Search results for "Green"

showing 10 items of 1660 documents

Reorganization of the North Atlantic Oscillation during early Holocene deglaciation

2016

Laurentide ice-sheet retreat continued into the mid-Holocene. Speleothem-based precipitation records suggest the cessation of melt led to the establishment of the present precipitation patterns associated with the North Atlantic Oscillation. The North Atlantic Oscillation is the dominant atmospheric pressure mode in the North Atlantic region and affects winter temperature and precipitation in the Mediterranean, northwest Europe, Greenland, and Asia1. The index1 that describes the sea-level pressure difference between Iceland and the Azores is correlated with a dipole precipitation pattern over northwest Europe and northwest Africa. How the North Atlantic Oscillation will develop as the Gree…

geographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesNorth Atlantic Deep WaterGreenland ice sheet010502 geochemistry & geophysics01 natural sciencesOceanographyAtlantic Equatorial mode13. Climate actionNorth Atlantic oscillationClimatologyAtlantic multidecadal oscillationDeglaciationGeneral Earth and Planetary SciencesIce sheetGeology0105 earth and related environmental sciencesAzores HighNature Geoscience
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Age and evolution of a late Archean to Paleoproterozoic upper to lower crustal section in the Wutaishan/Hengshan/Fuping terrain of northern China

2005

Abstract The Taihangshan–Wutaishan area forms part of the central North China Craton and consists of three main components: the Hengshan and Fuping complexes, containing predominantly ductilely deformed late Archean to Paleoproterozoic high-grade granitoid orthogneisses, intruded by mafic dykes of gabbroic composition, and the low-grade late Archean Wutai greenstone belt, developed between the high-grade terrains and consisting of bimodal volcanic rocks and metasediments, associated with coeval granitoids. Zircon dating shows that both the Hengshan and Fuping complexes were intruded by major granitoid bodies between 2.52 and 2.48 Ga, with rare occurrences of 2.7 Ga gneisses. Wutai granitoid…

geographygeography.geographical_feature_categoryArcheanGeochemistryMetamorphismGeologyGreenstone beltGranuliteVolcanic rockCratonMaficPetrologyGeologyEarth-Surface ProcessesZirconJournal of Asian Earth Sciences
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Ecological assessment of developing carbon sequestration in Shenyang, China

2012

Carbon sequestration in urban ecosystems is becoming an international climate change initiative for sustainable development. Drawing upon field work undertaken in the author's native Shenyang, China, this research reports upon the natural process of carbon sequestration from the atmosphere into urban ecosystems. The risks associated within carbon sequestration in urban ecosystems are investigated and utilised the analysis of ecological carbon cycle status and integrated climate policy with reference to the sustainable development of urban planning. The primary method of this paper is the ecologically–based life assessment of urban ecosystems relevant to tackling barriers for developing carb…

geographygeography.geographical_feature_categoryEcological footprintEcologyEcological assessmentManagement Monitoring Policy and LawDevelopmentCarbon sequestrationUrban areaUrban planningGreenhouse gasSustainabilityEnvironmental scienceUrban ecosystemGeneral Economics Econometrics and FinanceWaste Management and DisposalEnvironmental planningProgress in Industrial Ecology, An International Journal
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Geochronology of the Hout River Shear Zone and the metamorphism in the Southern Marginal Zone of the Limpopo Belt, Southern Africa

2001

Abstract In this paper monazite U–Pb and zircon evaporation dates, stepleaching Pb/Pb results on garnet, staurolite and kyanite, and hornblende Ar/Ar data are presented which constrain the timing of granulite facies metamorphism in the Southern Marginal Zone of the Limpopo Belt and its thrusting onto the Kaapvaal Craton. The Southern Marginal Zone of the Limpopo Belt is considered to be a lower crustal equivalent of the northern Kaapvaal Craton. Granulite exhumation is associated with southward thrusting along the Hout River Shear Zone which is a set of thrust and strike slip shear zones. Zircon ages for the Matok Intrusive Complex which was emplaced within the zone during this thrusting (c…

geographygeography.geographical_feature_categoryGeochemistryMetamorphismGeologyGreenstone beltGranuliteKyaniteCratonGeochemistry and Petrologyvisual_art550 Earth sciences & geologyvisual_art.visual_art_mediumShear zoneLimpopo BeltGeologyZirconPrecambrian Research
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Geology of the Bozdag area, central Menderes massif, SW Turkey: Pan-African basement and Alpine deformation

1998

The Menderes massif consists of a Precambrian Core Series that preserves evidence for a polymetamorphic history and a Paleozoic/Mesozoic Cover Series that experienced only the Alpine tectonometamorphic evolution. Structural, petrographic, and geochronologic investigations in the central Menderes massif demonstrate that (a) part of the metamorphic and structural evolution of the Precambrian basement is older than the undeformed 551+/-1.4-Ma-old Birgi metagranite, and (b) inferred Alpine fabrics overprinting the Cover Series largely have the same attitudes as the old structures in the much older Core Series. The inferred Alpine fabrics include both contractional and extensional structures. Co…

geographygeography.geographical_feature_categoryGreenschistGeochemistry550 - Earth sciencesMassifImbricationPrecambrianBasement (geology)General Earth and Planetary SciencesShear zoneStructural geologyGeomorphologyGeologyMetamorphic faciesGeologische Rundschau
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Structural and thermal history of poly-orogenic basement: U-Pb geochronology of granitoid rocks in the southern Menderes Massif, Western Turkey

