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1.
利用XRF和HR-ICP-MS对中国大陆科学钻探工程(CCSD)主孔<700m深度高Ti榴辉岩进行了准确分析研究。结果表明高Ti榴辉岩以TFeO和Eu异常之间的相关性及非耦合的高TiO2(2.4-5.7%)、低Nb(<5.5μg/g)和Zr(<98μg/g)为特征。而且,这些榴辉岩的TiO2、V和TFeO之间正相关。高场强元素(Ti、Nb、Zr等)在不同矿物和玄武岩/安山岩熔体之间的分配系数研究表明,高Ti和低Nb、Zr之间的非耦合变化必须有磁铁矿结晶作用的参与才能够出现。斜长石的密度(p=2.61-2.76g/cm3)低于正常玄武岩熔体(p=2.8-3.0g/cm3),因此玄武岩岩浆房中结晶出的斜长石在岩浆演化早期不会和熔体分离而形成堆晶岩。磁铁矿的密度(p=5.1-5.2g/cm3)远远高于玄武岩熔体。磁铁矿的结晶分离会显著降低玄武岩熔体的局部密度而诱发斜长石晶体分离下沉并形成富集斜长石的高Fe堆晶岩。这种机制很好地解释了高Ti榴辉岩所具有的TFeO和Eu异常之间的相关性及非耦合的高TiO2(2.4-5.7%)、低Nb(<5.5μg/g)和Zr(<98μg/g)特征。本文研究表明在CCSD中的高Ti榴辉岩原岩应是由同一玄武岩岩浆房中富磁铁矿结晶作用形成的堆晶岩。高Ti榴辉岩的Ti矿化本质上源于磁铁矿结晶作用,而与其经历的超高压变质作用无关。  相似文献   

2.
本文以中国大陆科学钻探主孔0~2000m岩芯中的榴辉岩为对象,运用EMPA和LA-ICP-MS技术,系统测定了榴辉岩中石榴石和绿辉石的主量与微量元素组成,并据此讨论了它们的成岩成矿意义.研究结果表明,CCSD主孔榴辉岩中石榴石富重稀土和Sc、Y、Co,而绿辉石则富中稀土和Pb、Sr、V,石榴石和绿辉石的高场强元素(特别是Nb、Ta)含量均很低.石榴石存在不同程度的Ce负异常,指示榴辉岩的形成过程中卷入有地表氧化条件下形成的风化沉积物.石榴石具有低的Zr/Y比值,绿辉石普遍具有高的Sr含量,这些特征说明榴辉岩(特别是高钛榴辉岩)的原岩可能为遭受过壳源物质混染与交代的富集地幔部分熔融的产物.高钛与低钛榴辉岩中石榴石和绿辉石在主量及微量元素组成上存在一定差别,总体而言,高钛榴辉岩中石榴石具高的MgO含量和较高的MgO/TFeO比值,以及较高的稀土和Sc含量,而绿辉石则相对富TFeO、MnO,并具有较高的Sr、Zr、Hf含量.高钛榴辉岩中石榴石和绿辉石常出现不同程度的Eu正异常,Cr含量均显著低于低钛榴辉岩.综合分析表明,高钛榴辉岩的原岩最可能为富斜长石的辉长质侵入岩,原岩组成的差异应是导致二类榴辉岩中石榴石和绿辉石矿物化学组成存在差异的主要原因.  相似文献   

3.
叶景艳  胡建  汤倩 《江苏地质》2013,37(1):1-16
榴辉岩是造山带中最为常见的高级变质岩石,无论是自身还是其原岩均蕴含着丰富的地球动力学信息。以中国大陆科学钻探工程主孔0~2000m范围内揭露的榴辉岩为对象,按其与围岩接触关系,划分为与片麻岩类共生的榴辉岩、与超基性岩毗邻的榴辉岩以及与超基性岩共生的榴辉岩3种类型。据此对比分析了此3类榴辉岩的地球化学组成的差异,提出了这些岩石的原岩可能是由单一岩浆房岩浆经堆晶及分离结晶作用演化而来的基性—超基性杂岩体,物质来源主要为富集地幔物质的部分熔融,其构造环境应位于洋壳对大陆俯冲的消减带,但并非岛弧环境,应是弧后拉张岩浆作用的产物。  相似文献   

