Mostrar mensagens com a etiqueta África. Mostrar todas as mensagens
Mostrar mensagens com a etiqueta África. Mostrar todas as mensagens

27 setembro 2013

Reservas de água subterrânea encontradas no Quénia

   Uma exploração dos recursos hídricos subterrâneos, resultado do projecto Gridmap (Groundwater Resources Investigation for Drought Mitigation in Africa Programme) liderado pela UNESCO em parceria com o governo do Quénia e com o financiamento do Governo do Japão, identificou importantes reservas de água em Turkana, uma área devastada pela seca no norte do Quénia. 


   Foram identificados dois aquíferos - Lotikipi e Lodwar - utilizando tecnologia de satélite avançada, que combina detecção remota, sísmica e informação convencional de águas subterrâneas, para explorar e mapear a ocorrência de águas subterrâneas em grandes áreas em curtos períodos de tempo. A existência destes aquíferos já foi confirmada por perfuração, no entanto há necessidade de mais estudos para quantificar adequadamente as reservas e avaliar a qualidade da água.Também foram identificados três aquíferos adicionais em outras partes do Turkana, estes ainda não confirmados por perfuração.

03 setembro 2013

Descoberto fóssil de escorpião com 350 milhões de anos

Um fóssil de um escorpião com 350M.a., o mais velho animal terrestre que viveu no super-continente Gondwana, foi descoberto na África do Sul, anunciou hoje a Universidade de Witswatersrand, em Joanesburgo.

Esta espécie de escorpião, baptizada de Gondwanascorpio emzantsiensis, foi descoberta na África do Sul e é a mais antiga forma de vida alguma vez encontrada em terra firme, no hemisfério sul. 
 



24 junho 2013

Moçambique mostra-se ao mundo como uma das dez maiores reservas de carvão do mundo

As grandes jazidas de carvão, metalúrgico e térmico de Tete, em Moçambique, descobertas nos últimos anos são das maiores do mundo. A mineradora Vale está lá desde 2004 e emprega cerca de 1700 pessoas.

 Fonte

Observa-se  agora o revelar do potencial económico e geológico daquela que em tempos foi chamada a Colónia mais pobre.



Reportagem SIC:


1ª PARTE



2ª PARTE

21 abril 2012

África Está Sobre Uma Vasta Reserva De Água



Um estudo revela que o continente africano está sobre uma vasta reserva de águas subterrâneas. As bolsas agora mapeadas podem dar de beber a mais de 300 milhões de africanos que vivem hoje sem água potável. 

Segundo os cientistas britânicos, os aquíferos subterrâneos têm um volume de água total 100 vezes superior à água encontrada na superfície.

Os principais aquíferos localizam-se no norte do continente e cerca de metade desta reserva estará no subsolo da Líbia, Argélia e Chade, revelam os cientistas da "British Geological Survey", que, juntamente com a Universidade de Londres, mapearam em detalhe a quantidade e potencial rendimento do recurso.

Os geólogos britânicos encontraram também grandes reservas nas costas da Mauritânia, Senegal, Gâmbia e parte da Guiné-Bissau, assim como no Congo e na região limítrofe entre a Zâmbia, Angola, Namíbia e Botswana, detalha o estudo publicado esta quinta-feira na revista científica "Environmental Research Letters".

Os especialistas recolheram os planos hidrológicos elaborados por diferentes países africanos e os resultados de 283 estudos regionais anteriores.

Mais de 300 milhões em África não têm acesso a água potável.

"Estas grandes bolsas de água poderiam aliviar a situação de mais de 300 milhões de africanos que não dispõem de água potável e melhorar a produção de culturas", afirmou o especialista do British Geological Survey, à BBC.

Em muitas zonas áridas e semi-áridas do continente seria possível extrair facilmente água destas reservas, em muitos casos localizadas a menos de 25 metros de profundidade. Já nalguns países do norte, como a Líbia, as reservas estão a mais de 250 metros de profundidade.

"O Corno de África é onde se encontram os aquíferos mais pequenos, mas ainda assim haveria uma quantidade suficiente para o consumo humano e uma extração por poços não seria cara. Além disso, não seria necessário investir no tratamento da água, porque a sua qualidade é muito boa", disse McDonald.