2004

Ion microprobe U-Pb dating of granitoid rocks from key structural outcrops of the Menderes Massif in western Turkey provides an important constraint to the thermal and deformational history of a structurally complex metamorphic belt within the Alpine chain. Crystallization ages of two granite protoliths, derived from the weighted means of rim ages and the ages of homogeneous prismatic zircon grains, are 541 +/- 14 Ma and 566 +/- 9 Ma, whereas the cores of zoned pyramidal and short-prismatic zircon grains range from Palaeoproterozoic to Neoproterozoic in age. These ages indicate that amphibolite- to gramilite-facies metamorphic rocks in much of the Menderes Massif were deformed, metamorphose…

geographygeography.geographical_feature_categoryGreenschistGeochemistryGeologyMassifBasement (geology)GeochronologyAlpine orogenyPetrologyProtolithMetamorphic faciesGeologyZircon
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Structures along the Orobic thrust, Central Orobic Alps, Italy

1997

A series of regional deformation phases is described for the metamorphic basement and the Permian cover in an area in the central Orobic Alps, northern Italy. In the basement deformation under low-grade amphibolite metamorphic conditions is followed by a second phase during retrograde greenschist conditions. These two phases predate the deposition of the Permian cover and are of probable Variscan age. An extensional basin formed on the eroded basement during the Late Carboniferous, filled with fan conglomerates and sandstones, and rhyolitic volcanic rocks. Well-preserved brittle extensional faults bound these basins. Further extension deformed basement and cover before the onset of Alpine c…

geographygeography.geographical_feature_categoryGreenschistInversion (geology)GeochemistryNappeVolcanic rockTectonicsAlpine orogenyGeneral Earth and Planetary SciencesThrust faultStructural geologyGeologySeismologyGeologische Rundschau
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Aspects of the kinematic history and mechanisms of superposition of the proterozoic mobile belts of eastern Central Africa (northern Malawi and south…

1993

Abstract Commonly the Proterozoic tectonic evolution of the Central African basement is subdivided into three major events: (1) the Ubendian (∼2300−1800 Ma), (2) the Irumide (∼1350−950 Ma), and (3) the Pan-African (∼900−450 Ma) orogenic cycles. Relics of the Ubendian event are granite intrusions and, possibly, an amphibolite- to granulite-facies metamorphism. The Ubendian orogeny was followed by deposition of clastic sediments (Muva supergroup). In northern Malawi these sediments and the underlying basement were then thrust to the east-southeast/southeast during the Irumide orogeny. Horizontal shearing along subvertical zones (i.e. the Ubendian belt) was associated with subhorizontal crusta…

geographygeography.geographical_feature_categoryGreenschistProterozoicGeochemistryMetamorphismGeologyOrogenyCratonGeochemistry and PetrologyThrust faultShear zoneMetamorphic faciesGeologyPrecambrian Research
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Archaean granulite-facies paragneisses from central Swaziland: inferences on Palaeoarchaean crustal reworking and a complex metamorphic history

2014

We present a petrographic, petrological, geochemical, and geochronological study (U–Pb/Lu–Hf) on granulite-facies paragneisses of the Mahamba Gneiss Complex in central Swaziland, eastern Kaapvaal Craton. Our data suggest that prograde metamorphism occurred at c . 3.07 Ga. Dating of detrital zircons of a metapelite in combination with geochronological and ambiguous structural relationships with granitoid gneisses suggests two possible scenarios: (1) the time of deposition of the sedimentary protoliths is prior to c . 3.58 Ga; (2) c . 3.58 Ga granitoid crust was the basement for the sedimentary protoliths. Furthermore, enrichment in Ni and Cr in the Mahamba metasediments may originate from er…

geographygeography.geographical_feature_categoryMetamorphic rockGeochemistryMetamorphismGeologyGreenstone beltGranuliteCratonBasement (geology)PetrologyProtolithGeologyGneissJournal of the Geological Society
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Fen peat in environmentally friendly technologies

2018

Abstract Using peat as an energy source is currently incompatible with Environmental Policy Strategy of Latvia and 2030 Climate and Energy Package of European Union. The European Commission is looking at cost-efficient ways to make European economy more climate-friendly and less energy consuming. Although, fen peat alongside raised bog peat is categorized as fossil fuel, it is not traditionally used as fuel or growth substrate or for any other significant purposes in reasonable amounts. Large areas of fens are neglected where fen peat is slowly mineralizing and emitting greenhouse gases, such as carbon dioxide and methane, that are ones of the main triggers for the Climate Change. Thus, to …

geographygeography.geographical_feature_categoryPeatbusiness.industry020209 energyFossil fuel02 engineering and technologyEnvironmental technologyEnvironmental protectionGreenhouse gas0202 electrical engineering electronic engineering information engineeringmedia_common.cataloged_instanceEnvironmental scienceEuropean unionbusinessEnergy sourceBogNon-renewable resourcemedia_commonEnergy Procedia
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