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Keywords = northern North China Craton

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26 pages, 43014 KB  
Article
Geochronology and Geochemistry of Granitoids from the Zhuanshanzi Gold Deposit, Northern Margin of the North China Craton: Implications for Petrogenesis and Tectonic Significance
by Xueli Ma, Kaituo Shi, Cailin Wang, Kairui Song, Hongguang Lv and Xiaolin Liu
Minerals 2026, 16(9), 888; https://doi.org/10.3390/min16090888 - 28 Aug 2026
Viewed by 174
Abstract
During the Late Paleozoic and Early Mesozoic, intensive tectonic and magmatic activity along the northern margin of the North China Craton (NCC) was associated with widespread gold mineralization. This study investigates the petrology, geochemistry, and zircon U–Pb ages of granite porphyry, quartz monzonite, [...] Read more.
During the Late Paleozoic and Early Mesozoic, intensive tectonic and magmatic activity along the northern margin of the North China Craton (NCC) was associated with widespread gold mineralization. This study investigates the petrology, geochemistry, and zircon U–Pb ages of granite porphyry, quartz monzonite, and granite dikes from the Zhuanshanzi gold deposit in the Chifeng–Chaoyang region, central segment of the northern NCC, to constrain the petrogenesis and tectonic evolution. The zircon U–Pb dating yields emplacement ages of 245 ± 3 Ma and 248 ± 3 Ma for the granite porphyry and quartz monzonite, respectively (Early–Middle Triassic), and 364 ± 3 Ma for the granite dikes (Late Devonian). From the Late Devonian to the Early Permian, the study area was an active continental margin characterized by subduction of the Paleo-Asian Ocean beneath the NCC. The Late Devonian granite dikes are peraluminous, high-K calc-alkaline, and adakitic, and likely formed during arc–arc collisions that led to localized crustal thickening. By the Early–Middle Triassic, the Xing’an–Mongolian Orogenic Belt had collided with the NCC, marking the final closure of the Paleo-Asian Ocean. The Early Triassic quartz monzonite is a high-K calc-alkaline, peraluminous C-type adakite, derived from partial melting of thickened lower crust during the late- to post-collisional transition. In contrast, the Middle Triassic granite porphyry exhibits high-K, calc-alkaline, metaluminous A-type granitic affinities, consistent with a low-pressure partial melting of crustal material during post-orogenic extension transitioning to intracontinental rifting. Integrated with previous studies, we conclude that the Zhuanshanzi region records a prolonged evolution from subduction, through arc–arc collision and crustal thickening, to post-orogenic extension and intracontinental rifting of the Paleo-Asian Ocean from the Late Devonian to the Middle Triassic. Full article
(This article belongs to the Special Issue Gold Metallogeny: From Trace Elements to Ore Genesis)
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19 pages, 4642 KB  
Article
Sedimentary–Metamorphic Evolution of Mudstone-Derived Graphite-Bearing Gneiss in the Datong–Xinrong Graphite Belt, North China Craton
by Yue Zhang, Yuqi Liang, Wei Han, Zhiqiang Feng, Chengcheng Meng, Yang Bai and Xuan Xiang
Minerals 2026, 16(9), 868; https://doi.org/10.3390/min16090868 - 25 Aug 2026
Viewed by 341
Abstract
Regional metamorphic graphite deposits in the North China Craton (NCC) are important crystalline graphite resources, but the links among sedimentary protolith, metamorphic evolution, and graphite mineralization remain insufficiently constrained in many ore belts. In the Datong–Xinrong graphite belt of northern Shanxi Province, the [...] Read more.
Regional metamorphic graphite deposits in the North China Craton (NCC) are important crystalline graphite resources, but the links among sedimentary protolith, metamorphic evolution, and graphite mineralization remain insufficiently constrained in many ore belts. In the Datong–Xinrong graphite belt of northern Shanxi Province, the studied ore is hosted by graphite-bearing gneiss of the Paleoproterozoic Huangtuyao Formation. The graphite-bearing rocks are interpreted as mudstone-derived paragneiss and contain graphite, plagioclase, quartz, biotite, diopside, garnet, alkali feldspar, pyrrhotite, and minor sillimanite. To clarify the ore-controlling factors and metallogenic evolution of these rocks, we integrated whole-rock geochemistry, Raman spectroscopy of carbonaceous material (CM), and zircon U-Pb geochronology. Geochemical indicators and discrimination diagrams show that the protolith was deposited in a continental-margin setting under dry, brackish-water, and generally oxygen-rich conditions. Raman CM thermometry yields peak metamorphic temperatures of 445.9–534.0 °C, and mineral assemblage constraints indicate pressures of 6.10–7.13 kbar. Zircon U-Pb ages constrain the maximum depositional age of the sedimentary protolith to 2102 ± 42 Ma and the age of mineralization-related metamorphism to 1888 ± 25 Ma. These results support a sedimentary–metamorphic model in which carbon-bearing mudstone was deposited along an early Paleoproterozoic continental margin and was later transformed into graphite-bearing gneiss during late Paleoproterozoic orogenic metamorphism. Full article
(This article belongs to the Special Issue Selected Papers from the 7th National Youth Geological Congress)
20 pages, 20634 KB  
Article
Process Mineralogy of Titanomagnetite Ore in the Damiao Deposit, Chengde
by Mingshan Fang, Qinwang Dang and Minyan Wang
Minerals 2026, 16(8), 825; https://doi.org/10.3390/min16080825 - 10 Aug 2026
Viewed by 341
Abstract
The Damiao titanomagnetite deposit on the northern margin of the North China Craton is a typical Fe-Ti-P polymetallic ore with significant deep resource potential. However, the mineralogical factors controlling its beneficiation remain poorly quantified. This study integrates multi-element analysis, chemical phase analysis, XRD, [...] Read more.
