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281.
We present in situ trace element and Nd isotopic data of apatites from metamorphosed and metasomatized (i.e., altered) and unaltered granitoids in the Songnen and Jiamusi massifs in the eastern Central Asian Orogenic Belt, with the aim of fingerprinting granitoid petrogenesis, including both the magmatic and post-magmatic evolution processes. Apatites from altered granitoids (AG) and unaltered granitoids (UG) are characterized by distinct textures and geochemical compositions. Apatites from AG have irregular rim overgrowths and complex internal textures, along with low contents of rare earth elements (REEs), suggesting the re-precipitation of apatite during epidote crystallization and/or leaching of REEs from apatite by metasomatic fluids. εNd(t) values of the these apatites are decoupled from zircon εHf(t) values for most samples, which can be attributed to the higher mobility of Nd as compared to Sm in certain fluids. Apatites from UG are of igneous origin based on their homogeneous or concentric zoned textures and coupled Nd-Hf isotopic compositions. Trace element variations in igneous apatite are controlled primarily by the geochemical composition of the parental melt, fractional crystallization of other REE-bearing minerals, and changes in partition coefficients. Sr contents and Eu/Eu* values of apatites from UG correlate with whole-rock Sr and SiO2 contents, highlighting the effects of plagioclase fractionation during magma evolution. Apatites from UG can be subdivided into four groups based on REE contents. Group 1 apatites have REE patterns similar to the host granitoids, but are slightly enriched in middle REEs, reflecting the influence of the parental melt composition and REE partitioning. Group 2 apatites exhibit strong light REE depletions, whereas Group 3 apatites are depleted in middle and heavy REEs, indicative of the crystallization of epidote-group minerals and hornblende before and/or during apatite crystallization, respectively. Group 4 apatites are depleted in heavy REEs, but enriched in Sr, which are features of adakites. Some unusual geochemical features of the apatites, including the REE patterns, Sr contents, Eu anomalies, and Nd isotopic compositions, indicate that inherited apatites are likely to retain the geochemical features of their parental magmas, and thus provide a record of small-scale crustal assimilation during magma evolution that is not evident from the whole-rock geochemistry.  相似文献   
282.
The felsic volcanogenic tuffs named “green-bean rocks” (GBRs), characterized by a green or yellowish green color, are widely distributed in the western Yangtze platform and have a high lithium content (286–957 ppm). This paper studies the ages, origin and tectonic setting of the GBRs in the Sichuan basin on the western margin of the Yangtze platform through the whole-rock geochemistry and zircon trace elements by using U–Pb dating and Hf–O isotopes. The GBR samples from the Quxian and Beibei sections yielded zircon U–Pb ages of 245.5 ± 1.8 Ma and 244.8 ± 2.2 Ma. These samples can be used as the isochronous stratigraphic marker of the Early–Middle Triassic boundary (EMTB) for regional correlation. The whole-rock and zircon geochemistry, and zircon Hf–O isotopes exhibited S-type geochemical affinities with high positive δ18O values (9.28‰–11.98‰), low negative εHf(t) values (?13.87 to ? 6.79), and TDM2 ages of 2150–1703 Ma, indicating that the lithium-rich GBRs were generated by the remelting of the pre-existing ancient Paleoproterozoic layer without mantle source contamination in the arc-related/orogenic tectonic setting. The results of this study demonstrate that the lithium-rich GBRs in the western Yangtze platform were derived from arc volcanic eruptions along the Sanjiang orogen, triggered by the closure of the eastern Paleo-Tethys Ocean and the syn-collision between the continental Indochina and Yangtze blocks at ca. 247 Ma. This was marked by a major shift from I-type magmas with intermediate εHf(t) values to S-type magmas with low negative εHf(t) values. Collectively, our results provide new insights into the origin of the GBRs and decodes the closure of the eastern Paleo-Tethys.  相似文献   
283.
The origin and source of the petroleum in the Jurassic reservoirs within the eastern Fukang sub-depression were geochemically investigated. They show thermal maturities matching the peak generation stage, while the condensates are at the early stage of intense cracking. Oils and condensates may have experienced mild evaporative fractionation, while mixing of severely biodegraded with non-biodegraded oils has occurred. Using biomarkers and isotopes, petroleums were classified into Group I, II and III genetic groups, with Group III further divided into IIIa and IIIb subgroups. Group I petroleum displays heavy carbon isotopes, a strong predominance of pristine over phytane, high C19 and C20 tricyclic and C24 tetracyclic terpanes, low gammacerane, and dominant C29 steranes, while Group II shows light carbon isotopes, a predominance of phytane over pristine, high C21 and C23 tricyclic with low C24 tetracyclic terpanes, high gammacerane and dominant C27 steranes. Group IIIa petroleum shows mixing compositions of Group I and II, while Group IIIb displays similar compositions to Group I, but with significantly higher Ts, C29Ts and C30 diahopane proportions. Oil-source rock correlation suggests Group I and II petroleums originate from Jurassic and Permian source rocks, respectively, while Group IIIa are mixtures sourced from these rocks and IIIb are mixtures from Jurassic and Triassic source rocks.  相似文献   
284.