O aumento da população aumenta as necessidades de água, para consumo e rega, sendo que as projeções demográficas para as próximas décadas apontam para a continuação desse crescimento. 

Hoje, apenas cinco por cento dos terrenos férteis de África são irrigados.
Ainda assim, segundo MacDonald, a exploração das reservas através de grandes perfurações não é a melhor estratégia, devendo antes ser extraída apenas a quantidade de água que possa ser reposta pelas precipitações.

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Retirado de:
http://www.jn.pt/PaginaInicial/Mundo/Interior.aspx?content_id=2432754&page=-1

22 novembro 2010

East Africa's Great Rift Valley: A Complex Rift System Part II

If the rifting process described occurs in a continental setting, then we have a situation similar to what is now occurring in Kenya where the East African/Gregory Rift is forming. In this case it is referred to as "continental rifting" (for obvious reasons) and provides a glimpse into what may have been the early development of the Ethiopian Rift. As mentioned in Part I, the rifting of East Africa is complicated by the fact that two branches have developed, one to the west which hosts the African Great Lakes (where the rift filled with water) and another nearly parallel rift about 600 kilometers to the east which nearly bisects Kenya north-to-south before entering Tanzania where it seems to die out .Lake Victoria sits between these two branches. It is thought that these rifts are generally following old sutures between ancient continental masses that collided billions of years ago to form the African craton and that the split around the Lake Victoria region occurred due to the presence of a small core of ancient metamorphic rock, the Tanzania craton, that was too hard for the rift to tear through. Because the rift could not go straight through this area, it instead diverged around it leading to the two branches that can be seen today. As is the case in Ethiopia, a hot spot seems to be situated under central Kenya, as evidenced by the elevated topographic dome there .This is almost exactly analogous to the rift Ethiopia, and in fact, some geologists have suggested that the Kenya dome is the same hotspot or plume that gave rise to the initial Ethiopian rifting. Whatever the cause, it is clear that we have two rifts that are separated enough to justify giving them different names, but near enough to suggest that they are genetically related.

Conclusions

The East African Rift System is a complicated system of rift segments which provide a modern analog to help us understand how continents break apart. It is also a great example of how many natural systems can be intertwined - this unique geological setting may have altered the local climate which may have in turn caused our ancestors to develop the skills necessary to walk upright, develop culture and ponder how such a rift came to be. Just like the Grand Canyon, the East African Rift System should be high on any geologist's list of geologic marvels to visit.


This was taken at the Njorowa Gorge in Hell's Gate National Park (Kenya). The gorge was carved by water, and is quite spectacular in many regards, but here we have an igneous dike cutting through the wall of the canyon, with Dr. Wood and one of our guides for scale. To enlarge (http://geology.com/articles/east-africa-rift/hells-gate-dike-750.jpg)

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Fonte:: Geology.com

East Africa's Great Rift Valley: A Complex Rift System Part I

The East African Rift System
The East African Rift System (EARS) is one the geologic wonders of the world, a place where the earth's tectonic forces are presently trying to create new plates by splitting apart old ones. In simple terms, a rift can be thought of as a fracture in the earth's surface that widens over time, or more technically, as an elongate basin bounded by opposed steeply dipping normal faults. Geologists are still debating exactly how rifting comes about, but the process is so well displayed in East Africa (Ethiopia-Kenya-Uganda-Tanzania) that geologists have attached a name to the new plate-to-be; the Nubian Plate makes up most of Africa, while the smaller plate that is pulling away has been named the Somalian Plate (Figure 1). These two plates are moving away form each other and also away from the Arabian plate to the north. The point where these three plates meet in the Afar region of Ethiopia forms what is called a triple-junction. However, all the rifting in East Africa is not confined to the Horn of Africa; there is a lot of rifting activity further south as well, extending into Kenya and Tanzania and Great Lakes region of Africa. The purpose of this paper is to discuss the general geology of these rifts are and highlight the geologic processes involved in their formation.
Figure 1: Colored Digital Elevation Model showing tectonic plate boundaries, outlines of the elevation highs demonstrating the thermal bulges and large lakes of East Africa. To enarlge (http://geology.com/articles/east-africa-rift/figure1.jpg)


