• 
    

    
    

      99热精品在线国产_美女午夜性视频免费_国产精品国产高清国产av_av欧美777_自拍偷自拍亚洲精品老妇_亚洲熟女精品中文字幕_www日本黄色视频网_国产精品野战在线观看 ?

      巖漿過程中鐵同位素的地球化學行為

      2016-03-15 11:45:03朱祥坤孫劍王躍
      地球科學與環(huán)境學報 2016年1期
      關(guān)鍵詞:演化過程巖漿同位素

      朱祥坤++孫劍++王躍

      5結(jié)語

      鐵是主量元素和變價元素,在巖漿成因與演化、巖理學、構(gòu)造巖石學、成礦作用等研究方面具有重要意義。查明巖漿過程中鐵同位素的地球化學行為是正確運用鐵同位素對相關(guān)地質(zhì)問題進行制約的前提。目前人們對巖漿過程中的鐵同位素基本行為已有了概略性了解,但許多問題仍待進一步研究。例如,在礦物方面,主要含鐵礦物間鐵同位素的平衡分餾順序已基本建立,但其間同位素分餾大小及其與氧逸度、溫度、壓力等條件的關(guān)系還有待精確確定,同時,這方面的知識是運用同位素反演巖漿演化過程的基礎(chǔ)。在基性巖漿體系方面,目前人們對鐵同位素地球化學行為的認識主要來自于對富含氧化物的鎂鐵—超鎂鐵質(zhì)層狀巖體的調(diào)查,但對斜長巖雜巖體和富含硫化物巖體的鐵同位素研究還幾乎是空白,這些巖體可能由不同類型的巖漿演化而來,鐵同位素在這些不同類型的巖漿演化過程中的行為有何差異?熔離是巖漿演化的重要過程之一,也是巖漿礦床形成的重要機制,可否運用鐵同位素對巖漿是否發(fā)生過熔離進行制約?目前人們對熔離過程中的鐵同位素地球化學行為仍然不清楚,不同的大地構(gòu)造環(huán)境形成不同的巖漿巖巖石組合,鐵同位素是否對巖石組合形成的大地構(gòu)造背景具有指示意義也是值得進一步研究的重要問題。

      巖漿過程的鐵同位素研究不僅對于豐富和完善非傳統(tǒng)穩(wěn)定同位素地球化學理論體系具有重要意義,而且對于理解地球的巖漿作用和地幔作用過程、示蹤巖漿型礦床的物質(zhì)來源和成礦過程等方面具有重要潛力??梢灶A見,隨著鐵同位素測試技術(shù)的逐漸普及,人們對鐵同位素的地球化學研究將會深入和廣泛。

      參考文獻:

      References:

      [1]BEARD B L,JOHNSON C M,COX L,et al.Iron Isotope Biosignatures[J].Science,1999,285:18891892.

      [2]ZHU X K,GUO Y L,ONIONS R K,et al.Isotopic Homogeneity of Iron in the Early Solar Nebula[J].Nature,2001,412:311313.

      [3]ZHU X K,GUO Y,WILLIAMS R J P,et al.Mass Fractionation Processes of Transition Metal Isotopes[J].Earth and Planetary Science Letters,2002,200(1/2):4762.

      [4]ZHU X K,ONIONS R K,GUO Y L,et al.Secular Variation of Iron Isotopes in North Atlantic Deep Water[J].Science,2000,287:20002002.

      [5]WILLIAMS H M,MCCAMMON C A,PESLIER A H,et al.Iron Isotope Fractionation and the Oxygen Fugacity of the Mantle[J].Science,2004,304:16561659.

      [6]DAUPHAS N,VAN ZUILEN M,WADHWA M,et al.Clues from Fe Isotope Variations on the Origin of Early Archean BIFs from Greenland[J].Science,2004,306:20772080.

      [7]ROUXEL O J,BEKKER A,EDWARDS K J.Iron Isotope Constraints on the Archean and Paleoproterozoic Ocean Redox State[J].Science,2005,307:10881091.

      [8]TENG F Z,DAUPHAS N,HELZ R T.Iron Isotope Fractionation During Magmatic Differentiation in Kilauea Iki Lava Lake[J].Science,2008,320:16201622.

      [9]ZHAO X M,ZHANG H F,ZHU X K,et al.Iron Isotope Variations in Spinel Peridotite Xenoliths from North China Craton:Implications for Mantle Metasomatism[J].Contributions to Mineralogy and Petrology,2010,160(1):114.

      [10]ZHAO X M,ZHANG H F,ZHU X K,et al.Iron Isotope Evidence for Multistage Meltperidotite Interactions in the Lithospheric Mantle of Eastern China[J].Chemical Geology,2012,292/293:127139.

      [11]ZHAO X M,ZHANG H F,ZHU X K,et al.Effects of Melt Percolation on Iron Isotopic Variation in Peridotites from Yangyuan,North China Craton[J].Chemical Geology,2015,401:96110.