The Damiao titanomagnetite deposit on the northern margin of the North China Craton is a typical Fe-Ti-P polymetallic ore with significant deep resource potential. However, the mineralogical factors controlling its beneficiation remain poorly quantified. This study integrates multi-element analysis, chemical phase analysis, XRD, EPMA, and MLA to systematically characterize the ore’s chemistry, mineralogy, element deportment, grain size, dissemination, and liberation. Results show that Fe (25.81% TFe), Ti (6.50% TiO2), and P (0.95% P2O5) are the main valuables. Fe is mainly in magnetite (59.53%), Ti in ilmenite (48.90%) and rutile (33.89%), and P almost entirely in fluorapatite. Magnetite, ilmenite, apatite, and pyrite are coarse-grained and achieve >80% free + rich intergrowths at 60% passing −0.074 mm, while rutile is fine and poorly liberated, representing the key titanium bottleneck. Silicate-bound iron (28.07% of Fe) causes irreversible loss; Ca-gangue (>20%) and chlorite slimes interfere with flotation. A staged flowsheet—primary grinding, magnetic separation, regrinding of rough concentrate, desulfurization, and sequential flotation—is proposed. This work provides a mineralogical basis for process optimization and offers references for similar deposits. Full article
(This article belongs to the Special Issue Advances in Process Mineralogy)
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22 pages, 44062 KB  
Article
Tectonic Evolution and Its Controls on Hydrocarbon Systems in the Eastern Ordos Basin and Adjacent Shanxi Region, China: Insights from Low-Temperature Thermochronology
by Yin Chen, Tianfu Zhang, Qizuan Zhang, Zhidan Li, Wei Zeng, Chao Zhang, Yanfeng Li and Yiguan Lu
Minerals 2026, 16(7), 710; https://doi.org/10.3390/min16070710 - 6 Jul 2026
Viewed by 345
Abstract
The Ordos Basin and the adjacent Shanxi region in northern China host multiple energy resources. However, the exhumation history of this region (especially the Cenozoic exhumation history) remains poorly constrained despite its importance for understanding basin evolution and multi-energy resource accumulation within the [...] Read more.
The Ordos Basin and the adjacent Shanxi region in northern China host multiple energy resources. However, the exhumation history of this region (especially the Cenozoic exhumation history) remains poorly constrained despite its importance for understanding basin evolution and multi-energy resource accumulation within the North China Craton (NCC). This study presents new apatite fission-track (AFT) data and thermal-history models from the eastern Ordos Basin and integrates them with previously published low-temperature thermochronological datasets to reconstruct the regional tectono-thermal evolution and evaluate its implications for mineral and hydrocarbon systems. The new AFT ages range from 39.5 to 24.8 Ma and are concentrated in the Late Eocene-Oligocene, recording two rapid cooling episodes at 39.5–32.7 Ma and 26.6–24.8 Ma. Together with regional thermochronological data, these results define five major tectono-thermal episodes since the Late Ordovician and reveal pronounced spatial variations in exhumation. This pattern indicates that Cenozoic deformation became increasingly localized along inherited basin-margin fault systems while the interior of the Ordos Basin remained comparatively stable. The reconstructed tectono-thermal history demonstrates that Late Jurassic-Early Cretaceous tectono-thermal reactivation coincided with peak hydrocarbon generation and accumulation, whereas Cenozoic uplift and fault reactivation primarily influenced hydrocarbon preservation and coalbed methane enrichment through differential exhumation and structural reorganization. These results refine the Cenozoic exhumation history of the eastern Ordos Basin and establish a regional tectono-thermal framework for understanding the coupled evolution of basin development and the accumulation and preservation of multi-energy resources. Full article
(This article belongs to the Section Mineral Geochemistry and Geochronology)
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27 pages, 12543 KB  
Article
Crystal Size Distribution and Spatial Statistics of Garnets from the Fangshan Dome Area, North China Craton: Implications for Nucleation Mechanism and Controlling Effects of Heating Rate on Reaction Kinetics
by Zhiqiang Zhou and Nengsong Chen
Minerals 2026, 16(7), 673; https://doi.org/10.3390/min16070673 - 25 Jun 2026
Viewed by 330
Abstract
Crystal size distributions (CSDs) of metamorphic minerals provide quantitative constraints on nucleation-growth kinetics and metamorphic thermal regimes. Early interpretations linked CSD shape to type of metamorphism, associating near-linear CSDs with rapid-contact metamorphism and bell-shaped CSDs with prolonged regional metamorphism. Subsequent works showed that [...] Read more.