4.
苏鲁超高压变质带南部的东海地区有富Fe—Ti的钛铁矿榴辉岩和富Ti的金红石榴辉岩。富Fe—Ti榴辉岩的次要矿物主要由钛铁矿和钛磁铁矿组成,可舍少量金红石,具有很低的Si02(38.0%-42.3%)、Na20+K20(0.48%~2.13%)和Zr、Nb、Ta、Ba、1Kb、REE含量,很高的FeO(18.24%-25.33%)、V和Co含量,并具有不同程度的LREE亏损、明显的正Eu异常;富Ti金红石榴辉岩舍有丰富的金红石和磷灰石,SiO2含量范围(38.0%-54.8%)较宽,FeO含量较低,P2O5含量较高(可达4.1%),而X-TiO2与P205含量具正相关性。相对于原始地慢岩.富Ti金红石榴辉岩具有Rb、Th、K、Nb、Pr、Nd、Eu、Ti、Lu的负异常和Ba、Sr、Zr的正异常.并具相对较高的IKEE含量,LREE富集和HREE亏损的1KEE分配型式。岩石学和地球化学特征揭示,Fe—Ti榴辉岩的原岩是变质的Fe—Ti辉长岩,是基性岩浆强烈分离结晶作用形成的超基性-基性-中酸性层状侵入体的特征组成部分。  相似文献   

5.
陈振宇  曾令森  梁凤华  张泽明 《地质学报》2006,80(12):1842-1850
为探讨榴辉岩中磷灰石的矿物化学特征及榴辉岩中某些相关元素的地球化学行为,对中国大陆科学钻探(CCSD)主孔500~540m深度的榴辉岩样品进行了岩石化学及磷灰石的矿物化学分析。这些榴辉岩具有不同的矿物组成和化学成分,并可据此分为上下两段,上段500~530m为正常榴辉岩,下段530~540m为高Ti榴辉岩和高Ti-Fe榴辉岩,其原岩可能为类似于辉长质和苦橄质的基性—超基性岩石。其中的磷灰石成分没有明显差别,均为氟—磷灰石,其富F贫Cl的特征可能是造成榴辉岩中高盐度流体包裹体和全岩高F低Cl的主要原因。磷灰石普遍含有一定的Sr、S、Fe元素,多数还含有Cu、Pb、Zn等元素。榴辉岩中P2O5含量与其F、Cl、Sr、S元素的相关程度表明,磷灰石是榴辉岩中F元素的最主要储存库,也是Sr元素的重要储存库之一,而对于Cl元素则只是部分控制,与S元素则没有相关性。榴辉岩中F、Sr及Cl元素的地球化学行为主要受控于磷灰石,因此,在榴辉岩从进变质—退变质过程中,这些元素的活动性直接受控于磷灰石的稳定性。  相似文献   

6.
李静 《云南地质》1995,14(3):231-237
玉河寨基性-超基性环状杂岩体的岩相学及地球化学资料表明,属同源岩浆演经的产物,岩浆演化为基性→超基性的反序岩浆演化。这种反序岩浆演化的机制主要是由于斜长石在高位岩浆房中的分离结晶所致。对流分离作用可能是斜长石晶体从熔融体中分离的方式。在此基础上,笔者提出了该岩体的成因模式。  相似文献   

7.
本文通过对大兴安岭中段扎兰屯地区早二叠世花岗岩进行岩石学、年代学及地球化学分析,揭示早二叠世花岗岩的成因和构造背景,探讨贺根山-黑河缝合带中段晚古生代构造演化特征。早二叠世花岗岩主要由二长花岗岩和碱长花岗岩组成,形成年龄为289~298Ma。样品的高硅、高铝、低P_2O_5、低CaO、低MgO的岩石地球化学特征及较低的FeO/MgO比值和低的Ba、Sr、Eu组分,表现出A型花岗岩的岩石地球化学特征;此外,样品的低Sc、Ni、Co、V含量及Nb/Ta(488~219)和Zr/Hf比值(832~291)表明研究区早二叠世花岗岩岩浆是壳幔物质混合作用的产物。早二叠世A2型花岗岩形成于伸展环境,说明早二叠世之前兴安地块与松辽地块已完成拼贴,早二叠世期间贺根山-黑河缝合带在扎兰屯地区处于碰撞拼贴以后的后碰撞伸展环境。  相似文献   

