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991.
本文针对亚太地区经济区域化发展趋势,阐明了该地区经济合作形式的主要特征,同时,对其进行地理研究的可行性及其意义提出自己的见解。  相似文献   
992.
世纪之交 ,我国经济面临着增长困境 ,其深层原因是地区发展不平衡所致。为解决这一问题必须加速推动西部地区经济发展 ,西部大开发的过程也就是缩小西部与东部差距的过程。为此 ,应遵循市场机制的原则 ,更新观念 ,采取一系列有效措施 ;调整产业结构 ,选择重点产业 ;加强基础设施建设 ;治理生态环境 ;实施分类扶持政策等 ,是西部社会、经济走上可持续发展道路的唯一选择  相似文献   
993.
位于新疆北部富蕴县库尔提一带的晚古生代变质玄武岩和辉长岩系含有似岛弧火山岩(arc-like)和似洋中脊玄武岩(MORB-like)成分的两种组分,岩石以出现不同程度的LREE亏损和Nb、Ta等元素的负异常为特征,在成分上非常相似于现代弧后盆地(Mariana和Okinawa弧后盆地)的玄武岩。我们厘定这套变质的镁铁质火成岩为弧后盆地蛇绿岩,它们很可能代表了晚古生代古亚洲洋北侧的一个洋内岛弧的弧后盆地系统,表明晚古生代早期新疆北部地区处于与古亚洲洋俯冲有关的岛弧环境,该古洋在晚石炭世-二叠纪消减消失后,两侧西伯利亚和哈萨克-准噶尔板块才开始碰撞和造山。  相似文献   
994.
从东太平洋中国开辟区南部挑选了4个铁锰结核(地理坐标,北纬7.7533°~8.6866°,西经143.875°~146.937°),每个结核以内部较容易剥离面和密集的铁锰质纹层为界,分成核部、中部和边部3部分,共12个样品做了Ce、Nd同位素组成和REE浓度测定。另外,从相同站位上又选择了3个结核进行了全结核的常量和微量元素浓度测定。常量与微量元素浓度测定结果证明,被研究结核属于早期成岩型。稀土元素图形特征与以前报道不同,从较广泛区域内挑选出的样品,除一个基本上无Ce异常外,其他都显示弱的负Ce异常,平均δCe为0.85。更重要的特征是,被测定的12个样品ε_(Ce)和ε_(Nd)都呈负值,同时,ε_(Nd)值高于其他大洋,它们分别为-0.80~-1.9和-1.4~-4.6,在ε_(Ne)-ε_(Nd)坐标图上位于第Ⅲ象限。根据这些特征,结合洋底地质环境,可能暗示直接或间接来源于大洋亏损地幔的成矿物质在太平洋结核中占有绝对优势。结核内部壳层之间的Ce、Nd同位素组成和Ce异常强度的变化,可能说明,在整个结核形成期间,成矿组分的来源曾发生过较大变化,幔源组分的强烈活动出现在结核的形成过程中。  相似文献   
995.
布青山蛇绿混杂岩位于阿尼玛卿带西段,它是由早古生代和早石炭世一早二叠世两期蛇绿岩组成的复合蛇绿混杂岩带。蛇绿岩中的变质橄榄岩以方辉橄榄为主,高镁,∑PEE是球粒陨石的0.2-0.65倍,HREE是球粒陨石的0.28-0.32倍,属亏损的大洋岩石圈地幔。早古生代蛇绿岩中辉长岩、辉绿岩和玄武岩等镁铁质岩主要具N-MORB性质,少量具T-MORB性质。早石炭世一早二叠世蛇绿岩中玄武岩也主要具N-MORB性质、少量具T-MORB性质。它们均形成于洋中脊环境。本区曾存在成熟的早古生代洋盆和古特提斯洋盆,有更复杂的构造演化史。  相似文献   
996.
