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1.
内蒙古维拉斯托矿区花岗岩类地球化学特征及其构造意义   总被引:3,自引:0,他引:3  
维拉斯托铜多金属矿床是近年来在大兴安岭发现的大型银铜多金属矿床,为了深入讨论维拉斯托矿区花岗岩类的大地构造环境及其形成的动力学背景,通过系统观察和分析,讨论了维拉斯托矿区钻孔内出露的黑云母花岗岩、黑云母二长花岗岩以及石英闪长岩的岩石学及地球化学特征。黑云母花岗岩及黑云母二长花岗岩具高硅特征,A/NCK平均值为1.07,里特曼指数小于3.3,属于钙碱性系列;稀土总量较高,轻重稀土元素分馏强烈,中等Eu负异常;(87Sr/86Sr)t值为0.705 93~0.710 75,εNd(t)值为-4.45~-0.63,具有高分异I型花岗岩特征。石英闪长岩的SiO2含量中等,准铝质,高镁(3.12%~7.58%),高Cr、Ni;稀土总量较低,轻重稀土元素分馏不明显,弱Eu负异常;(87Sr/86Sr)t值0.705 05~0.707 68,εNd(t)值在-0.88 ~1.04,具有赞岐岩的元素组成特点。黑云母花岗岩及黑云母二长花岗岩主要来源于年轻陆壳的部分熔融,上侵过程经历较强烈的分异作用;石英闪长岩来源于俯冲流体/熔体或残余洋壳部分熔融对岩石圈地幔改造后的产物,岩浆演化后期并未经历强烈的地壳混染及分异作用。综合研究认为:维拉斯托矿区花岗岩类侵位于晚石炭世,形成于后碰撞环境。兴蒙造山带内大量出露晚石炭世-早二叠世的钙碱性高分异I型花岗岩及A型花岗岩,同时大量沉积学及地层古生物的证据均显示兴蒙造山带该时期已经进入陆内演化阶段。  相似文献   

2.
阿钦楚鲁二长花岗岩体位于西伯利亚板块东南缘查干敖包奥尤特朝不楞早古生代构造-岩浆岩带中段, 主要岩石类型为中细粒二长花岗岩和中粗粒二长花岗岩。SHRIMP锆石U-Pb同位素定年结果表明, 阿钦楚鲁二长花岗岩的成岩年龄为(296.3±3.8) Ma, 为华力西晚期。岩石地球化学分析结果表明:阿钦楚鲁二长花岗岩富硅, w(SiO2)为73.48%~74.22%, 过铝质, w(Al2O3)为13.63%~14.01%, A/CNK值为1.04~1.10, 碱质含量较高, w(K2O)+w(Na2O)为8.08%~8.54%, 里特曼指数(σ)为2.13~2.46, 相对富钾, K2O/Na2O值为1.31~1.54, 属高钾钙碱性系列。该岩石富集大离子亲石元素Rb、Sr、Ba和轻稀土元素(LREE), 相对亏损Ta、Nb、Ti等高场强元素, 稀土元素总量为(112.05~130.16)×10-6, 中等Eu负异常(δEu=0.52~0.65), 稀土元素配分曲线呈现出略微右倾型, 轻稀土较陡, 重稀土较缓, 具有向A型花岗岩过渡的后碰撞高钾花岗岩特征;岩石具有较低的87Sr/86Sr初始值(0.703 849~0.704 236)和正的εNd(t)值(4.2~4.3), 反映其物质来源可能主要为幔源岩浆底侵作用形成的新生大陆地壳。基于上述分析研究和构造环境判别, 结合区域对比, 推测阿钦楚鲁二长花岗岩为在岩石圈由挤压增厚向伸展体制转换的动力学背景下, 由于俯冲板片的断离, 造成软流圈上涌和岩石圈地幔的部分熔融, 而部分幔源岩浆底侵到地壳的下部或者呈基性侵入体的形式侵入地壳, 引起上部地壳的熔融而形成后碰撞高钾钙碱性花岗岩。  相似文献   