Crystal size distributions (CSDs) of metamorphic minerals provide quantitative constraints on nucleation-growth kinetics and metamorphic thermal regimes. Early interpretations linked CSD shape to type of metamorphism, associating near-linear CSDs with rapid-contact metamorphism and bell-shaped CSDs with prolonged regional metamorphism. Subsequent works showed that diffusion-controlled nucleation and growth can also produce bell-shaped CSDs without annealing, leaving unresolved how contrasting thermal regimes are expressed in interface-controlled systems. The Fangshan tectonic dome at the northern margin of the North China Craton comprises multiple metamorphic zones, recording Mesozoic contact metamorphism of Fangshan plutons and a concealed pluton in the Nanjiao area. We employed high-resolution X-ray micro-computed tomography (micro-CT) to quantify the 3D crystal size distributions of garnets of contact metamorphic samples from the Nanjiao area and the Fangshan contact aureole. Integrated 3D CSDs with spatial statistics, reconstructed nucleation curves, garnet compositional zoning, and thermodynamic phase equilibrium modeling were used to decipher crystallization kinetics in interface-controlled systems. Nucleation and growth of garnets from the Nanjiao area, and one sample from the Fangshan contact aureole, which is separated from the main heat source by an earlier intruded magma body, are interface-controlled, and display bell-shaped CSDs together with sigmoidal nucleation curves that record a progressive increase followed by a gradual decline in nucleation rate. Phase equilibrium modeling and garnet compositional profiles of a sample from Nanjiao demonstrate that the late-stage deceleration of nucleation in interface-controlled systems is fundamentally driven by whole-rock constituents’ exhaustion rather than the geometric impingement of diffusion halos. In contrast, another contact sample, which is collected near the main heat source, is diffusion-controlled, and displays a steep J-shaped nucleation curve with a delayed, broad peak nucleation rate followed by rapid late-stage suppression. The 3D textures of these metamorphic rocks suggest that contact and regional thermal regime alone do not determine garnet population characteristics; bell-shaped CSDs can be produced in contact metamorphic environments. We propose that heating rate is the primary control on the resulting crystal size distributions. Full article
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24 pages, 45229 KB  
Article
Genesis and Tectono-Metallogenetic Setting of the Dongwujiiazi Gold Deposit, NE China: Insights from Whole-Rock Geochemistry and H–O–S–Pb Isotopes
by Lichun Fu, Guihu Chen, He Yuan, Yingzheng Pei, Qiang Wei, Fangyue Wang and Ahmed S. Moftah
Minerals 2026, 16(5), 435; https://doi.org/10.3390/min16050435 - 23 Apr 2026
Viewed by 644
Abstract
The Dongwujiiazi deposit is a structurally controlled orogenic gold deposit situated in the eastern part of the Chifeng–Chaoyang gold belt along the northern boundary of the North China Craton. This study establishes a comprehensive metallogenic model for the Dongwujiiazi gold deposit by integrating [...] Read more.
The Dongwujiiazi deposit is a structurally controlled orogenic gold deposit situated in the eastern part of the Chifeng–Chaoyang gold belt along the northern boundary of the North China Craton. This study establishes a comprehensive metallogenic model for the Dongwujiiazi gold deposit by integrating whole-rock geochemistry (major and trace elements), in situ trace elements and REEs in zircon, multi-isotope systems (H, O, S, Pb), and precise zircon U–Pb geochronology. Five types of intrusive and associated rocks are identified within the main biotite-pyroxene gneiss host of the Dongwujiiazi gold deposit: mylonitized granitic pegmatite, mylonitized porphyritic monzogranite, propylitized fine-grained quartz monzodiorite, quartz monzonite, and porphyritic dolerite. The gold-bearing polymetallic sulfide ores are composed of pyrite, chalcopyrite, sphalerite, galena, digenite, and native gold. Zircon grains in the Dongwujiiazi gold ore (2502 ± 15 to 2539 ± 18 Ma) are inherited from surrounding Neoarchean gneiss, recording older crustal sources rather than forming contemporaneously with the gold mineralization. H–O isotopes indicate that the ore-forming fluids were mixed in origin, involving both magmatic and metamorphic components. S and Pb isotopes suggest that the mineralizing sulfur was mainly derived from a magmatic source, while lead originated predominantly from lower crustal materials associated with the surrounding high-grade metamorphic rocks. In this study, we present a new metallogenic model for the Dongwujiiazi gold deposit, in which slab-derived and lower-crustal metamorphic fluids interacted with ascending magmas, resulting in fluid mixing and gold precipitation within structurally controlled zones of gneissic host rocks. Combined geochemical and isotopic evidence (H–O, S, Pb) indicates contributions from both magmatic and metamorphic sources, supporting formation as an intracontinental orogenic gold system in an active continental margin. Full article
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22 pages, 13981 KB  
Article
Geological Characteristics and Genesis of the Greisen-Hosted Nb-Ta Mineralization in the Qidashan Iron Deposit, Liaoning Province, China, and Its Implications
by Yang Xiao, Rongzhen Gao, Qing Sun, Jianfei Fu, Yuzeng Yao, Sanshi Jia and Jiale Chen
Minerals 2026, 16(3), 312; https://doi.org/10.3390/min16030312 - 16 Mar 2026
Viewed by 1253
Abstract
The newly identified greisen-hosted Nb-Ta mineralization in the Qidashan iron deposit, Liaoning Province, China, offers a unique opportunity to explore how hydrothermal processes contribute to the enrichment of critical metals. In this study, an integrated analytical approach of petrographic observation and scanning electron [...] Read more.