Figure 2: Rift segment names for the East African Rift System. Smaller segments are sometimes given their own names, and the names given to the main rift segments change depending on the source. To enalrge (http://geology.com/articles/east-africa-rift/figure2.jpg)

What is the East Africa Rift System?
The oldest and best defined rift occurs in the Afar region of Ethiopia and this rift is usually referred to as the Ethiopian Rift. Further to the South a series of rifts occur which include a Western branch, the "Lake Albert Rift" or "Albertine Rift" which contains the East African Great Lakes, and an Eastern branch that roughly bisects Kenya north-to-south on a line slightly west of Nairobi (Figure 2). These two branches together have been termed the East African Rift (EAR), while parts of the Eastern branch have been variously termed the Kenya Rift or the Gregory Rift (after the geologist who first mapped it in the early 1900's). The two EAR branches are often grouped with the Ethiopian Rift to form the East Africa Rift System (EARS). The complete rift system therefore extends 1000's of kilometers in Africa alone and several 1000 more if we include the Red Sea and Gulf of Aden as extensions. In addition there are several well-defined but definitely smaller structures, called grabens, that have rift-like character and are clearly associated geologically with the major rifts. Some of these have been given names reflecting this such as the Nyanza Rift in Western Kenya near Lake Victoria. Thus, what people might assume to be a single rift somewhere in East Africa is really a series of distinct rift basins which are all related and produce the distinctive geology and topography of East Africa.
Figure 3: "Textbook" horst and graben formation (left) compared with actual rift terrain (upper right) and topography (lower right). Notice how the width taken up by the trapezoidal areas undergoing normal faulting and horst and graben formation increases from top to bottom in the left panel. Rifts are considered extensional features (continental plates are pulling apart) and so often display this type of structure. To enlarge (http://geology.com/articles/east-africa-rift/figure3.jpg)
How did these Rifts form?
The exact mechanism of rift formation is an on-going debate among geologists and geophysicists. One popular model for the EARS assumes that elevated heat flow from the mantle (strictly the asthenosphere) is causing a pair of thermal "bulges" in central Kenya and the Afar region of north-central Ethiopia. These bulges can be easily seen as elevated highlands on any topographic map of the area (Figure 1). As these bulges form, they stretch and fracture the outer brittle crust into a series of normal faults forming the classic horst and graben structure of rift valleys (Figure 3). Most current geological thinking holds that bulges are initiated by mantle plumes under the continent heating the overlying crust and causing it to expand and fracture. Ideally the dominant fractures created occur in a pattern consisting of three fractures or fracture zones radiating from a point with an angular separation of 120 degrees. The point from which the three branches radiate is called a "triple junction" and is well illustrated in the Afar region of Ethiopia (Figure 4), where two branches are occupied by the Red Sea and Gulf of Aden, and the third rift branch runs to the south through Ethiopia.
Figure 4: Triple Junction in the Afar region of Ethiopia. Image shows areas of stretched and oceanic crust as well as areas of exposed flood basalts that preceded rifting. Areas unshaded or covered by flood basalts represent normal continental crust. As the crust is pulled apart you end up with thinned crust with a complex mixture of continental and volcanic rock. Eventually the crust thins to the point where oceanic-type basalts are erupted which is the signal that new ocean crust is being formed. This can be seen in the Gulf of Aden as well as a small sliver within the Red Sea. The original extent of the flood basalts would have been greater, but large areas have been buried within the rift valley by other volcanic eruptions and sediments. To enlarge (http://geology.com/articles/east-africa-rift/figure4.jpg)
The stretching process associated with rift formation is often preceded by huge volcanic eruptions which flow over large areas and are usually preserved/exposed on the flanks of the rift. These eruptions are considered by some geologists to be "flood basalts" - the lava is erupted along fractures (rather than at individual volcanoes) and runs over the land in sheets like water during a flood. Such eruptions can cover massive areas of land and develop enormous thicknesses (the Deccan Traps of India and the Siberian Traps are examples). If the stretching of the crust continues, it forms a "stretched zone" of thinned crust consisting of a mix of basaltic and continental rocks which eventually drops below sea level, as has happened in the Red Sea and Gulf of Aden. Further stretching leads to the formation of oceanic crust and the birth of a new ocean basin.
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Fonte: Geology.com