通过对东太平洋多金属结核中国开辟区表层沉积物和短柱状沉积物的系统观察和分析,首次根据矿物学和地球化学两方面的证据,发现中国开辟区沉积物中热水活动及其产物的存在。X射线衍射分析表明,沉积物样品中普遍含有重晶石,部分样品中含量高达10%以上,扫描电镜观察发现,重晶石均为完整自形晶,并与同为自形的石英及钠长石共生。根据本区重晶石的地质背景及结晶形态,可以认为它的形成环境与加利福尼亚湾瓜伊马斯盆地(Guaymas)相似,属热水成因,伴生的石英和钠长石亦为常见的热水矿物,。这一共生组合的形成温度不低于70℃。地球化学研究发现,在柱状沉积物剖面上,Ba的垂向分布有两种类型,一种为平稳型,在一定深度范围内无明显变化。另一种为跃升型,并伴有其他活泼组分的同步变化,跃升型可视为热水活动在沉积历史上的记录,迄今为止,热水矿物组合主要见于东区的表层沉积物,而在西区,Ba在沉积物中的富集主要见于10cm以下层位,根据沉积速率推算,在中国开辟区西区的热水化活动记录比东区至少早0.1Ma。  相似文献   
997.
The Flatraket Complex, a granulite facies low strain enclave within the Western Gneiss Region, provides an excellent example of metastability of plagioclase‐bearing assemblages under eclogite facies conditions. Coesite eclogites are found <200 m structurally above and <1 km below the Flatraket Complex, and are separated from it by amphibolite facies gneisses related to pervasive late‐orogenic deformation and overprinting. Granulites within the Flatraket Complex equilibrated at 9–11 kbar, 700–800°C. These predate eclogite facies metamorphism and were preserved metastably in dry undeformed zones under eclogite facies conditions. Approximately 5% of the complex was transformed to eclogite in zones of fluid infiltration and deformation, which were focused along lithological contacts in the margin of the complex. Eclogitisation proceeded by domainal re‐equilibration and disequilibrium breakdown of plagioclase by predominantly hydration reactions. Both hydration and anhydrous plagioclase breakdown reactions were kinetically linked to input of fluid. More pervasive hydration of the complex occurred during exhumation, with fluid infiltration linked to dehydration of external gneisses. Eclogite facies shear zones within the complex equilibrated at 20–23 kbar, 650–800°C, consistent with the lack of coesite and with the equilibration conditions of external HP eclogites. If the complex experienced pressures equivalent to those of nearby coesite eclogites (> 28 kbar), unprecedented metastability of plagioclase and quartz is implied. Alternatively, a tectonic break exists between the Flatraket Complex and UHP eclogites, supporting the concept of a tectonic boundary to the UHP zone of the Western Gneiss Region. The distribution of eclogite and amphibolite facies metamorphic overprints demonstrates that the reactivity of the crust during deep burial and exhumation is strongly controlled by fluid availability, and is a function of the protolith.  相似文献   
998.
The Sarek Dyke Swarm (SDS) crops out in the Sarektjåkkå Nappe (SN) of the Seve-Kalak Superterrane in the northern Swedish Caledonides. The SN has two main components: (1) a 4–5 km thick succession of rift-related sedimentary rocks, which is intruded by (2) a suite of tholeiitic dykes (the SDS) constituting 70–80% of the nappe. The nappe was deformed during Caledonian thrusting, but dykes and sedimentary rocks in the interior of the eastern parts of the SN are preserved in a pristine state. The tholeiitic dykes of the SDS commonly occur in sheeted dyke complexes, and up to 11 successive generations can be identified from crosscutting relations. The SN represents the fossil continent–ocean transition between the Baltic craton and the Iapetus Ocean, marking the initiation of seafloor spreading. Bubble-shaped pods and veinlets of diorite are present in the SDS sheeted dyke complexes. The pods are absent in the oldest dykes, but the younger a dyke, the more frequent the pods. The diorite pods are the equivalent of gabbro pegmatites, and both cogenetic and coeval with the dykes. The rapid successive emplacement of tholeiitic magma raised the ambient temperature in the dyke complex, so that crystallization in the youngest dykes mimicked similar processes in gabbro plutons. Six zircon fractions, from the diorite pods including two single grains, were analysed geochronologically by the U–Pb thermal ionization mass spectrometry method. The data yield a linear array of points that are 0.4–0.8% normally discordant, indicating a crystallization age of 608±1 Ma (207Pb/206Pb=607.9±0.7 Ma, MSWD=0.33). This age is inferred to date the onset of seafloor spreading in the Iapetus Ocean along the Baltoscandian margin.  相似文献   
999.
