783 resultados para Savanna woodland


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Introduction: Brazil, is one of the main agricultural producers in the world ranking 1st in the production of sugarcane, coffee and oranges. It is also 2nd as world producer of soybeans and a leader in the harvested yields of many other crops. The annual consumption of mineral fertilizers exceeds 20 million mt, 30% of which corresponds to potash fertilizers (ANDA, 2006). From this statistic it may be supposed that fertilizer application in Brazil is rather high, compared with many other countries. However, even if it is assumed that only one fourth of this enormous 8.5 million km2 territory is used for agriculture, average levels of fertilizer application per hectare of arable land are not high enough for sustainable production. One of the major constraints is the relatively low natural fertility status of the soils which contain excessive Fe and Al oxides. Agriculture is also often practised on sandy soils so that the heavy rainfall causes large losses of nutrients through leaching. In general, nutrient removal by crops such as sugarcane and tropical fruits is much more than the average nutrient application via fertilization, especially in regions with a long history of agricultural production. In the recently developed areas, especially in the Cerrado (Brazilian savanna) where agriculture has expanded since 1980, soils are even poorer than in the "old" agricultural regions, and high costs of mineral fertilizers have become a significant input factor in determining soybean, maize and cotton planting. The consumption of mineral fertilizers throughout Brazil is very uneven. According to the 1995/96 Agricultural Census, only in eight of the total of 26 Brazilian states, were 50 per cent or more of the farms treated "systematically" with mineral fertilizers; in many states it was less than 25 per cent, and in five states even less than 12 per cent (Brazilian Institute for Geography and Statistics; Censo Agropecuario1995/96, Instituto Brazileiro de Geografia e Estadistica; IBGE, www.ibge.gov.br). The geographical application distribution pattern of mineral fertilizers may be considered as an important field of research. Understanding geographical disparities in fertilization level requires a complex approach. This includes evaluation of the availability of nutrients in the soil (and related soil properties e.g. CEC and texture), the input of nutrients with fertilizer application, and the removal of nutrients by harvested yields. When all these data are compiled, it is possible to evaluate the balance of particular nutrients for certain areas, and make conclusions as to where agricultural practices should be optimized. This kind of research is somewhat complicated, because it relies on completely different sources of data, usually from incomparable data sources, e.g. soil characteristics attributed to soil type areas, in contrast to yields by administrative regions, or farms. A priority tool in this case is the Geographical Information System (GIS), which enables attribution of data from different fields to the same territorial units, and makes possible integration of these data in an "inputoutput" model, where "input" is the natural availability of a nutrient in the soil plus fertilization, and "output" export of the same nutrient with the removed harvested yield.

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El presente artículo de fitogeografía histórica trata  de explicar a partir de documentos históricos y relatos de exploradores, buscadores de oro y científicos que recorrieron Costa Rica durante los siglos XVll, XVlll, XlX, el origen y flora de la sabana.   Las sabanas de Guanacaste deben su origen a factores antropológicos, edafológicos y climatológicos que actúan en conjunto y no solo al factor antrópico como ha querido explicar.   La flora de sabana proviene de la asociación vegetal matorral deciduo por la sequia con especies sempervirentes entremezcladas, cuya florase relaciona con la de las formaciones arbusticas herbáceas secas americanas, llanas y cerradas. Esta flora encuentra las condiciones favorables (fuego anual, larga estación seca, precipitación mal distribuida en el año, etc.) para diseminarse y ocupar el área del bosque seco deciduo por la sequia.   SUMMARY The present article of historical phytogeography tryst to explain by means of historical documents and commentaries of explorers, goldminers and scientists that traveled in Costa Rica during the 17, 18 and 19 th centuries, the origin of the flora found in the Guanacaste savanna.   The Guanacaste savanna owes its origin to a combination of anthropologic, edafologic and climatologic factors; and not only to the anthropologic factor as has been often thought.   The savanna type flora originates from the deciduous thicket vegetative association that is common in dry areas intermingled with evergreen species. This type of flora is related to shrub and opens and closed dry Americans herbaceous formations. This flora chooses favorable conditions (burnt off areas, long dry season, poor annual precipitation distribution, etc) in the order to disseminate and occupy the deciduous dry forest. RESUME Cet article de phytogéographie historique, à partir de documents historiques, de récits d’explorateurs, de chercheurs d’or ; de scientifiques qui ont parcouru C.R aux XVll, XVlll et XlX siècles, tente d’expliquer l’origine de la savane ainsi que sa flore.   On reconnaît que ces origines sont plutôt dûes aux actions conjointes de facteurs anthropologiques, pédologiques et climatiques, au lieu du seul facteur anthropologique comme on voulait l’expliquer auparavant. La savane résulte d’une association végétale : une brousse entremêlée d’espèces « semper virens » malgré l’existence de la saison sèche. Cette flore est en relation avec les informations arbustives et herbeuses –qui caractérisent les dépressions centre américaines-  fermées, fonc sèches. Cette association végétale s’est implantée à la faveur de pratiqués culturales tels les brûlis annuels, des longues saisons sèches et de la répartition irrégulière des pluies au long de l’année, à la place de la forêt claire caducifoliée.