Inner Mongolia diabase distribution
Geochronology and geochemistry of the Hegenshan ophiolitic
2008年4月15日 Within central Inner Mongolia, the IMDOB is a relatively broad feature containing numerous ophiolitic blocks with variable ages (Wang and Liu, 1986) Four NEENEtrending Considering the widespread distribution of contemporaneous mafic rocks across the central Inner Mongolia, which show REE patterns from E‐MORBs to normal MORBs, we propose a petrogenetic link between the Early Permian mafic Permian back‐arc extension in central Inner Mongolia, 2015年12月1日 Considering the widespread distribution of contemporaneous mafic rocks across the central Inner Mongolia, which show REE patterns from EMORBs to normal MORBs, we Permian backarc extension in central Inner Mongolia, NE China In this paper, the geological features, petrography, geochronology and geochemistry of the two newly identified basic rocks (Duerji basic rocks and Jiahada basic rocks) in the Horqin Right 内蒙古科右中旗两类基性岩的年代学、地球化学及其
Ophiolites in the Xing'an‐Inner Mongolia accretionary belt of the
2015年9月28日 The Xing'anInner Mongolia accretionary belt of the CAOB mainly consists of ophiolite blocks/fragments, Paleozoic to Mesozoic volcanicsedimentary sequences and 2022年9月1日 Two stages of bimodal magmatism are identified in central Inner Mongolia The mafic rocks were derived from a depleted spinellherzolite mantle source The felsic rocks Episodic bimodal magmatism in Central Inner Mongolia, China: 2017年8月30日 During the process of closure of the PaleoAsian Ocean, magmatic activity was intensive in northeastern Inner Mongolia with abundant coeval intrusive and volcanic rocks Geochronology, geochemistry, and Sr–Nd–Pb–Hf isotopes of the 2023年7月15日 三江平原是我国重要的商品粮基地和沼泽湿地分布区,在保障国家粮食安全和生态环境方面具有极其重要的战略地位。 伴随着20世纪50年代以来的大规模农垦进程,昔日的“ Discovery of ~25 Ga zircon UPb age from the diabase, Ar Horqin
ShortWavelength Infrared Characteristics and Indications of
2024年4月25日 By finding hydrothermal centers and connecting their spatial distribution with existing ore bodies, a pertinent relationship between diabase + andesite, Fechlorite + illite, 2024年4月25日 By finding hydrothermal centers and connecting their spatial distribution with existing ore bodies, a pertinent relationship between diabase + andesite, which were discovered from the 1970s to 1990s in the Manzhouli ShortWavelength Infrared Characteristics and 2015年12月1日 Request PDF Permian backarc extension in central Inner Mongolia, NE China: Elemental and Sr–Nd–Pb–Hf–O isotopic constraints from the Linxi highMgO diabase dikes Early Permian (272± Permian backarc extension in central Inner Mongolia, NE China 2021年11月8日 Grassland ecosystems are a significant part of the global ecosystem and support the livelihoods of millions of people The Inner Mongolia grassland is the largest temperate grassland in the world, and an important Spatiotemporal Monitoring of a Grassland
Spatial and temporal distribution of rural settlements and
2022年11月11日 Revealing the patterns and influencing mechanisms of spatial and temporal distribution of rural settlements is crucial for rural revitalization and sustainable development However, our limited understanding of the rural settlements in China’s ethnic minority border areas has hindered the process of their agricultural and rural modernization Based on data on 2021年12月20日 Scientific Reports Spatiotemporal distribution of human brucellosis in Inner Mongolia, China, in 2010–2015, and influencing factors Skip to main content Thank you for visiting natureSpatiotemporal distribution of human brucellosis in Inner Mongolia 2014年8月26日 Vertical distribution of bacterial communities was detected in high arsenic (As) sediments in a representative high As area in Inner Mongolia Nineteen sediment samples were collected from a 30 m borehole and detected by geochemistry and molecular ecological approaches including polymerase chain reactiondenaturing gradient gel electrophoresis (PCR Vertical distribution of bacterial communities in high arsenic 2023年6月12日 IMPORTANCE Our findings have important implications for understanding the distribution patterns and the driving mechanisms of microeukaryotic communities among the lakes of the Inner MongoliaXinjiang Plateau and whether and how climate change directly or indirectly affects microeukaryotic communities Our study also establishes the groundwork to use the Climate Change Causes Salinity To Become Determinant in
Frontiers Geochemistry and geochronology of basic igneous