3.
云南金平白马寨含矿镁铁-超镁铁岩体岩石地球化学   总被引:7,自引:0,他引:7       下载免费PDF全文
云南金平白马寨铜镍硫化物矿床含矿岩体为侵位在奥陶系砂页岩的镁铁-超镁铁环状杂岩体。从岩体核心到边缘依次出现橄榄岩—橄榄辉石岩—辉石岩—辉长岩的岩相分带。该岩体的主量元素显示拉斑玄武岩岩浆分异演化的趋势。REE显示富集LREE的配分模式,具明显的Eu异常。微量元素蛛网图显示明显的Ta、Nb、Ti及P的负异常。具有高(87Sr/86Sr)i(0.710974~0.722667)和低εNd(t)(-13.17~-12.09)的特征。微量元素和同位素地球化学证据表明,岩浆源于俯冲地壳物质改造的富集地幔,岩浆上升过程中遭受了一定的地壳物质混染。岩体可能是在弧后拉张的构造环境中形成。  相似文献   

4.
花岗岩可以有效示踪大陆基底物质,并区分具有不同地壳结构和演化历史的构造块体。洪镇花岗岩位于长江中下游地区江北A型花岗岩带的西延位置,距离郯庐断裂带约30 km。锆石SIMS定年表明,安庆怀宁县洪镇花岗岩形成于126.2±2.0 Ma,与长江中下游A型花岗岩以及大别造山带I型花岗岩的形成时代一致。洪镇花岗岩高硅、富钾,属于高钾钙碱性系列I型花岗岩。其富集轻稀土元素和大离子亲石元素,相对亏损中稀土元素和高场强元素,经历了角闪石为主的结晶分异。洪镇花岗岩具有较为富集的Sr—Nd—Hf同位素,和低放射性成因Pb同位素组成,其n(87Sr)/n(86Sr)(t)为0.7065~0.7066,εNd(t)值为-10.9~-12.0,锆石εHf(t)为-6.7~-13.2,n(206Pb)/n(204Pb)(t)、n(207Pb)/n(204Pb)(t)和n(208Pb)/n(204...  相似文献   

5.
西准噶尔地区晚古生代岩浆活动剧烈,地壳的垂向和侧向增生显著,地壳生长和演化存在多阶段性。本文重点通过Sr-Nd-Pb同位素填图研究,发现西准噶尔地区εNd(t)值为2.29~8.75,(87Sr/86Sr)i值为0.697 397~0.708 336,(206Pb/204Pb)i值为17.4975~19.0352,整体表现为高正εNd(t)、低(87Sr/86Sr)i和年轻的地壳模式年龄特征,源区以古生代新生地壳为主,地幔贡献值整体大于50%,深部地壳几乎不存在古老的结晶基底,可以与区域构造地质、地球物理资料作较好匹配。区域晚古生代主要经历3个时期的造山阶段,分别对应造山带演化的第一阶段(中晚石炭世,岛弧为代表的侧向生长为主)、第二阶段早期(晚石炭世—早二叠世,后碰撞阶段的垂向生长为主)和第二阶段晚期(早二叠世—早三叠世,壳幔混源背景下的垂向生长),区域造山作用结束于早三叠世。  相似文献   

6.
中祁连西段黑沟梁子花岗岩的锆石U-Pb同位素年龄及成因   总被引:11,自引:2,他引:9  
黑沟粱子花岗岩岩体为中祁连山带两段野马南山巨量花岗岩的一部分,出露于野马山南北缘,岩性为黑云母二长花岗岩。δ值、NK/A值、A/NCK值、Eu负异常、δEu值、ACF图解、87Sr/86Sr比值、εSr147Sm/144Nd比值、207Pb/204Pb比值、ENd值等岩石化学和同位素特征表明黑沟粱子花岗岩属钙碱性过铝质岩系,浆来源于地壳物质的重熔,具S型花岗岩特点。通过对黑沟梁子花岗岩的颗粒级锆石U-Pb同位素测年,获得206Pb/238U表面年龄统计权重平均值为(444±17)Ma。w(Nb)-w(Y)和w(Rb)一w(Y+Nd)图和R1-R2图解上两个样点均落入同碰撞花岗岩区,结合前人研究成果可以确定该岩体形成于板块碰撞阶段。该岩体的锆石U-Pb年龄的确定和成因的探讨对于深入研究祁连造山带的构造演化提供了一条重要的地质信息。  相似文献   