8.
榴辉岩型钛矿化的地球化学制约   总被引:1,自引:0,他引:1  
根据对国内外已发表的榴辉岩地球化学资料的统计分析,表明榴辉岩中TiO2含量与全铁(TFeO)具正相关性,而与MgO, 特别是MgO/(MgO TFeO)比值具负相关性.按TiO2含量的高低,可将榴辉岩区分为高钛型(TiO2>2.0%)、中钛型(TiO2=0.60%~2.00%)和低钛型(TiO2<0.6%)三类,文章重点讨论了高钛与低钛榴辉岩地球化学特征的差异.与低钛型榴辉岩相比,高钛型榴辉岩相对偏基性,富铁,贫镁,并具有较高的高场强元素(如Nb、Ta、Zr、Hf等)和亲铁元素(如V、Co、Ni等)含量.原岩恢复显示低钛榴辉岩的源岩有两种类型,其一为洋壳俯冲形成的蛇绿岩残片,另一为富钙质的沉积泥灰岩.高钛型榴辉岩的源岩则具OIB特征,可能为富集地幔部分熔融或上涌的软流圈地幔物质与地壳物质混染的产物.榴辉岩中的钛矿化主要受源岩因素制约,此外,岩浆结晶分异对其也有一定影响.  相似文献   

9.
一种改进的简单的估算原始岩浆的方法   总被引:2,自引:0,他引:2  
利用橄榄石和熔浆的Fe—Mg分配系数,制作了MgO—FeO演化图解。根据MgO—FeO体系中Fo橄榄石的Fo值:Fo=n(Mg)÷n(Mg)+n(Fen(Mg)/n(Mg)+n(Fe))等值线与Fe—Mg演化曲线交点确定原始岩浆成分。该图解优点在于可以更简单、直观地判别原始岩浆成分,适用于橄榄石分离结晶体系。同时介绍了该图解的使用方法,并以峨眉山大火成岩省丽江地区的大具与仕满两个剖面的苦橄岩为例,说明如何应用该图解来恢复原始岩浆以及解释岩石的成因。研究结果表明,仕满地区原始岩浆MgO、FeO含量分别为23.5%和12.8%,部分熔融程度较高,SM-14和SM-15是由仕满原始岩浆经过轻度橄榄石分离结晶形成的,基本可以代表原始岩浆成分。大具地区原始岩浆可分为两类,一类部分熔融程度较低,MgO、FeO含量分别为19.8%和11.3%;另一类部分熔融程度较高,MgO、FeO含量分别为23%和13.3%,与仕满原始岩浆成分类似。大具地区的岩石样品成分均不能代表该地区的原始岩浆成分,而是经历了明显的橄榄石分离结晶作用。另外,峨眉山大火成岩省中绝大多数的玄武岩中CaO含量不符合橄榄石分离结晶关系,并且MgO含量一般都低于8%,以及岩石中普遍出现单斜辉石和斜长石矿物等都表明这些玄武岩不可能由地幔部分熔融形成的原始岩浆直接通过橄榄石分离结晶作用形成。  相似文献   

10.
柴北缘超高压地体折返过程中地壳深熔的岩石学研究   总被引:2,自引:2,他引:0  
宏观、微观岩石学、地球化学和年代学研究表明,柴北缘锡铁山和绿梁山单元富含斜长石的浅色体和富含钾长石的浅色体是超高压地体折返过程中榴辉岩和片麻岩部分熔融的产物。阴极发光图像显示富含斜长石的浅色体中锆石具有明显的核-边双层结构,锆石核部无明显分带特征,并呈现出重稀土平坦和无Eu异常的稀土配分模式,~450Ma的年龄结果与区域上榴辉岩峰期变质时代一致;发光较弱的锆石边部具不明显的环带结构和较低的Th/U比值,~426Ma年龄结果代表了熔体的结晶时代。富含钾长石的浅色体中的锆石U-Pb定年结果记录的~910Ma、~450Ma和~426Ma三组年龄分别代表了片麻岩原岩结晶时代、高压-超高压变质作用时代和熔体结晶时代。富含斜长石的浅色体具有高SiO_2、Al_2O_3、CaO、Na_2O、Sr和LREE,而低MgO、FeO~T、K_2O、Y、Yb和HREE的英云闪长岩-奥长花岗岩的地球化学特征;而富含钾长石的浅色体具有高的SiO_2、Al_2O_3和K_2O+Na_2O,而较低的CaO、MgO、REE的花岗岩地球化学特征。黝帘石和少量的多硅白云母的脱水分解是触发超高压榴辉岩发生部分熔融形成富含斜长石的浅色体的主要机制;而多硅白云母的脱水分解则是触发超高压片麻岩部分熔融形成富含钾长石浅色体的主要机制。这些浅色体显著的促进了柴北缘超高压地体的快速折返,并对大陆俯冲隧道中的元素迁移和壳-幔作用具有重要的影响。  相似文献   