The newly identified greisen-hosted Nb-Ta mineralization in the Qidashan iron deposit, Liaoning Province, China, offers a unique opportunity to explore how hydrothermal processes contribute to the enrichment of critical metals. In this study, an integrated analytical approach of petrographic observation and scanning electron microscopy–energy-dispersive spectrometer (SEM-EDS), electron probe microanalyzer (EPMA), and laser ablation inductively coupled plasma mass spectrometer (LA-ICP-MS) U-Pb dating of columbite-group minerals (CGMs) were employed to systematically decipher the paragenetic sequence, micro-structure, elemental composition and mineralization age of CGMs, aiming at the genesis of greisen-hosted Nb-Ta mineralization. The mineralization is characterized by the abundant occurrence of CGMs. Three generations of CGMs and two mineralization stages are distinguished: stage I contains CGM Is and CGM IIs, with Nb2O5 ranging from 25.7 to 69.56 wt.% and Ta2O5 from 5.8 to 52.5 wt.%; stage II contains CGM IIIs, with Nb2O5 between 59.5 and 71.5 wt.% and Ta2O5 between 3.5 and 16.2 wt.%. CGM Is consist of euhedral, homogeneous crystals of more than 100 μm, exhibit low Ta/(Nb + Ta) ratios (0.05–0.06) and high Mn/(Fe + Mn) ratios (0.19–0.26), and belong to columbite-Fe. CGM IIs generally overgrow on CGM Is with hydrothermal overprinting textures, and show significant compositional gaps compared to CGM Is, exhibiting higher Ta/(Nb + Ta) ratios (0.13–0.55) and restricted Mn/(Fe + Mn) ratios (0.15–0.18), with some belonging to columbite-Fe and others to tantalite-Fe, which reveals a transition from magma to “hydrosilicate fluid”. CGM IIIs are mainly anhedral and homogeneous, with a grain size of less than 50 μm. However, some CGM IIIs overgrow on CGM IIs and/or CGM Is with patchy textures indicative of subsequent hydrothermal overprinting of hydrosilicate fluid, forming a coarse-grain size over 100 μm. CGM IIIs are characterized by lower Ta/(Nb + Ta) ratios (0.03–0.14) and variable Mn/(Fe + Mn) ratios (0.08–0.26), and they belong to columbite-Fe. LA-ICP-MS U-Pb dating yields weighted mean 206Pb/238U ages of 2646 ± 15 Ma for stage I and 2500 ± 28 Ma for stage II, indicating two-stage Nb-Ta mineralization. The early mineralization may correlate with the partial melting of volcanic–sedimentary rocks due to the geothermal anomalies associated with ~2.7 Ga submarine volcanism, and the late mineralization formed by the magmatic hydrothermal activities related to emplacement of the Qidashan granite in 2.5 Ga. We therefore propose that the two-stage greisen-hosted Nb-Ta mineralization probably widely occurred in these sedimentary–metamorphic iron deposits in the Anshan–Benxi area and even in the northern edge of the North China Craton, and it may provide new insights for evaluating the Nb-Ta resource potential in similar Algoma-type iron deposits globally. Full article
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23 pages, 4500 KB  
Article
Formation of Niujuan Ag-Au Deposit, North China Craton: Constraints from Pyrite Textures and In-Situ Trace Element and H-O-S Isotope Geochemistry
by Chunlai Liu, Ruiming Cao, Wei Li, Xiaoxuan Liu, Ke Huang, Wei Pan, Wei Cui and Linan Cui
Minerals 2026, 16(3), 264; https://doi.org/10.3390/min16030264 - 28 Feb 2026
Viewed by 520
Abstract
The North China Craton (NCC) hosts numerous world-class Au deposits and these Au deposits can be classified into the Au-only and Ag-Au polymetallics, respectively. The former is mostly located in the eastern NCC, such as in the giant Jiaodong Province, and the latter [...] Read more.