2023年2月16日 This paper reports the first discovery of basic igneous rocks in Bairin Right Banner in southeastern Inner Mongolia, China To understand the genesis and diabase, and pillow basalt are 2720 ± 28 Ma, 2615 ± 32 Ma, and 2565 ± 25 Ma, respectively, suggesting their , the distribution curves of 1 Faculty of Biological Science and Technology, Baotou Teacher’s College, Baotou, China; 2 State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing, China; 3 School of Life Science and Technology, Inner Mongolia University of Science and Technology, Baotou, China; Ectomycorrhizal (EM) fungi play vital roles in ensuring host Fungal Diversity and Community Assembly of Ectomycorrhizal Phosphorus (P) is one of the limiting nutrients in Inner Mongolia steppe soil, which seriously affect steppe productivity Therefore, it is necessary to understand the distribution characteristics of organic P (Po) fractions and their influencing factors in Inner Mongolia steppe soil and to identify the contribution of Po fractions to soil available P (AP) to maintain the sustainable Distribution Characteristics of Soil Organic Phosphorus Fractions 2003年12月1日 Geological map of the Sonid Zuoqi area in Inner Mongolia, China and the Mongolian border area mainly illustrating the distribution of Early and Late Paleozoic arcaccretion complexes (modified Accretion leading to collision and the Permian
Spatiotemporal distribution and ecological factors of brucellosis
2024年10月8日 Objective In recent years, the increasing incidence of brucellosis in children has become more serious However, relatively few studies have been conducted to characterize the spatialtemporal distribution of brucellosis in children This study aimed to analyze the spatiotemporal distribution characteristics and ecological influencing factors of brucellosis 2023年8月16日 Collection of tick geographical distribution data A literature search was conducted in the CNKI (China National Knowledge Infrastructure), Wanfang, Baidu Scholar, PubMed, and Google Scholar databases using the keywords “Inner Mongolia” and “tick” for articles published between January 1, 1960, and November 30, 2022The current distribution of tick species in Inner Mongolia and 2023年1月5日 A highquality gut genome catalogue of Inner Mongolians The initial bins were produced by two binning methods (MetaBAT 23 and vamb 11), and then integrated and refined by DASTool and inhouse A highquality genome compendium of the human gut microbiome of Inner 2017年10月1日 The dominance of the penta and hexamethylated brGDGTs over the tetramethylated brGDGTs in our samples from Inner Mongolia, is consistent with the trends in brGDGT distribution of the global mineral soil database, with the lowest degree of methylation in mineral soils from polar regions (De Jonge et al, 2014a, Naafs et al, 2017a)Distribution of branched tetraether lipids in ponds from Inner Mongolia
Morphological Description and Potential Geographic Distribution
2023年12月8日 Eight species of Dolichopus Latreille were previously recorded in Inner Mongolia However, there have been only a few studies on their potential distribution Here, three newly discovered species from Inner Mongolia are described, namely Dolichopus (Dolichopus) apicimaculatus sp nov, Dolichopus (Dolichopus) jiufengensis sp nov, and Dolichopus Impacts of groundwater extraction on groundwater flow and arsenic distribution in the western Hetao Basin, Inner Mongolia, China E3S Web of Conferences 98, 09037 (2019) Characteristics of dissolved organic matter in shallow groundwater in the Hetao basinThe provenance of deep groundwater and its relation to arsenic the distribution of tick populations in Inner Mongolia and the prevention and control of tickborne diseases Additionally, indepth research on the current distribution status and trends of ticks in Inner Mongolia is of great signicance for the monitoring and risk warning of tickborne diseases in the region and the entire countryThe current distribution of tick species in Inner Mongolia and 2023年8月16日 Predicted spatial distribution of D silvarum in Inner Mongolia under future periods: A 2021–2040; B 2041–2060; C 2061–2080; D 2081–2100 The current distribution of tick species in Inner Mongolia and
Analysis of spatiotemporal land cover changes in Inner Mongolia