Deep-water gravity depositional processes and evolution in arc systems have become topics of intense research focus in recent years. This study discusses the co-evolution of volcanism and deep-water gravity flow deposits at the southern margin of the Junggar Basin, based on petrology, geochronology and geochemical analyses. The results show that a massive collapse of unstable sediments from the slope was triggered by volcanism, resulting in the formation of slumping gravity flows. The occurrence...  相似文献   
285.
冯怀伟  许淑梅  王金铎  张关龙  曾治平  任新成  修金磊  王千军 《地质论评》2023,69(4):2023040028-2023040028
针对准噶尔盆地腹部侏罗系三工河组物源、砂体构型及储层物性认识存在争议的问题,笔者等基于岩芯、录井、钻井等方面的资料,结合前人在准噶尔盆地周缘磷灰石及锆石年龄数据,运用沉积学、层序地层学、沉积盆地分析及储层沉积学的基本原理和方法对三工河组二段物源方向、远近和类型、沉积体系展布、砂体构型及储层物性之间的关系进行了系统的研究。研究表明,在敞流盆地快速抬升/缓慢沉降的构造背景下形成辫状河三角洲退积式沉积序列,在五级层序地层格架中,河道强冲刷叠置砂体见于第1、2砂组,三角洲退积,分支河道强烈冲刷,导致河道砂体叠置,微相类型单一,单砂体厚度向上变薄,砂体全区稳定分布,储集性较好。河道弱冲刷叠置砂体见于第3、5砂组,三角洲退积,分支河道冲刷不明显,形成河道“二元结构”,单砂体厚度向上变薄,粒度变细,储集性好;河口坝组合砂体见于第4砂组,在三角洲退积过程中,水下分流河道末端形成河口坝,总体岩性向上变细,砂体不连续,储集性好,远砂坝席状砂组合砂体见于第6、7砂组,砂体零星分布,储集性很差。在浅水、低可容纳空间、快速抬升/缓慢幕式沉降构造背景之下,浅水三角洲的物源的方向、远近及类型是影响沉积微相展布的关键因素,也是影响砂体构型及其储层物性的物质基础。  相似文献   
286.
The magma source, petrogenesis, tectonic setting and geochronology of the late Paleozoic A-type granites widely exposed in the Zhaheba area, East Junggar, have thus far not been well-constrained. A better understanding of these issues will help to reveal the magmatic processes and continental growth of Central Asia. The A-type granites in Zhaheba include the Ashutasi alkaline granites and the Yuyitasi syenogranites, which were emplaced at 321.5 ± 4.8 Ma and 321.7 ± 0.6 Ma, respectively. The major rock-forming minerals are orthoclase, perthite, arfvedsonite and quartz, which exhibit the following principal geochemical characteristics of A2-type granites. (1) Their REE distribution curves each exhibit a ‘V’-shaped pattern and a marked depletion in Eu. They are rich in large-ion lithophile elements Rb, Th and U as well as high-field-strength elements Nb, Ta, Zr and Hf, but significantly depleted in Ba, Sr, P and Ti. (2) Their (87Sr/86Sr)i values (0.7021–0.7041), εNd(t) values (4.57–5.16) and REE distribution patterns are in basic agreement with those of the Kalamaili A-type granite belt in East Junggar. The TDM2 values of the alkaline granites and syenogranites range from 661 to 709 Ma. The A-type granites may be the products of upwelling asthenosphere-triggered partial melting of immature lower crust. The alkaline granites were late-stage products of crystallization and differentiation. Compared to the syenogranites, the alkaline granites are significantly lower in K2O, Na2O, Al2O3, FeO, MgO and CaO, but significantly higher in incompatible elements (e.g., SiO2, Rb, and Sr). The magmatic crystallization temperatures of the syenogranites and alkaline granites are 874°C and 819°C, respectively. As their age gradually decreases (peak ages: 322 Ma and 307 Ma, respectively), there is a gradual decrease in the TDM2 of the A-type granites and a gradual increase in the εNd(t) value from the Ulungur belt to the Kalamaili belt in East Junggar. The study of A-type granites is therefore one of the keys to understanding the laws and mechanisms of crustal accretion during the Phanerozoic period, as well as also being of great significance for understanding the Paleozoic accretion.  相似文献   
287.
准噶尔盆地乌—夏地区二叠系风城组发育一套特殊的云质岩类,其沉积环境及成因复杂,目前仍存在较多争议。本文基于岩心观察(13口井)与系统取样测试分析(64个样品),揭示了目标层位云质岩的岩石学和地球化学特征,探讨了不同类型云质岩的沉积环境及成因机制。研究结果表明:根据云质岩宏观结构特征,风城组可识别纹层状、星散状、丝絮状、团块状和不规则层状5种云质岩类型;高δ13CPDB值(平均4.0‰)、高古盐度值(平均13.0%)和深水沉积构造等特征表明目标层位沉积环境具有陆相低能、深水还原和咸水高矿化度等特点;纹层状云质岩为“高山深盆”盐湖卤水分层形成的准同生白云岩,团块状、不规则层状、丝絮状和星散状云质岩为埋藏交代白云岩。  相似文献   
288.