7.
为加深对西藏泽当地区新特提斯洋演化的认识,对西藏泽当蛇绿混杂岩带内的共国日二长花岗岩进行了岩石学、岩石地球化学、同位素及年代学等研究,研究显示:共国日二长花岗岩岩体规模小、岩性稳定,LA-ICP-MS锆石U-Pb年龄为(90.40±0.68)Ma,属晚白垩世;岩石地球化学具高硅、富铝、富钾、低钛和准铝质钙碱性花岗岩特征;轻稀土富集、重稀土亏损,具明显的负Eu异常,微量元素表现为相对富集Rb、K、Ba、Th、U等大离子亲石元素,显著亏损Nb、P、Ti等高场强元素;(87Sr/86Sr)i=0.705 708~0.706 284,(143Nd/144Nd)i=0.512 689~0.512 716,εNd(t)=2.00~2.51。以上特征表明,位于泽当蛇绿混杂岩带内的共国日二长花岗岩属于I型花岗岩,由正常岛弧岩浆形成,应为晚白垩世新特提斯洋向北俯冲形成的岛弧环境下俯冲带上部地壳部分熔融的产物,其不属于泽当蛇绿岩的组成部分,表明在90 Ma前泽当洋内弧已经消失。  相似文献   

8.
鄂东南地区程潮大型矽卡岩型铁矿区岩体成因探讨   总被引:2,自引:0,他引:2  
湖北程潮铁矿是鄂东南矿集区内最大的矽卡岩型铁矿床。为了系统研究矿区内不同侵入体的成因,对程潮矿区内不同时代的侵入体进行了矿物学、地球化学和Sr-Nd-Pb同位素研究。矿区内花岗岩、石英二长斑岩、闪长岩中的黑云母成分特征暗示它们均为壳幔物质混合成因的镁质黑云母;与成矿相关的花岗岩、石英二长斑岩中原生黑云母矿物学成分显示出原始岩浆具有高氧逸度的特征,高氧逸度为磁铁矿的形成提供了有利条件。岩石地球化学特征研究表明,不同类型的岩石都具有富钾和准铝质的特征,富集Rb、Ba、K等大离子亲石元素和轻稀土元素,亏损Nb、Ta、Ti等高场强元素。矿区岩石的(87Sr/86Sr)i值为0.705 0~0.709 1,εNd(t)值为-14.16~-6.95,206Pb/204Pb值为17.636~18.919,207Pb/204Pb值为15.451~15.613,208Pb/204Pb值为37.833~39.556。矿物学、地球化学、Sr-Nd-Pb同位素特征暗示矿区岩体为富集地幔发生部分熔融并同化混染了不同比例下地壳物质的产物,早期闪长岩((140±1) Ma)比晚期花岗岩和石英二长斑岩((128±1) Ma)的源区有更多的地幔成分,花岗岩和石英二长斑岩与闪长岩具有相近的锆石饱和温度(平均值分别为783、788、765℃)。  相似文献   

9.
浙江是非金属矿大省,金属矿特别是斑岩型矿床的研究亟待进行。本文以里山岭斑岩型铜矿床为研究对象,首次采用SHRIMP U-Pb对该岩体侵位时代进行精确限定,利用Sr-Nd同位素示踪含矿岩体的岩浆源区,不仅为浙江斑岩型矿床成因的深入研究增加了新资料,还对浙西下一步找矿勘探具有重要意义。浙江常山里山岭斑岩型铜矿床位于钦杭成矿带东段,受球川-萧山深断裂带控制。该矿床铜矿化主要赋存于花岗斑岩体中。含矿花岗斑岩为高硅、富碱、高分异、过铝质S型花岗岩。岩体的稀土分布型式右倾,整体呈“海鸥型”,有明显负Eu异常。岩石亏损Sr、Ba等大离子亲石元素,富集Nb、Ta、Zr、Hf、Ti、Y、Yb等高场强元素。含矿花岗斑岩锆石SHRIMP U-Pb年龄为(131±2)Ma,为早白垩世构造-岩浆活动的产物,形成于中国东部岩石圈减薄背景。岩浆岩(87Sr/86Sr)i值为0.679 95~0.721 08,平均0.701 14。εNdt)值为-8.4~-5.8,平均-6.7。Sr-Nd同位素特征表明含矿花岗斑岩源区主要为地壳,兼有少量地幔物质的混染。  相似文献   