11.
Compared to other mafic and ultramafic rocks from the CCSD main borehole as well as from the outcrops, rocks from the 540-600 m section is extraordinary in terms of its geophysical as well as geochemical properties. It consists of > 70% hematite-ilmenite garnet pyroxenite (HI-GPX) and < 30% intercalated rutile garnet pyroxenite (R-GPX). Whole-rock geochemical data show that HI-GPXs have: (1) relatively high V with an average of 606 ppm, but lower Nb and Ta; (2) highest TFeO, Fe2O3/FeO ratio, and highly variable but strong positive Eu anomalies with Eu/Eu? up to 2.9; (3) anomalously high V/Sc ratios ranging from 8.39 to 43.23, average 15.03; and (4) high amounts of hematite-ilmenite solid solutions with a very fine intergrowth structure down to nanometer scale. V/Sc ratios in the CCSD garnet pyroxenites are correlated negatively with MgO, but positively with Fe2O3/FeO ratios. Both suites of pyroxenites have similar rare earth elements and high field strength elements geochemistry. These features demonstrate that these pyroxenites were formed from metamorphism of high-Fe and/or -Ti gabbroic cumulates. This can account not only for low high field strength elements (HFSE) and rare earth elements (REE) but also low Nb/Ta and Zr/Hf ratios in these rocks. Seemingly negative correlation between Nb/Ta and Zr/Hf in the CCSD metabasites, not significantly affected by UHP metamorphism, is also consistent with the silicate differentiation trend in a basaltic magma chamber.  相似文献   

12.
The Maobei complex in the southern Sulu ultrahigh‐pressure (UHP) metamorphic belt, eastern China, mainly consists of layered eclogites, garnet peridotites and orthogneisses. Based on the modal mineral and whole‐rock compositions, eclogites from the Maobei complex are divided into quartz eclogite, quartz‐rich eclogite, rutile eclogite, rutile‐rich eclogite and eclogite. The distinct spatial changes in the lithology and related chemical compositions indicate that this complex includes 10 rhythmic layers. The rutile eclogites have high TiO2 (2.4–5.9 wt%), commonly coupled with high P2O5 (up to 4.1 wt%) contents; most show fractionated REE patterns with slight positive Eu anomalies. The rutile‐rich eclogites have very high TiO2 (3.3–5.7 wt%), FeOT (17.5–25.3 wt%), V (126–1163 ppm) and Co (14–132 ppm), and very low SiO2 (38.0–42.3 wt%), Zr (24–85 ppm), Nb (0.3–6.9 ppm), Ta (<0.1–0.6 ppm) and total REE (10.7–334.0 ppm) contents, variable degree of LREE depletion, and positive Eu anomalies (Eu/Eu* = 1.1–2.9), and the Ti is decoupled from other high‐field‐strength elements. These characteristics are consistent with Fe‐Ti gabbros of typical layered intrusions, implying a cumulate of plagioclase, clinopyroxene and abundant accessory magnetite in an evolved basaltic magmatic chamber. Based on a normal stratigraphic sequence, the Maobei complex shows an iron‐enrichment trend, followed by alkaline enrichment with increasing fractionated crystallization and stratigraphic height. These facts, together with SHRIMP U‐Pb zircon ages of 773.7 ± 8.0 Ma, indicate that the protolith of the Maobei complex is a Neoproterozoic layered intrusion consisting of a base of peridogabbro, a main body of gabbro and minor granodiorite. Unusually high Ti, V and P contents in three rutile eclogite layers suggest that they are potential economic ore deposits.  相似文献   