      [12]SHI G H,ZHU X K,DENG J,et al.Spherules with Pure Iron Cores from Myanmar Jadeitite:TypeI Deepsea Spherules?[J].Geochimica et Cosmochimica Acta,2011,75(6):16081620.

      [13]WANG Y,ZHU X K,MAO J W,et al.Iron Isotope Fractionation During Skarntype Metallogeny:A Case Study of Xinqiao CuSFeAu Deposit in the MiddleLower Yangtze Valley[J].Ore Geology Reviews,2011,43(1):194202.

      [14]WANG Y,ZHU X K,CHENG Y.Fe Isotope Behaviors During Sulfidedominated Skarntype Mineralisation[J].Journal of Asian Earth Sciences,2015,103:374392.

      [15]SUN J,ZHU X K,CHEN Y L,et al.Iron Isotopic Constraints on the Genesis of Bayan Obo Ore Deposit,Inner Mongolia,China[J].Precambrian Research,2013,235:88106.

      [16]CHEN L M,SONG X Y,ZHU X K,et al.Iron Isotope Fractionation During Crystallization and Subsolidus Reequilibration:Constraints from the Baima Mafic Layered Intrusion,SW China[J].Chemical Geology,2014,380:97109.

      [17]FAN H F,ZHU X K,WEN H J,et al.Oxygenation of Ediacaran Ocean Recorded by Iron Isotopes[J].Geochimica et Cosmochimica Acta,2014,140:8094.

      [18]ZHANG F F,ZHU X K,YAN B,et al.Oxygenation of a Cryogenian Ocean (Nanhua Basin,South China) Revealed by Pyrite Fe Isotope Compositions[J].Earth and Planetary Science Letters,2015,429:1119.

      [19]BEARD B L,JOHNSON C M,SKULAN J L,et al.Application of Fe Isotopes to Tracing the Geochemical and Biological Cycling of Fe[J].Chemical Geology,2003,195(1/2/3/4):87117.

      [20]BEARD B L,JOHNSON C M,VON DAMM K L,et al.Iron Isotope Constraints on Fe Cycling and Mass Balance in Oxygenated Earth Oceans[J].Geology,2003,31(7):629.

      [21]BEARD B L,JOHNSON C M.High Precision Iron Isotope Measurements of Terrestrial and Lunar Materials[J].Geochimica et Cosmochimica Acta,1999,63(11/12):16531660.

      [22]JOHNSON C M,BEARD B L,RODEN E E,et al.Isotopic Constraints on Biogeochemical Cycling of Fe[J].Reviews in Mineralogy and Geochemistry,2004,55(1):359408.

      [23]FANTLE M S,DEPAOLO D J.Iron Isotopic Fractionation During Continental Weathering[J].Earth and Planetary Science Letters,2004,228(3/4):547562.

      [24]WILLIAMS H M,PESLIER A H,MCCAMMON C,et al.Systematic Iron Isotope Variations in Mantle Rocks and Minerals:The Effects of Partial Melting and Oxygen Fugacity[J].Earth and Planetary Science Letters,2005,235(1/2):435452.

      [25]WEYER S,ANBAR A D,BREY G P,et al.Iron Isotope Fractionation During Planetary Differentiation[J].Earth and Planetary Science Letters,2005,240(2):251264.

      [26]WEYER S,IONOV D A.Partial Melting and Melt Percolation in the Mantle:The Message from Fe Isotopes[J].Earth and Planetary Science Letters,2007,259(1/2):119133.

      猜你喜歡
      演化過程巖漿同位素
      生命的演化過程
      模因論視角下韓語“??”表“喝”動作演化過程研究
      時間非齊次二態(tài)量子游蕩的演化過程分析
      重慶萬盛石林的形成時代及發(fā)育演化過程
      巖漿里可以開采出礦物質(zhì)嗎?
      科學之謎(2019年4期)2019-05-07 07:51:18
      火山冬天——巖漿帶來的寒冷
      深空探測用同位素電源的研究進展
      《同位素》(季刊)2015年征訂通知
      同位素(2014年3期)2014-06-13 08:22:28
      硼同位素分離工藝與生產(chǎn)技術(shù)
      同位素(2014年2期)2014-04-16 04:57:15
      穩(wěn)定同位素氘標記蘇丹紅I的同位素豐度和化學純度分析
      同位素(2014年2期)2014-04-16 04:57:12
      禄丰县| 武川县| 嘉义市| 星座| 奎屯市| 即墨市| 隆化县| 格尔木市| 开封市| 郧西县| 崇州市| 周至县| 容城县| 金昌市| 饶河县| 崇义县| 寿光市| 黔江区| 永州市| 康乐县| 龙泉市| 马龙县| 曲沃县| 靖州| 比如县| 秦安县| 灵台县| 寿光市| 通渭县| 田东县| 马鞍山市| 吉木萨尔县| 肥西县| 大石桥市| 榆树市| 南投市| 嘉禾县| 司法| 武强县| 葵青区| 江达县|