10.
对冈底斯中段南木林县普洛岗乡花岗岩岩体进行了原位锆石LA-ICP-MS U-Pb定年和Hf同位素分析。2个花岗岩样品加权平均年龄分别为(44.3±1.1)和(44.5±1.1) Ma,代表该岩体的岩浆结晶年龄为始新世。岩石地球化学资料显示,花岗岩SiO2质量分数为60.53%~65.28%,K2O+Na2O质量分数为6.53%~7.98%,Al2O3质量分数为15.52%~16.13%,铝饱和指数为0.86~0.91,属于准铝质高钾钙碱性系列花岗岩类。花岗岩轻稀土元素相对较富集,具有明显的Eu负异常,微量元素中亏损Nb、Ta、Ti和富集Rb、Th、U、Pb。锆石Hf同位素初始比值εHf(t)值为8.8~11.1,176Hf/177Hf 为0.282 994~0.283 060,Hf同位素地壳模式年龄为422~557 Ma,反映了其岩浆来源于新生地壳物质的部分熔融。普洛岗乡花岗岩的形成与新特提斯洋向北俯冲、俯冲板片折返断离有关。  相似文献   

11.
The Bandombaai Complex (southern Kaoko Belt, Namibia) consists of three main intrusive rock types including metaluminous hornblende- and sphene-bearing quartz diorites, allanite-bearing granodiorites and granites, and peraluminous garnet- and muscovite-bearing leucogranites. Intrusion of the quartz diorites is constrained by a U–Pb zircon age of 540±3 Ma.

Quartz diorites, granodiorites and granites display heterogeneous initial Nd- and O isotope compositions (Nd (540 Ma)=−6.3 to −19.8; δ18O=9.0–11.6‰) but rather low and uniform initial Sr isotope compositions (87Sr/86Srinitial=0.70794–0.70982). Two leucogranites and one aplite have higher initial 87Sr/86Sr ratios (0.70828–0.71559), but similar initial Nd (−11.9 to −15.8) and oxygen isotope values (10.5–12.9‰). The geochemical and isotopic characteristics of the Bandombaai Complex are distinct from other granitoids of the Kaoko Belt and the Central Zone of the Damara orogen. Our study suggests that the quartz diorites of the Bandombaai Complex are generated by melting of heterogeneous mafic lower crust. Based on a comparison with results from amphibolite-dehydration melting experiments, a lower crustal garnet- and amphibole-bearing metabasalt, probably enriched in K2O, is a likely source rock for the quartz diorites. The granodiorites/granites show low Rb/Sr (<0.6) ratios and are probably generated by partial melting of meta-igneous (intermediate) lower crustal sources by amphibole-dehydration melting. Most of the leucogranites display higher Rb/Sr ratios (>1) and are most likely generated by biotite-dehydration melting of heterogeneous felsic lower crust. All segments of the lower crust underwent partial melting during the Pan-African orogeny at a time (540 Ma) when the middle crust of the central Damara orogen also underwent high T, medium P regional metamorphism and melting. Geochemical and isotope data from the Bandombaai Complex suggest that the Pan-African orogeny in this part of the orogen was not a major crust-forming episode. Instead, even the most primitive rock types of the region, the quartz diorites, represent recycled lower crustal material.  相似文献   