13.
The Taiwan mountain belt, one of the youngest orogenies in the world, is caused by the collision of the Luzon arc with the Eurasian margin, which leads to post-collisional extension and magmatism in the Northern Taiwan Volcanic Zone (NTVZ). The magma chamber process in this region has not previously been elucidated in detail. In this paper, the textural and compositional features of plagioclase phenocrysts in basalt from the Tatun Volcanic Group (TTVG) were studied to restrict the dynamics of magma system. Results show that the magma melts in TTVG are mainly sourced from the underlying MORB-like mantle wedge but influenced by incorporation of subduction components, causing the elevated Sr/Y and Ba/Y ratios in magma melts. The subduction components are mainly transported in the form of sediment melt. The plagioclase phenocrysts in the TTVG volcanic rocks are generally coarsely core-sieved with a clear rim. The An contents in the rims of plagioclase are much lower than those of cores, and elevated FeO concentrations are detected in the plagioclase rims. We propose there exists a double-layer magma chamber in this region. The core of the plagioclase was crystalized in the deeper quiescent magma chamber (~21 km), which was subsequently partially dissolved during the ascent of magma melt under H2O-undersaturated condition, forming the typical coarsely sieved texture and synneusis. When this crystal-rich melt migrates into the shallower chamber, water saturation is reached and more sodic plagioclase formed as the rim of phenocryst. Due to the considerably higher fO2 in the shallow chamber than in the deeper one, and the distribution of Fe between plagioclase and melt positively correlates with fO2, the FeO content in the plagioclase rim elevates in conjunction with increasing fO2.  相似文献   

14.
榴辉岩型金红石矿床是我国原生金红石矿床的最重要类型。本文以中国大陆科学钻探主孔0~2000m范围内揭露的榴辉岩为对象,通过对榴辉岩中TiO2与其它元素协变关系的全面分析,同时结合我国原生榴辉岩型金红石矿床TiO2的平均品位,将榴辉岩区分为高钛榴辉岩(TiO2〉2%)和低钛榴辉岩(TiO2〈2%),并据此系统对比了二类榴辉岩地球化学组成的差异。研究结果表明,高钛榴辉岩相对贫硅、贫钾、富铁,Al2O3/TiO2比值和全碱(K2O+Na2O)含量总体偏低,Cs、Rb、Ba等大离子亲石元素和Zr、Hf等高场强元素不同程度亏损,而放射性元素Th、U则相对富集,并总体具有较低的轻重稀土比值。榴辉岩型金红石矿床的形成主要受原岩因素制约,原岩的源区组成、产出环境、起源深度、部分熔融程度和随后的结晶分异过程对Ti的初始富集均具重要影响,富钛基性原岩是榴辉岩型金红石矿床形成的物质基础,高压区域变质作用是这类矿床形成的必要条件。  相似文献   

15.
白石头泉含黄玉的天河石花岗岩体Rb-Sr等时线年龄209.6±9.6 Ma,从下至上可分为5个连续过渡的岩相带,即淡色花岗岩(a带),含天河石花岗岩(b带),天河石花岗岩(c带),含黄玉天河石花岗岩(d带)以及黄玉钠长花岗岩(e带)。岩体的岩石地球化学特征是高F(> 2 %)、高 Rb (500×10-6~1 087×10-6),低 P2O5 (≤0.06%),Na2O>K2O,弱过铝 (A/NKC=1.00~1.11)、翼型稀土元素配分曲线 (ΣREE=28.6×10-6~231.9×10-6)、低(La/Lu)N值 (0.11~0.68)、强烈Eu负异常(Eu/Eu* = 0.0005~0.0110)、Nd同位素富集(εNd (t )= -4.4~-4.9)。该岩体的岩浆是中地壳云母片麻岩部分熔融的产物。从a带到e带的地球化学变化是:(1)F,A2O3和Na2O含量逐渐增加,而SiO2,(Fe2O3+FeO+MgO+MnO)、FeO和K2O含量逐渐减少,在标准矿物的Qz-Ab-Or图上总体向Ab角顶移动;(2)总体而言,Cr,Ni,Co,V,W,Nb,Zr,U,Th和Y含量逐渐减少,而F,Li,Rb,Hf,Ta,Sn,Sc,Ga和Zn含量逐渐增加,但d带到e带间存在Li,Rb,Sn,Sc和Zn含量的突降;(3)K/Rb,Al/Ga,Nb/Ta和Zr/Hf值下降, 但K/Cs,Th/U,(La/Lu)N值上升;(4)全岩的δ18O 值从a带的9.25 ‰~9.75 ‰降低到e带的7.32 ‰,d带与e带间存在2.1‰的δ18O值突降。岩浆从a带到e带的垂向分带是分离结晶和流体输运的共同结果。岩体的d带与e带存在明显的成分间断。在矿物成分上表现为黄玉、钠长石和白云母的剧增,钾长石和天河石的剧减。在主量元素上表现为 Na2O和CaO含量的剧增,SiO2和K2O含量的剧减。在微量元素上表现为F,Ga,Sr和Ba含量的剧增,Li,Rb,Sc,Zn和Sn含量的剧减。在稀土元素上,Eu/Eu*和(La/Lu)N值增加,而ΣREE值降低。在氧同位素特征上,δ18O值显著降低。这种间断不仅受分离结晶和流体输运的制约,也与天水加入、围岩混染和亚固相线淋滤有关。  相似文献   

