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1.
Sci Rep ; 9(1): 2565, 2019 Feb 22.
Artigo em Inglês | MEDLINE | ID: mdl-30796278

RESUMO

The formation of ore deposits has been extensively studied from a shallow crust perspective. In contrast, the association of mineral systems with deep crustal structure of their host terranes remains relatively undisclosed, and there is evidence that processes throughout the lithosphere are coupled for their evolution. The current debate centers on the control of the regional deep crustal architecture in focusing and transferring fluids between geochemical reservoirs. Defining such architecture is not unequivocal, and involves combining indirect information in order to constrain its physical properties and evolution. Herein, based on evidence from satellite gravity, constrained by airborne potential field data (gravity and magnetics), we provide an example on how the lithosphere geometry controlled the location of copper and gold systems in the world-class Archean Carajás Mineral Province (Amazonian Craton, South America). Validation with information from passive seismic (wave speeds, crustal and lithospheric thickness) and geochronologic data (model, crystallization ages, and Neodymium isotope ratio determinations) portrays a significantly enlarged, poly-phase, Archean crust that exerted geometric control on the location of the mineral systems within and adjacent to the province during tectonic quiescence and switches. This new geologic scenario impacts the understanding of the Amazonian Craton. Synergy between multi-source data, as experimented here, can provide robust models efficiently and, conceivably, help to unveil similar terrains elsewhere.

2.
Environ Int ; 31(5): 631-41, 2005 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-15910959

RESUMO

Arsenic occurs naturally in the earth's crust and is widely distributed in the environment. Natural mineralization and activities of microorganisms enhance arsenic mobilization in the environment but human intervention has exacerbated arsenic contamination. Although arsenic is useful for industrial, agricultural, medicinal and other purposes, it exerts a toxic effect in a variety of organisms, including humans. Arsenic exposure may not only affect and disable organs of the body, especially the skin, but may also interfere with the proper functioning of the immune system. This paper, therefore, generally highlights the toxic effects of arsenic as well as its mobilization in the natural environment and possible controls. It also briefly attempts to outline the impact of arsenic on the immune system, whose alteration could lead to viral/bacterial infections.


Assuntos
Intoxicação por Arsênico/fisiopatologia , Arsênio/química , Arsênio/metabolismo , Arsênio/toxicidade , Exposição Ambiental , Poluentes Ambientais/metabolismo , Poluentes Ambientais/toxicidade , Poluentes do Solo/análise , Poluentes da Água/análise , Agricultura , Animais , Desastres , Humanos , Sistema Imunitário/efeitos dos fármacos , Indústrias , Mineração , Estações do Ano , Microbiologia do Solo , Microbiologia da Água
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