Southeastern extension of Singhbhum Shear Zone, Eastern Indian Shield: A detailed appraisal

IF 2.7 3区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Journal of Asian Earth Sciences Pub Date : 2024-11-02 DOI:10.1016/j.jseaes.2024.106391
Maya Tripathi, Itishree Chinara, J.P. Mohakul, Saptarshi Mallick
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Abstract

Trans-crustal, northerly dipping, arcuate Singhbhum Shear Zone (SSZ) constituting the interface of Proterozoic North Singhbhum Mobile Belt (NSMB) and Singhbhum Craton (SC) is established over a strike length of about ∼200 km from Baharagorato Chakradharpur in the west beyond which it bifurcates around the wedge shaped Chakradharpur granite. Based on geological mapping and meso to micro scale structural analysis, present work examines the SSZ’s southeastern extension beyond Baharagora, indicating its southward continuation for about 50 km to Dubukidihi within the NSMB lithopackage. Bangriposi Shear Zone (BSZ) which defines the terrane boundary between the SC and NSMB in this sector, splays towards north as Bangriposi West Shear Zone (BWSZ) and both transects the Dhanjori Basin longitudinally. BSZ and BWSZ are interpreted to be cogenetic with SSZ. NSMB in this area comprises of pelitic and psamopelitic rocks intruded by mafic–ultramafic magmatism and granitoids. Considering a north to south compression regime during accretion of NSMB with SC, the study area, which forms the interface between the craton and mobile belt, is at an acute to obtuse angle with the direction of overall stress field. It is marked by several high strain zones characterized by N-S shear band cleavages with moderate easterly dips, and northerly pitching stretching/mineral lineation. Consistent westerly vergent folds on mylonitic plane and orientation of stretching lineation indicates top to WSW movement in the shear zones. Tectonically interleaved mafic–ultramafic schist within the Romapahari granite are sites of copper mineralization with enhanced nickel concentration pointing towards future exploration sites for epigenetic copper, uranium mineralization which is so characteristic of SSZ.
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印度东部地盾辛格布姆剪切带的东南延伸:详细评估
跨地壳、向北倾斜、弧形的辛格布姆剪切带(SSZ)构成了新生代北辛格布姆移动带(NSMB)和辛格布姆克拉通(SC)的界面,其走向长度从西部的巴哈拉戈拉托-查克拉达普尔(Baharagorato Chakradharpur)开始,长约 200 千米。根据地质测绘和中尺度至微观尺度的结构分析,本研究考察了该剪切带在巴哈拉戈拉之后向东南方向的延伸,表明该剪切带向南延伸了约 50 公里,一直延伸到 NSMB 岩包层内的杜布基迪希(Dubukidihi)。邦格里波西剪切带(BSZ)确定了该区南大洋和北大西洋岩浆岩之间的岩层边界,向北延伸为邦格里波西西剪切带(BWSZ),两者都纵向横穿丹乔里盆地。据解释,BSZ 和 BWSZ 与 SSZ 同源。该地区的NSMB由辉绿岩和辉长岩组成,由黑云母-超黑云母岩浆岩和花岗岩侵入。考虑到南闪长岩母岩与南闪长岩母岩在增生过程中由北向南的压缩机制,研究区域构成了克拉通与移动带之间的界面,与整个应力场方向成锐角至钝角。该地区有几个高应变区,其特征是具有适度东倾的 N-S 剪切带劈裂,以及向北的俯仰拉伸/矿物线状。麦饭石面上一致的西向蠕动褶皱和拉伸线纹的走向表明剪切带中存在自上而下的西西运动。在 Romapahari 花岗岩中构造交错的黑云母-超黑云母片岩是铜矿化的地点,镍浓度较高,指向未来勘探地点的表生铜、铀矿化,这是 SSZ 的特征。
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来源期刊
Journal of Asian Earth Sciences
Journal of Asian Earth Sciences 地学-地球科学综合
CiteScore
5.90
自引率
10.00%
发文量
324
审稿时长
71 days
期刊介绍: Journal of Asian Earth Sciences has an open access mirror journal Journal of Asian Earth Sciences: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review. The Journal of Asian Earth Sciences is an international interdisciplinary journal devoted to all aspects of research related to the solid Earth Sciences of Asia. The Journal publishes high quality, peer-reviewed scientific papers on the regional geology, tectonics, geochemistry and geophysics of Asia. It will be devoted primarily to research papers but short communications relating to new developments of broad interest, reviews and book reviews will also be included. Papers must have international appeal and should present work of more than local significance. The scope includes deep processes of the Asian continent and its adjacent oceans; seismology and earthquakes; orogeny, magmatism, metamorphism and volcanism; growth, deformation and destruction of the Asian crust; crust-mantle interaction; evolution of life (early life, biostratigraphy, biogeography and mass-extinction); fluids, fluxes and reservoirs of mineral and energy resources; surface processes (weathering, erosion, transport and deposition of sediments) and resulting geomorphology; and the response of the Earth to global climate change as viewed within the Asian continent and surrounding oceans.
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