provide a benchmark against which the effectiveness of future remedial treatments could be evaluated. A secondary aim was a comparison of the measurements' efficiency to assess a soil's structural degradation status. Also assessed was the subsequent effect of the applied compaction on wheat growth and yield in the following cropping season. Nine of the soil properties measured gave statistically significant differences as a result of the soil compaction. Differences were mostly restricted to the top 0.2 m of the soil. The greatest measured depth of effect was decreased soil porosity to 0.4 m measured from intact soil clods. There was 72% emergence of the wheat crop planted into the compact soil and 93% in the uncompact soil. Wheat yield, however, was not affected by the compaction. This may demonstrate that wheat, growing on a full profile of stored soil water as did the current crop, may be little affected by compaction, Also, wheat may have potential to facilitate rapid repair of the damage in a Vertisol such as the current soil by drying the topsoil between rainfall events so increasing shrinking and swelling cycles. If this is true, then sowing a suitable crop species in a Vertisol may be a better option than tillage for repairing compaction damage by agricultural traffic. (C) 2000 Elsevier Science B.V. All rights reserved.