The North China Craton (NCC) hosts numerous world-class Au deposits and these Au deposits can be classified into the Au-only and Ag-Au polymetallics, respectively. The former is mostly located in the eastern NCC, such as in the giant Jiaodong Province, and the latter is mostly distributed along the northern and southern margins of the NCC. Compared with Au-only deposits, the ore genesis of the Ag-Au deposits remains controversial. This paper focuses on the Niujuan Ag-Au deposit in the Fengning ore cluster of the northern margin of the NCC. Detailed deposit geology investigation, texture analysis, and analyses of the in situ trace element and sulfur isotope compositions of pyrite, coupled with H-O isotope compositions of quartz from different stages, were conducted to elucidate the ore-forming processes and metal sources. The results showed that the formation of the Niujuan deposit can be divided into four stages, including a pre-ore siliceous breccia stage (stage 1), syn-ore quartz-pyrite stage (stage 2), syn-ore polymetallic sulfide stage (stage 3), and post-ore fluorite-calcite stage (stage 4). Among these, stage 3 represents the major Ag-Au mineralization stage. Pyrite is well developed within stage 2 and stage 3, representing the intensive sulfidation of the wall rock. Microscopic analytical techniques including gamma-enhanced reflected light and scanning electron microscopy backscattered electron (BSE) reveal that pyrite samples from stage 2 and stage 3 have distinct textures. Pyrite (Py1) from stage 2 is homogeneous but with numerous pores. In contrast, pyrite (Py2) from stage 3 has overgrowth textures, and be divided into three sub-stages from core to rim (Py2a, Py2b, and Py2c) with different BSE brightness levels. LA-ICP-MS trace elements analyses results show that these different stages of pyrite show different composition such as Au, As, Ag, Co, and Ni. Py1 has low Au and Ag concentrations ranging from <0.1 ppm to 0.02 ppm and <0.1 ppm to 21.8 ppm, respectively. Py2a has low Au and Ag concentrations ranging from <0.1 ppm to 0.4 ppm and 0.4 ppm to 118.4 ppm, respectively. Py2b is characterized by high As and low Au contents, with average values of 6670.8 ppm for As and 1.4 ppm for Au. Py2c shows relatively low Co and Ni concentrations ranging from 0.02 ppm to 255.2 ppm and <0.1 ppm to 9.9 ppm, respectively. The sulfur isotope composition of Py1 and Py2 is relatively consistent, ranging from 3.8‰ to 6.7‰. The H and O isotope compositions of quartz from stage 1, stage 2, and stage 3 have insignificant variations, ranging from −119.5‰ to −101.3‰ for δD and −6.8‰ to −3.7‰ for δ18Ofluid, respectively. The results show that sulfur and, possibly, Au and Ag were mainly derived from magmatic hydrothermal fluids, and a significant amount of meteoric water was involved. Combined with the published mineralizing ages (~140 Ma), this paper suggests that the Niujuan Ag-Au deposit formed during the Early Cretaceous under an extensional setting in response to the eastward retreating subduction of the Paleo-Pacific oceanic plate. Evidence from deposit geology and geochemistry reveals that the mixture of magmatic and meteoric water, together with intensive sulfidation, is the key factor controlling Au and Ag deposition. Full article
(This article belongs to the Section Mineral Deposits)
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20 pages, 7808 KB  
Article
Detrital Zircon U-Pb Geochronology and Hf Isotopic of the Taiyuan Formation, Qinshui Basin: Implications for Maximum Sedimentary Age and Provenance Shift
by Yuehua Hou, Fenghua Zhao, Dongna Liu, Linhua Zhong, Shangqing Zhang and Qi Zhang
Minerals 2026, 16(3), 261; https://doi.org/10.3390/min16030261 - 28 Feb 2026
Viewed by 727
Abstract
To constrain the Late Paleozoic tectonic evolution of Taiyuan Formation, we conducted detrital zircon U-Pb dating and Hf isotopes analysis. The U-Pb age spectra from ten sandstone samples (taken from both the top and bottom of the formation) display four major age groups [...] Read more.
To constrain the Late Paleozoic tectonic evolution of Taiyuan Formation, we conducted detrital zircon U-Pb dating and Hf isotopes analysis. The U-Pb age spectra from ten sandstone samples (taken from both the top and bottom of the formation) display four major age groups of 2.6–2.4 Ga, 2.2–1.8 Ga, 496–421 Ma and 350–270 Ma with highest peaks at ca. 323 Ma and 443 Ma. Moreover, on the basis of the weighted mean age of the five youngest detrital zircons (293.0 ± 4.1 Ma), combined with published results, we propose that the Taiyuan Formation formed during the Early Permian. Comparison of detrital zircon U-Pb age spectra and Hf isotopic compositions with potential source regions indicates that the early Paleozoic zircons were largely derived from the North Qinling orogenic belt, whereas the late Paleozoic zircons originated from the Inner Mongolia uplift. This shift reveals a significant provenance change recorded in the Taiyuan Formation. The uplift of the northern North China Craton (Inner Mongolia uplift) is interpreted as a response to the resubduction of the Paleo-Asian Ocean during the Late Paleozoic. The resulting paleogeographic pattern—higher in the north and lower in the south—redirected sediment supply for the uppermost sandstone and overlying strata of the Taiyuan Formation in the Qinshui Basin from the earlier North Qinling orogenic belt to the Inner Mongolia uplift. Full article
(This article belongs to the Section Mineral Deposits)
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17 pages, 4086 KB  
Article
Study on Zircon and Garnet in Kimberlite from the Bayan Obo Area, Northern North China Craton, and Their Tectonic Significance
by Caifei Liang, Xuena Shi, Haijun Ren, Lingjun Guo, Yushan Zuo, Ji He and Rui Liu
Minerals 2026, 16(2), 195; https://doi.org/10.3390/min16020195 - 12 Feb 2026
Viewed by 678
Abstract
To reveal the evolution of the North China Craton (NCC) and the breakup process of the Columbia supercontinent, this study conducted zircon geochronology and garnet mineralogical analyses on kimberlites from the Bayan Obo area, on the northern margin of the NCC. Zircon U-Pb [...] Read more.