The evolution of the pre-Alpine Corio and Monastero metagabbros points to strong chemical and mineralogical similarities with that of other Permian gabbro bodies of the Alps, which are concentrated in the Southalpine and Austroalpine domains. The structural and metamorphic pre-Alpine evolution of these gabbros records a re-equilibration following the emplacement in the deep crust (P=0.6–0.9 GPa and T=850±70 °C), exhumation through amphibolite facies conditions (P=0.5–0.35 GPa and T=570–670 °C), followed by a greenschist facies imprint (0.25≤P≤0.35 GPa and T<550 °C). This retrograde PT evolution suggests that the exhumation occurred in a high thermal gradient regime, such as that induced by upwelling of an asthenospheric plume during continental rifting. This would be consistent with the crustal thinning known to have occurred in both the Southalpine and Austroalpine domains during Permian times. The gabbros and their country acid granulites are spatially associated with the serpentinised subcontinental mantle of the Lanzo Massif. This lithologic association and the metamorphic evolution is similar to that of the Fedoz gabbro (Austroalpine Domain of the Central Alps) and completely different from that observed in passive margins, where no remnants of the lower crust occur and the upper granitic crust directly overlies the serpentinized lherzolites. The location of Permian gabbro bodies in the Austroalpine and Southalpine domains and their absence in the Helvetic domain is evidence for asymmetric rifting.  相似文献   
1000.
An almost complete Upper Cretaceous sedimentary sequence recently recovered on the Kerguelen Plateau (southern Indian Ocean) during ODP Leg 183 was analysed for planktonic foraminifera in order to refine and integrate the zonal schemes previously proposed for the Southern Ocean area. Detailed biostratigraphic analysis carried out on holes 1135A, 1136A and 1138A (poleward of 50°S palaeolatitude during Late Cretaceous time) has allowed recognition of low and mid–high latitude bioevents, useful for correlation across latitudes, in addition to known Austral bioevents. The low latitude biozonation can be applied to Turonian sediments, because of the occurrence of Helvetoglobotruncana helvetica, which marks the boundary between Whiteinella archaeocretacea and Helvetoglobotruncana helvetica zones. The base of the Whiteinella archeocretacea Zone falls within the uppermost Cenomanian–Turonian black shale level in Hole 1138A. The stratigraphic interval from upper Turonian to uppermost Santonian can be resolved using bioevents recognized in the mid–high latitude sections. They are, in stratigraphic order: the last occurrence of Falsotruncana maslakovae in the Coniacian, the first occurrence of Heterohelix papula at the Coniacian/Santonian boundary, the extinction of the marginotruncanids in the late Santonian, and the first occurrence of Globigerinelloides impensus in the latest (?) Santonian. The remainder of the Late Cretaceous fits rather well in the Austral zonal scheme, except that Globigerinelloides impensus exhibits a stratigraphic range in agreement with its record at the mid–high latitude sections and extends further downwards than previously recorded at southern sites. Therefore, despite the poor recovery in certain intervals and the presence of several hiatuses of local and regional importance as revealed by correlation among holes, a more detailed zonal scheme has been obtained (mainly for the less resolved Turonian–Santonian interval). Remarks on some species often overlooked in literature are also provided.  相似文献   
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