12.
S. Jung   《Lithos》2005,84(3-4):168-184
The overwhelming part of the continental crust in the high-grade part of the Damara orogen of Namibia consists of S-type granites, metasedimentary rocks and migmatites. At Oetmoed (central Damara orogen) two different S-type granites occur. Their negative εNd values (− 3.3 to − 5.9), moderately high initial 87Sr/86Sr ratios (0.714–0.731), moderately high 206Pb/204Pb (18.21–18.70) and 208Pb/204Pb (37.74–37.89) isotope ratios suggest that they originated by melting of mainly mid-Proterozoic metasedimentary material. Metasedimentary country rocks have initial εNd of − 4.2 to − 5.6, initial 87Sr/86Sr of 0.718–0.725, 206Pb/204Pb ratios of 18.32–18.69 and 208Pb/204Pb ratios of 37.91–38.45 compatible with their variation in Rb/Sr, U/Pb and Th/Pb ratios. Some migmatites and residual metasedimentary xenoliths tend to have more variable εNd values (initial εNd: − 4.2 to − 7.1), initial Sr isotope ratios (87Sr/86Sr: 0.708–0.735) and less radiogenic 206Pb/204Pb (18.22–18.53) and 208Pb/204Pb (37.78–38.10) isotope compositions than the metasedimentary rocks. On a Rb–Sr isochron plot the metasedimentary rocks and various migmatites plot on a straight line that corresponds to an age of c. 550 Ma which is interpreted to indicate major fractionation of the Rb–Sr system at that time. However, initial 87Sr/86Sr ratios of the melanosomes of the stromatic migmatites (calculated for their U–Pb monazite and Sm–Nd garnet ages of c. 510 Ma) are more radiogenic (87Sr/86Sr: 0.725) than those obtained on their corresponding leucosomes (87Sr/86Sr: 0.718) implying disequilibrium conditions during migmatization that have not lead to complete homogenization of the Rb–Sr system. However, the leucosomes have similar Nd isotope characteristics than the inferred residues (melanosomes) indicating the robustness of the Sm–Nd isotope system during high-grade metamorphism and melting. On a Rb–Sr isochron plot residual metasedimentary xenoliths show residual slopes of c. 66 Ma (calculated for an U–Pb monazite age of 470 Ma) again indicating major fractionation of Rb/Sr at c. 540 Ma. However, at 540 Ma, these xenoliths have unradiogenic Sr isotope compositions of c. 0.7052, indicating depleted metasedimentary sources at depth. Based on the distinct Pb isotope composition of the metasedimentary rocks and S-type granites, metasedimentary rocks similar to the country rocks are unlikely sources for the S-type granites. Moreover, a combination of Sr, Nd, Pb and O isotopes favours a three-component mixing model (metasedimentary rocks, altered volcanogenic material, meta-igneous crust) that may explain the isotopic variabilty of the granites. The mid-crustal origin of the different types of granite emphasises the importance of recycling and reprocessing of pre-existing differentiated material and precludes a direct mantle contribution during the petrogenesis of the orogenic granites in the central Damara orogen of Namibia.  相似文献   

13.
The Quaternary Acatlán Volcanic Field (AVF) is located at the western edge of the Trans-Mexican Volcanic Belt (TMVB). This region is related to the subduction of the Pacific Cocos and Rivera plates beneath the North American plate since the late Miocene. AVF rocks are products of Pleistocene volcanic activity and include lava flows, domes, erupted basaltic andesite, trachyandesite, trachydacite, and rhyolite of calc–alkaline affinity. Most rocks show depletion in high field-strength elements and enrichment in large ion lithophile elements and light rare earth elements as is typical for magmas in subduction-related volcanic arcs. 87Sr/86Sr values range from 0.70361 to 0.70412, while Nd values vary from +2.3 to +5.2. Sr–Nd isotopic data plot along the mantle array. On the other hand, lead isotope compositions (206Pb/204Pb=18.62–18.75, 207Pb/204Pb=15.57–15.64, and 208Pb/204Pb=38.37–38.67) give evidence for combined influences of the upper mantle, fluxes derived from subducted sediments, and the upper continental crust involved in magma genesis at AVF. Additionally δ18O whole rock analyses range from +6.35‰ in black pumice to +10.9‰ in white pumice of the Acatlán Ignimbrite. A fairly good correlation is displayed between Sr as well as O isotopes and SiO2 emphasizing the effects of crustal contamination. Compositional and isotopic data suggest that the different AVF series derived from distinct parental magmas, which were generated by partial melting of a heterogeneous mantle source.  相似文献   