To reveal the evolution of the North China Craton (NCC) and the breakup process of the Columbia supercontinent, this study conducted zircon geochronology and garnet mineralogical analyses on kimberlites from the Bayan Obo area, on the northern margin of the NCC. Zircon U-Pb dating yielded four groups of concordant ages: 2505 ± 46 Ma, 2210 ± 57 Ma, 1928 ± 58 Ma, and 1455 ± 88 Ma. Among these, 1455 ± 88 Ma represents the formation age of the kimberlite, corresponding to a regional extensional tectonic setting. The other three groups are xenocrystic zircon ages, recording the formation of the Archean basement of the NCC, extensional magmatic activity in the middle Paleoproterozoic, and collisional metamorphic events in the late Paleoproterozoic, respectively. The major element characteristics of the garnets indicate they are granulite-facies crust-derived garnets (G4 type), formed under temperature and pressure conditions of 791 ± 50–876 ± 50 °C and 14 ± 3.0 kbar. This corresponds to a mantle heat flow value of approximately 60 ± 5 mW/m2, suggesting an unstable state of the lithosphere in the study area. Combined with the regional geological background, the depositional age of the Bilute Formation in Bayan Obo is determined to be between 1455 and 1524 Ma. The emplacement of kimberlite is related to extensional rifting driven by the breakup of the Columbia supercontinent, and garnets hosted in kimberlite record the crustal extension and mantle magma underplating during the rift-spreading stage of this period. This study provides key petrological and chronological evidence for the tectonic evolution of the northern margin of the NCC and the breakup of the Columbia supercontinent. Full article
(This article belongs to the Section Mineral Geochemistry and Geochronology)
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15 pages, 6376 KB  
Article
Hadean–Neoarchean Crustal Evolution of the Northeastern North China Craton: Evidence Derived from the Zircon U–Pb–Hf Isotopes of Supracrustal Rock from the Jiapigou Terrane
by Nan Tian, Jilong Han, Xueni Zhang, Yong Zhang and Shu Wang
Minerals 2026, 16(2), 176; https://doi.org/10.3390/min16020176 - 6 Feb 2026
Viewed by 1093
Abstract
The North China Craton (NCC), one of the oldest cratons worldwide, may provide information on the evolution and geodynamic processes of the early Earth, especially during the pre-Mesoarchean period. Many ancient zircons have been discovered in the Jiapigou terrane of the northeastern NCC [...] Read more.
The North China Craton (NCC), one of the oldest cratons worldwide, may provide information on the evolution and geodynamic processes of the early Earth, especially during the pre-Mesoarchean period. Many ancient zircons have been discovered in the Jiapigou terrane of the northeastern NCC on the basis of our recent studies, providing an excellent opportunity to trace the early crustal evolution trend of the NCC. Here, we present a detailed study of the petrography, mineralogy, zircon U–Pb dating and Lu–Hf isotopes of supracrustal rocks (biotite schist) obtained from the Jiapigou terrane. Geochronology combined with the internal structures and Th/U ratios of the zircons reveal that the zircons acquired from the supracrustal rock can be divided into the following two types: magmatic zircons and metamorphic zircons. Among the magmatic zircons, the youngest zircon age (2.49 Ga) is considered to represent the time at which the protolith of the supracrustal rock (i.e., Neoarchean) crystallized, whereas the others were likely captured or inherited from their magma sources. The zircon Hf isotopes reveal that unexposed Hadean–Paleoarchean crust (4.18–3.57 Ga) is present beneath the Jiapigou terrane, and its growth history can be traced back to the Hadean period. Moreover, the evidence derived from this and previous studies indicates that the Jiapigou terrane underwent two crustal recycling events (3.37–3.20 Ga and ~2.96 Ga) during the Paleoarchean, two crustal reworking episodes (2.53 Ga and 2.49 Ga) during the Neoarchean, and later metamorphism at 2.41 Ga. Thus, the Jiapigou terrane has undoubtedly recorded multiple episodes of early crustal growth and/or reworking that are similar to, but not limited to, those of the northern and southern margins of the NCC. Full article
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32 pages, 18294 KB  
Article
Influencing Factors of Hydrocarbon Migration and Adjustment at the Edge of a Stable Cratonic Basin: Implications from Fluid Inclusions, Quantitative Fluorescence Techniques, and Geochemical Tracing
by Zhengqi Yang, Xin Cheng, Siqi Ouyang, Zhe Liu, Yuting Cheng, Shuqi Lan, Lei Xue, Ting Zhang and Yiqian Qu
Energies 2026, 19(3), 638; https://doi.org/10.3390/en19030638 - 26 Jan 2026
Cited by 1 | Viewed by 850
Abstract
Understanding the mechanisms of hydrocarbon migration, accumulation, and alteration, particularly how evolution controls these processes, is critical for exploring lithologic hydrocarbons in reservoirs. In the complex tectonic settings of the continental margin of the stable North China Craton, there is a significant presence [...] Read more.