青海省东昆仑造山带洪水河铁矿床为一中型铁矿床,其含铁建造产于狼牙山组千枚岩中,矿石类型主要为块状磁铁石英岩型,少量为条带状磁铁石英岩型,前人一般认为其属于沉积变质型铁矿床。本文在前人研究基础上,对洪水河铁矿区含铁建造中块状铁矿石进行了铁同位素、主量元素、稀土元素和微量元素分析。结果显示:除1件样品外,其余含铁建造样品的铁同位素δ56FeIRMM014均介于0.97‰~1.97‰之间,和全球典型新元古代含铁建造的Fe同位素特征基本一致;铁矿石的SiO2+Fe2O3质量分数高达78.56%~98.06%,具有极低的Al/(Al+Fe+Mn)值(0.00~0.06),为典型的化学沉积岩;总稀土元素(w (∑REE))变化范围为(16.49~80.89)×10-6,没有明显的Ce异常(Ce/Ce*为0.93~1.05),轻稀土元素轻微亏损,显示出类似新元古代含铁建造型的特点。综合对比洪水河铁矿区含铁建造的Fe同位素组成、沉积时代和地球化学特征,推断洪水河铁矿区含铁建造的沉积环境为新元古代柴达木—东昆北陆块的被动大陆边缘构造环境,铁等成矿物质主要来源于海相热液流体;富含Fe2+的海相热液流体上涌并逐渐演变为低温热液后在亚氧化水体环境中与含氧海水混合,最后导致Fe2+被部分氧化并形成氢氧化铁,氢氧化铁逐渐沉积在大陆斜坡上最终形成含铁建造。洪水河铁矿的成因类型可划归为拉皮坦型新元古代含铁建造。  相似文献   
289.
研究目的】柳东地区位于右江盆地东缘,近年来该地区早三叠世石炮组中首次发现一套火山岩夹层,为研究盆地东缘的构造演化特征提供了重要依据。【研究方法】本文以新发现的柳东地区火山岩为研究对象,通过LAICP-MS锆石U-Pb年龄及Hf同位素分析,研究右江盆地东缘火山岩的形成时代及岩浆源区特征。【研究结果】结果表明,火山岩的岩性为凝灰岩-凝灰质熔岩-凝灰质火山角砾岩组合,指示了典型的火山岩特征。其2件凝灰岩样品中锆石LA-ICP-MS U-Pb加权平均年龄分别为(244.0±1.9) Ma和(247.1±0.9) Ma,锆石微量元素(U、Th、Hf、Nb)表现出大陆岩浆弧属性特征。锆石Hf同位素结果显示εHft)为-13.2~-1.2,二阶段模式年龄(TDMC)为1.35~2.06 Ga,其岩浆源区主要为地壳物质,平均地壳存留年龄为1.7~2.06 Ga。【结论】该火山岩夹层与其所出露的地层时代基本相符,属于早三叠世末期—中三叠世早期火山喷发产物,火山岩形成于火山弧-同碰撞的构造环境,代表了弧后盆地的沉积环境,与印支期古特提斯洋的闭合相关。该成果为古特提斯构造域的演化研究提供了新的基础资料,具有重要意义。创新点:柳东地区火山岩属于早三叠世末期—中三叠世早期火山喷发产物,形成于印支期古特提斯洋的闭合条件下的火山弧-同碰撞构造环境。  相似文献   
290.
刘金  王剑  张晓刚  尚玲  王桂君  艾尼·阿不都热依木 《地质论评》2022,68(1):2022010008-2022010008
准噶尔盆地吉木萨尔页岩油是中国典型的陆相页岩油。通过场发射扫描电镜、激光共聚焦、纳米CT、核磁共振等实验技术联合对微纳米孔隙中页岩油赋存特征进行研究,结果表明甜点储层具有纳米—亚微米—微米全尺度含油特征。在微纳米尺度,油、水赋存特征表现为重质组分油附着于2~5 μm以上孔隙的孔壁及充填于2~5 μm以下的孔隙中,中质组分油赋存于2~5 μm以上孔隙的中央,孔隙水含量较少,呈孤立状赋存于2~5 μm以上孔隙的中央,并被中质组分油包裹。页岩油在微纳米孔隙中的赋存不仅受生烃超压充注控制,还受吸附作用及多期次成藏影响。孔隙表面润湿性由亲水润湿反转为亲油润湿是烃类发生吸附的主要原因,多期次成藏造成微纳米孔隙中油质差异及高的含油饱和度。早期生烃超压充注进储层的重质组分油在孔隙表面亲油润湿下吸附于孔隙表面,随着吸附层变厚,纳米级孔隙逐渐被充满,孔隙水被驱替到较大的孔隙中间;后期成熟的中质组分油以此方式进一步充注和调整。研究认为埋深较大的凹陷西部是有利勘探方向。微纳米孔隙中的重质组分油是未来页岩油提高采收率的方向。吉木萨尔页岩油微观赋存特征及成因机制可能具有普遍性,对于中国陆相页岩油的深入研究具有借鉴意义。  相似文献   
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