14.
S. Jung  E. Hoffer  S. Hoernes 《Lithos》2007,96(3-4):415-435
Major element, trace element and Nd–Sr–Pb–O isotope data for a suite of Neo-Proterozic, pre-orogenic, rift-related syenites from the Northern Damara orogen (Namibia) constrain their sources and petrogenesis. New U–Pb ages obtained on euhdreal titanite of inferred magmatic origin constrain the age of intrusion of the Lofdal and Oas syenites to ca. 750 Ma compatible with previous high-precision zircon analyses from the Oas complex. Major rock types from Lofdal and Oas are mildly sodic nepheline-normative and quartz-normative syenites and were primarily generated by fractional crystallization from a mantle-derived alkaline magma. Primitive samples from Lofdal and Oas show depletion of Rb, K and Th relative to Ba and Nb together with variable negative anomalies of P and Ti on a primitive mantle-normalized diagram. Evolved samples from Oas develop significant negative Ba, Sr, P and Ti anomalies and positive U and Th anomalies mainly as a function of crystal fractionation processes. The lack of a pronounced negative Nb anomaly in samples from Lofdal suggests that involvement of a crustal component is negligible. For the nepheline-normative samples from Lofdal, the unradiogenic Sr and radiogenic Nd isotope composition and low δ18O values suggest derivation of these samples from a moderately depleted lithospheric upper mantle with crustal-like U/Pb ratios (87Sr/86Sr: 0.7031–0.7035, ε Nd: ca. + 1, δ18O: 7‰, 206Pb/204Pb: ca.18.00, 207Pb/204Pb: 15.58–15.60). Primitive samples of the Oas quartz-normative syenites have identical isotope characteristics (87Sr/86Sr: 0.7034, ε Nd: ca. + 1, δ18O: 6.5‰, 206Pb/204Pb: ca.18.00, 207Pb/204Pb: 15.59) whereas more differentiated samples have higher 87Sr/86Sr ratios (0.709–0.714), slightly higher δ18O values (7.0–7.1‰), less radiogenic ε Nd values (− 1.1 to − 1.4) and more radiogenic 206Pb/204Pb ratios up to 18.27. These features together with model calculations using Sr–Nd–Pb isotopes suggest modification of a primary syenite magma by combined AFC processes involving ancient continental crust. In this case, high Nb abundances of the parental syenite liquid prevent the development of significant negative Nb anomalies that may be expected due to interaction with continental crust.  相似文献   

15.
Isotope and trace element geochemistry of Colorado Plateau volcanics   总被引:5,自引:0,他引:5  
Basalts from the San Francisco Peaks and North Rim of Grand Canyon, nephelinites from the Hopi Buttes and Navajo minettes (Colorado Plateau) have been analyzed for trace element contents and Sr, Nd, Pb isotope compositions. The ages increase eastward from the Quaternary (basalt) to 5 Ma (nephelinite) and 30 Ma (minette) as does the depth of melt generation inferred from xenolith mineralogy and major element geochemistry.

The three rock types present an enrichment of incompatible elements (although minettes present negative concentration spikes for Nb, Zr, Ti, Ba, Sr) relative to other magma types. The chondrite-normalized Ce/Yb ratio changes from 8–22 (basalt) to 25–30 (nephelinite) and 33–60 (minette) and reflects small degrees of partial melting of a mantle source with a garnet/clinopyroxene ratio increasing with depth. The negative Eu anomaly present in minette, the low Sr/Nd and high Pb/Ce suggest the presence of a recycled continental crust component in their mantle source.

The 87Sr/86Sr ratio varies from 0.7032-0.7045 (basalt and nephelinite) to 0.7052-0.7071 (minette), while εNd is remarkably more constant at +0.8 to +3.7 (nephelinite) and −2.6 to +2.2 (basalt and minette). Good linear correlations are observed in both 207Pb/204Pb and 208Pb/204Pb vs. 206Pb/204Pb diagrams with basalt being the least and nephelinite the most radiogenic and indicate a 2.3 ±0.1 Ga age and a Th/U of 3.4.