16.
Eclogites are often the only tangible high-pressure evidence we have from a paleosubduction zone, and they potentially preserve important geochemical information from the descending slab. Selected Group B/C eclogites and metapelites from the Trescolmen locality in the Adula nappe in the central Swiss Alps were chosen for a detailed investigation to determine oxygen isotope ratios and major- and trace-element compositions of the main rock-forming minerals. Complex major-element zonation patterns in garnet porphyroblasts indicate a pre-Alpine, medium-pressure growth history coupled with a high-pressure modification during the Alpine orogeny. Garnet REE patterns are notably HREE depleted in rim regions, with high overall REE content, particularly in the cores of grains. Omphacites are relatively homogenous in major elements, and show LREE- and HREE-depleted patterns, but with overall abundances of REEs lower than in garnets. These patterns are best explained by partitioning of the HREEs into garnet and the LREEs into zoisite. Oxygen-isotope systematics indicate limited fluid flow in eclogites and surrounding metapelites. δ18O values of quartz and garnet at the interface between eclogites and metapelites are indistinguishable and point to fluid exchange. Oxygen equilibrium conditions among rock-forming minerals, particularly between quartz and garnet in eclogites and metapelites, were reached, and fractionation indicates temperatures of ~600°C. The δ18O of unaltered eclogites (5.5 to 7.5 ‰) suggests a basaltic, MORB-type protolith.  相似文献   

17.
1 Introduction Alunite [KAl3(SO4)2(OH)6] is a very important non-ferrous metal resource, so many countries throughout the world have made great investments in research on the mechanism of its formation, its geological characteristics and applications. O…  相似文献   

18.
香山西岩体是东天山地区发现的唯一的一个铜镍-钛铁复合型含矿岩体,前人对香山西铜镍-钛铁矿床成因认识一直存在争议。本次通过矿相学研究结合电子探针分析,在香山西铜镍矿石中发现了铜镍硫化物与钛铁氧化物共生的现象,并首次测定了香山西钛铁辉长岩的SIMS锆石U-Pb年龄为278.6±1.8Ma(MSWD=1.2),与前人测得香山中岩体角闪辉长岩的锆石U-Pb年龄基本一致,证实了香山西铜镍矿与钛铁矿为共生关系,两者空间上渐变过渡。岩石地球化学研究表明,香山岩体(包括钛铁辉长岩)为同源岩浆经结晶分异作用形成的一套镁铁-超镁铁质岩体,具有拉斑玄武质岩浆分异演化趋势,并且经历了与地壳物质的混染。与中段和东段岩石相比,香山西辉长岩类具有相对高的REE、SiO2(平均48.99%)、K2O+Na2O(平均3.43%)、TiO2(平均1.26%)和明显低的Mg#值(平均62.4),表现出分异演化程度高于中段和东段。经反演得出香山岩体原始岩浆含MgO约10%,FeO约9%,TiO2约1.14%,与同一成矿带内其它含铜镍矿岩体原始岩浆成份相近,应为 普通的拉斑玄武质岩浆。因此,香山西钛铁矿床的形成机制可能是由普通的拉斑玄武质岩浆,经历了较高程度的分异演化导致钛铁氧化物在残余岩浆中逐步富集,岩浆在上升侵位过程中与地壳物质的混染,不仅促使了岩浆中硫化物的饱和,同时提高了岩浆体系的氧逸度,进而促使了钛铁氧化物结晶沉淀。对香山西钛铁矿床成因研究的启示意义在于,除我国攀西地区高钛的玄武质岩浆外,普通的拉斑玄武质岩浆,在有利的分异演化条件下(如初始低氧逸度、相对高度的分异演化、后期与地壳物质混染)也有可能形成大型钛铁矿床。  相似文献   

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