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  • 1
    Online Resource
    Online Resource
    Universidad Nacional de Colombia ; 2016
    In:  Earth Sciences Research Journal Vol. 20, No. 3 ( 2016-12-01), p. 1-
    In: Earth Sciences Research Journal, Universidad Nacional de Colombia, Vol. 20, No. 3 ( 2016-12-01), p. 1-
    Abstract: Remote sensing quantitative retrieval of ecological water (eco-water) has been foundational in systemic and quantitative research for water resources. Eco-water resource levels indicate conservation ability for the eco-water layer and influence of this on precipitation transformation and runoff regulation. The remote sensing quantitative inversion retrieved the MEC (Modulus of eco-water Conservation) of the Upper Minjiang River Basin study area in 1994 and 2001, and combined with climate data between 1990 and 2005, the influence of conservation water on the eco-water layer on runoff was then analyzed. Results revealed significant efficacy for flood control and water supply during the drought from the hydrologic cycle of ecowater. Thus protection and restoration of the eco-water layer for flood and drought prevention are crucial.  Influencia del agua ecológica en la escorrentía de la cuenca alta del río Minjiang medida a través de teledetección cuantitativa ResumenEl sondeo remoto del agua ecológica (del inglés Eco-water, agua conservada en la superficie terrestre) es indispensable en la investigación sistemática y cuantitativa de las fuentes de agua. Los niveles de suministros de agua ecológica indican la capacidad de conservación de la capa de agua ecológica y la influencia de esta en la transformación de precipitación y la regulación de escorrentía. La inversión cuantitativa por sondeo remoto estableció el Módulo de Conservación de Agua Ecológica (MEC, del inglés Modulus of Eco-Water Conservation) para el área de estudio en la cuenca alta del río Minjiang entre 1994 y 2001, y combinada con la información climática de entre 1990 y 2005, se analizó la influencia de conservacion de agua en la capa ecoacuática. Los resultados mostraron una gran eficacia en el control de inundaciones y en el suministro de agua durante la sequía a lo largo del ciclo hidrológico. Por esta razón, la protección y restauración de la capa de agua ecológica para la prevención de inundaciones y sequía es necesaria.
    Type of Medium: Online Resource
    ISSN: 2339-3459 , 1794-6190
    Language: Unknown
    Publisher: Universidad Nacional de Colombia
    Publication Date: 2016
    detail.hit.zdb_id: 2233404-X
    SSG: 7,36
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  • 2
    Online Resource
    Online Resource
    Universidad Nacional de Colombia ; 2017
    In:  Earth Sciences Research Journal Vol. 21, No. 2 ( 2017-04-01), p. 59-65
    In: Earth Sciences Research Journal, Universidad Nacional de Colombia, Vol. 21, No. 2 ( 2017-04-01), p. 59-65
    Abstract: The Ga’erqiong Cu-Au deposit, which sits on the north side of the Coqên-Xainzamagmatite belt, is a large-scale skarn-type deposit, whose ore body has formed in the skarn zone in the contact part of quartz diorite and marble of Duoai formation or the cracks of quartz diorite. Its mineralization is closely related to quartz diorite. And granite porphyry-related molybdenum ore still exists in its deep part. Currently, there are disputes about the metallogenic dynamics background of this deposit. From previous studies, this paper carried out zircon LA-LCPMS U-Pb dating and petrogeochemistry study for quartz diorite of Ga’erqiong Cu-Au deposit. The testing result indicates: quartz diorite and granite porphyry were formed respectively in 88±2Ma and 83±1Ma, belonging to the magmatic activity of the early stage of Upper Cretaceous; quartz diorite and granite porphyry have geochemical characteristics similar to those of island arc rock of subduction zone and geochemical indexes similar to “adakite.” Combining with the regional tectonic evolution, we think that quartz diorite and granite porphyry were all formed in the extension environment after the collision of Lhasa block and Qiangtang block. Quartz diorite is the result of the migmatization of basic melt and acid melt evoked by asthenosphere material raise caused by lower crustal delamination; the formation of granite porphyry may be crust-mantle material’s partial melting results due to delaminated lower crustal. Therefore, Ga’erqiongskarn-type Cu-Au deposit belongs to the metallogenic response to the collisional orogeny in the closing process of Meso-Tethys.
    Type of Medium: Online Resource
    ISSN: 2339-3459 , 1794-6190
    Language: Unknown
    Publisher: Universidad Nacional de Colombia
    Publication Date: 2017
    detail.hit.zdb_id: 2233404-X
    SSG: 7,36
    Location Call Number Limitation Availability
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  • 3
    In: Tecnología y ciencias del agua, Instituto Mexicano de Tecnologia del Agua, Vol. 08, No. 2 ( 2017-06-09), p. 51-60
    Type of Medium: Online Resource
    ISSN: 2007-2422
    URL: Issue
    Language: Unknown
    Publisher: Instituto Mexicano de Tecnologia del Agua
    Publication Date: 2017
    detail.hit.zdb_id: 2931357-0
    Location Call Number Limitation Availability
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