Three lithospheric source components are indicated: a) an OIB-type depleted mantle source, b) an end-member with unradiogenic Sr, Nd and Pb for basalt and nephelinite and c) a recycled crustal component for minette.  相似文献   


16.
Many continental flood basalts (CFB) have isotope and trace-element signatures that differ from those of oceanic basalts and much interest concerns the extent to which these reflect differences in their upper mantle source regions. A review of selected data sets from the Mesozoic and Tertiary CFB confirms significant differences in their major- and trace-element compositions compared with those of basalts erupted through oceanic lithosphere. In general, those CFB suites characterised by low Nb/La, high (87Sr/86Sr)i and low εNdi tend to exhibit relatively low TiO2, CaO/Al2O3, Na2O and/or Fe2O3, and relatively high SiO2. In contrast, those which have high Nb/La, low (87Sr/86Sr)i and high εNdi ratios, like the upper units in the Deccan Traps, have major- and trace-element compositions similar to oceanic basalts. It would appear that those CFB that have distinctive isotope and trace-element ratios also exhibit distinctive major-element contents, suggesting that major and trace elements have not been decoupled significantly during magma generation and differentiation.

When compared (at 8% MgO) with oceanic basalt trends, the displacement of many CFB to lower Na2O, Fe2O3*, TiO2 and CaO/Al2O3, but higher SiO2, at similar Mg#, is not readily explicable by crustal contamination. Rather, it reflects source composition and/or the effects of the melting processes. The model compositions of melts produced by decompression of mantle plumes beneath continental lithosphere have relatively low SiO2 and high Fe2O3*. In contrast, the available experimental data indicate that partial melts of peridotite have low TiO2, Na2O and Fe2O3*CaO/Al2O3, if the peridotite has been previously depleted by melt extraction. Moreover, melting of hydrated, depleted peridotite yields SiO2-rich, Fe2O3- and CaO-poor melts. Since anhydrous, depleted peridotite has a high-temperature solidus, it is argued that the source of these CFB was variably melt depleted and hydrated mantle, inferred to be within the lithosphere. Isotope data suggest these source regions were often old and relatively enriched in incompatible trace elements, and it is envisaged that H2O±CO2 were added at the same time as the incompatible elements. An implication is that a significant proportion of the new continental crust generated since the Permian reflected multistage processes involving mobilization of continental mantle lithosphere that was enriched in minor and trace elements during the Proterozoic.  相似文献   


17.
The three layered intrusions studied in the Laouni area have been emplaced within syn-kinematic Pan-African granites and older metamorphic rocks. They have crystallized at the end of the regional high-temperature metamorphism, but are free from metamorphic recrystallization, revealing a post-collisional character. The cumulate piles can be interpreted in terms of two magmatic liquid lines of descent: one is tholeiitic and marked by plagioclase–olivine–clinopyroxene cumulates (troctolites or olivine bearing gabbros), while the other is calc-alkaline and produced orthopyroxene–plagioclase rich cumulates (norites). One intrusion (WL (West Laouni)-troctolitic massif), shows a Lower Banded Zone where olivine-chromite orthocumulates are interlayered with orthopyroxene-rich and olivine–plagioclase–clinopyroxene cumulates, whereas the Upper Massive Zone consists mainly of troctolitic and gabbroic cumulates. The other two massifs are more homogeneous: the WL-noritic massif has a calc-alkaline differentiation trend whereas the EL (East Laouni)–troctolitic massif has a tholeiitic one. Separated pyroxene and plagioclase display similar incompatible trace element patterns, regardless of the cumulate type. Calculated liquids in equilibrium with the two pyroxenes for both noritic and troctolitic cumulates are characterized by negative Nb, Ta, Zr and Hf anomalies and light REE enrichment inherited from the parental magmas. Troctolitic cumulates have mantle-derived δ18O (+5 to +6‰), initial 87Sr/86Sr (Sri=0.7030 to 0.7054), Nd (+5 to −1) values whereas noritic cumulates are variably enriched in δ18O (+7 to +9‰), show negative Nd (−7 to −12) and slightly higher Sri (0.7040–0.7065). Based on field, isotopic ratios are interpreted as resulting from a depleted mantle source (Sri=0.7030; Nd=+5.1; δ18O=+5.1‰) having experience short term incompatible element enrichment and variable crustal contamination. The mantle magma was slightly contaminated by an Archaean lower crust in troctolitic cumulates, more strongly and with an additional contamination by an Eburnian upper crust in noritic cumulates. Lower crust input is recorded mainly by Sr and Nd isotopes and upper crust input by O isotopes. This is probably due to the different water/rock ratios of these two crust types. Assimilation of low amounts (<10%) of quartz-bearing felsic rocks, coming from both lower and upper crust, can explain the rise of SiO2 activity, the enrichment in 18O and 87Sr and the lowering of Nd in the noritic cumulates compared to troctolitic ones. The geodynamic model proposed to account for the Laouni tholeiitic magmatism involves a late Pan-African asthenospheric rise due to a rapid lithospheric thinning associated with functioning of shear zones, which allowed tholeiitic magmas to reach high crustal levels while experiencing decreasing degrees of crustal contamination with time.  相似文献   