Understanding the mechanisms of hydrocarbon migration, accumulation, and alteration, particularly how evolution controls these processes, is critical for exploring lithologic hydrocarbons in reservoirs. In the complex tectonic settings of the continental margin of the stable North China Craton, there is a significant presence of small yet highly prolific hydrocarbon reservoirs. The processes of hydrocarbon migration and accumulation are complex and thus represent an important research focus in geology. This study, based on core, logging, and seismic data and integrating fluid inclusion analysis, quantitative fluorescence techniques, and geochemical experiments, combines the shale smear factor and paleotectonic reconstructions to clarify the hydrocarbon accumulation episodes, migration pathways, and factors controlling reservoir adjustments in the Yanwu area of the Tianhuan Depression in the Ordos Basin, China. The results reveal three types of NE-trending left-lateral strike–slip faults: linear, left-stepping, and right-stepping. Shale Smear Factor (SSF) analysis confirms that these faults exhibit segmented opening behaviors, with SSF > 1.7 identified as the threshold for fault openness. Multiparameter geochemical tracing based on terpanes and steranes shows that lateral migration along fault zones dominates the preferential migration pathways for hydrocarbons. Fluid inclusion thermometry revealed homogenization temperatures within the 100–110 °C and 80–90 °C intervals, while the oil inclusions exhibit blue or blue-and-white fluorescence, reflecting early hydrocarbon charging and late-stage secondary migration. Integrated analysis indicates that during the late Early Cretaceous (105–90 Ma), hydrocarbons were charged upward through open segments of linear strike–slip fault zones in the northern study area, experiencing lateral migration and accumulation along high-permeability sand bodies and unconformities in the shallow strata. Since the Late Cretaceous (65 Ma-present), the regional tectonic framework has evolved from a west–high, east–low to a west–low, east–high configuration, inducing secondary hydrocarbon migration and leading to the remigration or even destruction of early-formed oil reservoirs. This study systematically demonstrates that fault activity and tectonic evolution control the accumulation and distribution of hydrocarbons in the region. These findings provide theoretical insights for hydrocarbon exploration in regions with complex tectonic evolution within stable cratonic basins. Full article
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39 pages, 13928 KB  
Article
Genesis of the Hadamengou Gold Deposit, Northern North China Craton: Constraints from Ore Geology, Fluid Inclusion, and Isotope Geochemistry
by Liang Wang, Liqiong Jia, Genhou Wang, Liangsheng Ge, Jiankun Kang and Bin Wang
Minerals 2026, 16(1), 99; https://doi.org/10.3390/min16010099 - 20 Jan 2026
Viewed by 2037
Abstract
The Hadamengou gold deposit, hosted in the Precambrian metamorphic basement, is a super-large gold deposit occurring along the northern margin of the North China Craton. Despite extensive investigation, the genesis of the gold mineralization is poorly understood and remains highly debated. This study [...] Read more.
The Hadamengou gold deposit, hosted in the Precambrian metamorphic basement, is a super-large gold deposit occurring along the northern margin of the North China Craton. Despite extensive investigation, the genesis of the gold mineralization is poorly understood and remains highly debated. This study integrates a comprehensive dataset, including fluid inclusion microthermometry and C-H-O-S-Pb isotopes, to better constrain the genesis and ore-forming mechanism of the deposit. Hydrothermal mineralization can be divided into pyrite–potassium feldspar–quartz (Stage I), quartz–gold–pyrite–molybdenite (Stage II), quartz–gold–polymetallic sulfide (Stage III), and quartz–carbonate stages (Stage IV). Four types of primary fluid inclusions are identified, including pure CO2-type, composite CO2-H2O-type, aqueous-type, and solid-daughter mineral-bearing-type inclusions. Microthermometric and compositional data reveal that the fluids were mesothermal to hypothermal, H2O-dominated, and CO2-rich fluids containing significant N2 and low-to-moderate salinity, indicative of a magmatic–hydrothermal origin. Fluid inclusion assemblages further imply that the ore-forming fluids underwent fluid immiscibility, causing CO2 effusion and significant changes in physicochemical conditions that destabilized gold bisulfide complexes. The hydrogen–oxygen isotopic compositions, moreover, support a dominant magmatic water source, with increasing meteoric water input during later stages. The carbon–oxygen isotopes are also consistent with a magmatic carbon source. Sulfur and lead isotopes collectively imply that ore-forming materials were derived from a hybrid crust–mantle magmatic reservoir, with minor contribution from the country rocks. By synthesizing temporal–spatial relationships between magmatic activity and ore formation, and the regional tectonic evolution, we suggest that the Hadamengou is an intrusion-related magmatic–hydrothermal lode gold deposit. It is genetically associated with multi-stage magmatism induced by crust–mantle interaction, which developed within the extensional tectonic regimes. Full article
(This article belongs to the Section Mineral Deposits)
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26 pages, 30392 KB  
Article
Multisystem (S–Pb–He–Ar–H–O) Isotopic and Fluid Inclusion Constraints on the Genesis of the Chaijiagou Porphyry Mo Deposit, North China Craton
by Wei Xie, Chao Jin, Qingdong Zeng, Lingli Zhou, Rui Dong, Zhao Wang and Kaiyuan Wang
Minerals 2026, 16(1), 71; https://doi.org/10.3390/min16010071 - 12 Jan 2026
Cited by 2 | Viewed by 714
Abstract
The Chaijiagou Mo deposit (0.11 Mt Mo @ 0.07%) is located along the northern margin of the North China Craton. This study integrates ore geology, S–Pb–He–Ar–H–O isotopes, and fluid inclusion (FI) analyses to constrain the sources of ore-forming fluids and metals, as well [...] Read more.
