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1Age of Yingfeng rapakivi granite pluton on the north flank of Qaidam and its geological significance显示文摘The Yingfeng rapakivi granite on the north flank of Qaidam is a newly discovered Proterozoic rapakivi pluton in China, which was found after the discovery of Shachang rapakivi in Miyun County, Beijing and Kuandian rapakivi in Jilin Province. Yingfeng rapakivi pluton is ex-posed on the north side of the suture belt between Qinling-Kunlun orogenic belt and North China plate. U-Pb zircon isotopic dating and Ar-Ar isotopic dating of both hornblende and K-feldspar from the Yingfeng rapakivi granite have been conducted. The results show that the age of (1776±33)Ma at the upper intercept in Concorde diagram represents the age of formation of the plu-ton, whereas the age of (526 281) Ma at the lower intercept and Ar-Ar mineral dating of horn-blende and K-feldspar correspond to the age of a later event affecting the pluton, suggesting that Yingfeng pluton has ever been affected by strong regional Caledonian-Hercynian tectonic movement after its formation. The discovery of middle Proterozoic Yingfeng rapakivi granite pro-vides a petrologic evidence for the timing of cratonization of both the continental crust basement in western China and the basement of the North China plate and for a rifting event taking place in the mid-Proterozoic, suggesting that an amalgamation of ancient China continents had ever happened during the L liang Movement?between the early Proterozoic and the mid-Proterozoic.XIAO Qinghui1,2, LU Xinxiang1,3, WANG Fei4, SUN Yangui5, WEI Xiangdong3 & XING Zuoyun6 1. Division of Granite Geology, China Geological Survey, Yichang 443003, China 2. Information Center of Ministry of Land and Resources, Beijing 100812, China 3. Geological Survey of Henan Province and Institute of Geological Research of Henan Province, Zhengzhou 450053, China 4. Geological Institute, China Seismological Bureau, Beijing 100029, China 5. Geological Survey Institute of Qinghai Province, Xining 810032, China 6. China University of Geosciences, Wuhan 430074, China 2004Science China Earth Sciences2004,47,4:20
2The Cosmic Dust in Suzhou Granite:Ablated Products of a Cometary ExplosionHu Zhong-wei,Wang Er-kang,Wan Yu-qiuDepartement of Astronomy,Nanjing University,Nanjing 210093,China Department of Earth Sdence,Nanjing University,Nanjing 210093,China Cosmic dust has been collected in large number from deap-sea sediments,Greenland ice deposits,the stratosphere and space,of cosmic dust,some are the unmelted micrometeorite,and most are the ablated products of me-teoroids in the atmosphere.Cosmic dusts were recovered from two sites of the 1908 Tunguska explosion and the 1965 Revelstoks explosion Since 1987,a large number of microspherules have been extracted from Suzhou granite of China Their suface and section structures,mineral and chemical composition show that these microspherules are of the ablated cosmic dust.The microspherules occurred in the inner contact complex intrusion.It suggests that the microspherules may be products of the same event and were aggergated in some strata and then captured by the emplacement of granitic magma.Although the microspherules are similare to other ablated cosmic dusts,there are some diferences.Our calculated results of cometary motion through the atmosphere and explosion show that the microspherules may be the ablated dust of a comet with mass above 1015g at its explosion near the ground. 1996紫金山天文台台刊1996,15,3:2
3Review of novel methods for car- bon dioxide separation from flue and fuel gases 显示文摘Granite E J T OBrien 2005Fuel Processing Technology2005,86,1415:1
4Gliomas display a microRNA expression profile reminiscent of neural precursor cells显示文摘Lavon I Zrihan D Granit A 2010Neuro Oncol2010,12,5:1
5Survey of catalysts for oxidation of mercury in flue gas 显示文摘PRESTO A A GRANITE E J 2006Environmental Science & Technology2006,,40:1
6Separation and capture of CO2 from large stationary sources and sequestration in geological formation- coalbeds and deep saline aquifers 显示文摘White C M Strasisar B R Granite E J 2003Journal of the Air & Waste Management Association2003,53,:1
7Effect of porous structure and surface func- tionality on the mercury capacity of a fly ash carbon and its activated sample显示文摘MAROTO-VALER M ZHANG Yinzhi GRANITE E J 2005Fuel2005,84,1:1
8Further investigation of the impact of sulfur oxides on mercury capture by activated carbon显示文摘Presto A A Granite E J Karash A 2007Industrial and Engineering Chemistry Research2007,46,24:1
9The PCO process for photochemical removal of mercury from flue gas显示文摘Mclarnon C R Granite E J Pennline H W 2005Fuel Process Techn2005,87,1:1
10Metal sorbents for high temperature mercury capture from flue gas显示文摘Poulston S J Granite E W Pennline H 2007Fuel2007,86,14:1
11Survey of catalysts for oxidation of mercury in flue gas 显示文摘Presto A A Granite E J 2006Environmental Science and Technology2006,40,18:1
12Survey of catalysts for oxidation of mercury in flue gas 显示文摘Presto A A Granite E J 2006Environmental Science and Technology2006,40,18:1
13Novel sorbents for mercury removal from flue gas 显示文摘Granite E J Pennline H W Hargis R A 2000Industrial and Engineering Chemistry Research2000,39,4:1
14The Relation Between Concentration of Visual Purple and Retinal Sensitivity to Light During Dark Adaptation显示文摘 Munsterhjelm A Zewi M 1996Journal of Physiology1996,96,1:1
15Comment on the 'role of SO2 for elemental mercury removal from coal combustion flue gas by activated carbon'显示文摘Granite Evan J Presto A A 0,,05:1
16Betalains-a new class of dietary cationized antioxidants显示文摘Kanner J Harel S Granit R 0,,:1
17Simultaneous determination of dipyrone metabolitcs in plasma by high-performance liquid chromatography显示文摘KATZ E Z GRANIT L DRAYER D E 1984Journal of Chromatography B1984,305,:1
18Impact of sulfur oxides on mercury capture by activated carbon显示文摘Presto A A Granite E J 0,,18:1
19Review of novel methods for carbon dioxide separation from flue and fuel gases显示文摘GRANITE E J BRIEN T O 0,,14:1
20Survey of catalysts for oxidation of mercury in flue gas显示文摘Presto A A Granite E J 2006Environmental Science & Technology2006,40,18:1
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