18.
K. J. Fraser  C. J. Hawkesworth   《Lithos》1992,28(3-6):327-345
Major, trace element and radiogenic isotope results are presented for a suite of hypabyssal kimberlites from a single pipe, at the Finsch Mine, South Africa. These are Group 2 kimberlites characterised by abundant phlogopite ± serpentine ± diopside; they are ultrabasic (SiO2 < 42 wt.%%) and ultrapotassic (K2O/Na2O > 6.9) igneous rocks, they exhibit a wide range in major element chemistry with SiO2 = 27.6−41.9 wt. % and MgO = 10.4−33.4 wt. %. (87Sr/86Sr)i=0.7089 to 0.7106, εNd is −6.2 to −9.7 and they have unradiogenic (207Pb/204Pb)i contents which ensure that they plot below the Pb-ore growth curve. They have high incompatible and compatible element contents, a striking positive array between Y and Nb which indicates that garnet was not involved in the within suite differentiation processes, and a negative trend between K/Nb and Nb contents which suggests that phlogopite was involved. In addition, some elements exhibit an unexpected order of relative incompatibility for different trace elements which suggests that the intra-kimberlite variations are not primarily due to variations in the degree of partial melting. The effects of fractional crystallization are difficult to establish because for the most part they have been masked by the entrainment of 50–60% mantle peridotite. Thus, the Finsch kimberlites are interpreted as mixtures of a melt component and entrained garnet peridotite, with no evidence for significant contamination with crustal material. The melt component was characterised by high incompatible element contents, which require both very small degrees of partial melting, and source regions with higher incompatible element contents than depleted or primitive mantle. Since the melt component was the principal source of incompatible elements in the kimberlite magma, the enriched Nd, Sr and Pb isotope ratios of the kimberlite are characteristic of the melt source region. The melt fractions were therefore derived from ancient, trace elements enriched portions of the upper mantle, most probably situated within the sub-continental mantle lithosphere, and different from the low 87Sr/86Sr garnet peridotite xenoliths found at Finsch. Within the sub-continental mantle lithosphere old, incompatible element enriched source regions for the kimberlite melt fraction are inferred to have been overlain by depleted mantle material which became entrained in the kimberlite magma.  相似文献   

19.
东坑盆地位于南岭构造带东段,其中的流纹岩为该带燕山期最早的“流纹岩—玄武岩”双峰式火山岩组合的酸性端元.主量元素、微量元素、Sr-Nd-Pb-O-Hf同位素研究表明,流纹岩富硅、钾,贫镁、钙、钛,属亚碱性弱过铝质岩石;稀土元素富集,轻重稀土分异和铕负异常明显,表现典型的M型稀土元素4分组效应,富集高场强元素Ta、Hf、Zr、Nb、Ce、Y和大离子亲石元素Rb、Th、U、Ba、Ga,亏损大离子亲石元素Sr,具有A型流纹岩和高Sr-Ba流纹岩的微量元素特征;(87Sr/86Sr)i较高,(206Pb/204Pb)i、(207Pb/204Pb)i和(208Pb/204Pb)i较低,εNd(t)、εHf(t)和δ18OV-SMOW较高,TDM2(Nd)和TDM2(Hf)较小.这些特征表明,东坑盆地流纹岩是拉张构造环境下源于新元古代亏损地幔和少量古老下地壳物质混合而成年轻下地壳部分熔融的产物,为早侏罗世早期南岭构造带东段处于拉张构造环境、地壳属正常厚度提供了岩石学证据.  相似文献   

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