The Chaijiagou Mo deposit (0.11 Mt Mo @ 0.07%) is located along the northern margin of the North China Craton. This study integrates ore geology, S–Pb–He–Ar–H–O isotopes, and fluid inclusion (FI) analyses to constrain the sources of ore-forming fluids and metals, as well as mineralization mechanisms. Three principal inclusion types were identified: liquid-rich, vapor-rich, and saline FIs. Microthermometry documents a progressive decline in homogenization temperatures and salinities from early to late mineralization stages: Stage 1 (360–450 °C; 5.3–11.3 and 35.4–51.5 wt.% NaCl equation), Stages 2.1–2.2 (320–380 °C and 260–340 °C; 5.4–11.8 and 33.8–44.5 wt.% NaCl equation), and Stage 4 (140–200 °C; 0.4–3.9 wt.% NaCl equation). Noble gas and stable isotope data reveal that the ore-forming fluids were initially dominated by crustally derived magmatic–hydrothermal components with a minor mantle contribution, subsequently experiencing significant meteoric water input. S–Pb isotopic compositions demonstrate a genetic relationship between mineralization and the ore-bearing granite porphyry, indicating a magmatic origin for both sulfur and lead. Fluid–rock interactions and fluid boiling were the dominant controls on molybdenite and chalcopyrite deposition during Stage 2, whereas mixing with meteoric waters triggered galena and sphalerite precipitation in Stage 3. Full article
(This article belongs to the Special Issue Selected Papers from the 7th National Youth Geological Congress)
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35 pages, 14689 KB  
Article
Multivariate Statistical Analysis and S-A Multifractal Modeling of Lithogeochemical Data for Mineral Exploration: A Case Study from the Buerhantu Area, Hadamengou Gold Orefield, Inner Mongolia, China
by Songhao Fan, Da Wang, Biao Yang, Huchao Ma, Rilige Su, Lei Chen, Panyun Su, Xiuhong Hou, Hanqin Lv and Zhiwei Xia
Geosciences 2025, 15(12), 473; https://doi.org/10.3390/geosciences15120473 - 15 Dec 2025
Cited by 1 | Viewed by 908
Abstract
The Hadamengou gold deposit, located on the northern margin of the North China Craton, represents one of the region‘s most significant gold mineralization clusters. However, exploration in its deeper and peripheral sectors is constrained by ecological protection policies and the structural complexity of [...] Read more.
The Hadamengou gold deposit, located on the northern margin of the North China Craton, represents one of the region‘s most significant gold mineralization clusters. However, exploration in its deeper and peripheral sectors is constrained by ecological protection policies and the structural complexity of the ore-forming systems. Multivariate analysis combined with multi-model integration provides an effective mathematical approach for interpretating geochemical datasets and guiding mineral exploration, yet, its application in the Hadamengou region has not been systematically investigated. To address this research gap, this study developed a pilot framework in the key Buerhantu area, on the periphery of the Hadamengou metallogenic cluster, applying and adapting a multivariate-multimodel methodology for mineral prediction. The goal is to improve exploration targeting, particularly for concealed and deep-seated mineralization, while addressing the methodological challenges of mathematical modeling in complex geological conditions. Using 1:10,000-scale lithogeochemical data, we implemented a three-step workflow. First, isometric log-ratio (ILR) and centered log-ratio (CLR) transformations were compared to optimize data preprocessing, with a reference column (YD) added to overcome ILR constraints. Second, principal component analysis (PCA) identified a metallogenic element association (Sb-As-Sn-Au-Ag-Cu-Pb-Mo-W-Bi) consistent with district-scale mineralization patterns. Third, S-A multifractal modeling of factor scores (F1–F4) effectively separated noise, background, and anomalies, producing refined geochemical maps. Compared with conventional inverse distance weighting (IDW), the S-A model enhanced anomaly delineation and exploration targeting. Five anomalous zones (AP01–AP05) were identified. Drilling at AP01 confirmed the presence of deep gold mineralization, and the remaining anomalies are recommended for surface verification. This study demonstrates the utility of S-A multifractal modeling for geochemical anomaly detection and its effectiveness in defining exploration targets and improving exploration efficiency in underexplored areas of the Hadamengou district. Full article
(This article belongs to the Section Geochemistry)
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