2018年9月15日 Considering the importance of ecosystem services in Inner Mongolia, many researchers have investigated the land use changes in this region For example, Liu et al (2010) found that an increase in urban sprawl was obvious in Inner Mongolia from 2000 to 2005, whereas the grassland area decreased John et al (2009) investigated the changes in land cover/land 2023年7月15日 Jiyu Du, Cheng Qian, Wenbin Wu, Yujin Zhang, Chao Zhang, Tao Qin, Yongfei Ma, Hongxi You Discovery of ~25 Ga zircon UPb age from the diabase, Ar Horqin Banner Area, Inner Mongolia: Implications for Neoarchean crystalline basement of Bainaimiao Arc Belt[J] China Geology, 2023, 6(3): 531532 doi: 1031035/cgDiscovery of ~25 Ga zircon UPb age from the diabase, Ar Horqin 2024年1月1日 Inner Mongolia has a wide range of climatic gradients and diverse vegetation types, including forests, grasslands, and deserts with complex and diverse habitats, making it an ideal site for studying the distribution of plant diversity and its Applying regional climatic indicators to study plant diversity 2008年4月15日 The Inner MongoliaDaxinganling Orogenic Belt (IMDOB) is the eastern extension of the Central Asian Orogenic Belt (CAOB), which marks the boundary between the SinoKorean Craton and the Siberian block (Fig 1 a; Mossakovsky et al, 1994, Sengör and Natal’in, 1996)Many studies have attempted to delineate the architecture of this belt and to Geochronology and geochemistry of the Hegenshan ophiolitic
Analysis of Cultivable Fungal Community Structure and Spatial
Acta Agrestia Sinica ›› 2017, Vol 25 ›› Issue (2): 315321 DOI: 1011733/jissn10070435201702014 Previous Articles Next Articles Analysis of Cultivable Fungal Community Structure and Spatial Distribution in Desert Steppe, Inner Mongolia, China2022年1月29日 Magmatic rocks in the mining area are largely islandlike with a lenticular distribution of diabase and an exposed area ranging from 011 to 039 km 2 The lenticular diabase FeCuPbZn polymetallic deposit was related to tectonicmagmatic events caused by the shortening and thickening of the inner crust of the Baoshan block in Geochemical Characteristics and Zircon UPb Geochronology of Diabase 2023年12月8日 1 Introduction Inner Mongolia is part of the Mongolian Plateau, which was created by QinghaiTibet Plateau uplift [1,2]The climate is strongly influenced by plateau uplift, which resulted in Inner Mongolia having a temperate continental climate with relatively high precipitation but low temperatures in the northeast and low precipitation but high temperatures Morphological Description and Potential Geographic Distribution 2024年7月3日 Revenue of Inner Mongolia Yili Industrial Group 2023, Employment by economic sector in Mongolia 2022 Mongolia: Distribution of employment by economic sector from 2012 to 2022Mongolia Statistics Facts Statista
Mapping and assessing freshwater ecosystem services supply and
2023年5月17日 Context As water demands continue to increase, the contradiction between water supply and demand is becoming increasingly severe, as is the case in Inner Mongolia's arid and semiarid areas However, the relationship between water supply and demand in watersheds must be better understood Therefore, it is crucial to clarify the relationship between the supply 2024年7月2日 Background The cashmere goat industry is one of the main pillars of animal husbandry in Inner Mongolia Autonomous Region, and plays an irreplaceable role in local economic development With the change in feeding methods and environment, the cashmere produced by Inner Mongolia cashmere goats shows a tendency of coarser, and the cashmere Genomewide association study for cashmere traits in Inner Mongolia 2024年9月1日 Astragali Radix, commonly used in traditional Chinese medicine, is subjected to an analysis of the habitat distribution of Astragalus membranaceus var mongholicus in the Inner Mongolia Autonomous Region of China under climate change This analysis is crucial for the conservation of medicinal plants, the assessment of their adaptability to climate change, and Analysis of the distribution of Astragalus membranaceus var 2015年2月3日 Most of Inner Mongolia contains plateau landforms averaging around 1,200 meters in altitude, covered by extensive loess and sand deposits Inner Mongolia covers an area of 1155 million hectares, about 1228% of China's total land area, ranking third after Xinjiang (1723%) and Tibet (1275%)Human brucellosis occurrences in inner mongolia, China: a spatio
Early Cretaceous gabbro–granite complex from central Inner Mongolia
2019年1月1日 Early Cretaceous gabbro–granite complex from central Inner Mongolia: Diabase samples (Fig 3e) have a similar mineral assemblage to syenogabbros They exhibit typical diabasic textures with triangular spaces between plagioclase laths filled with Distribution coefficients used in the modeling are from the 2024年9月1日 In this study, the Daxing'anling forest area, Inner Mongolia (DFAIM), a typical alpine ecosystem of Northeast China’s forest belt, was taken as the study area due to its sensitive and fragile characteristics, and the completeness, accessibility and timeliness of the data (forest resources 1class inventory is conducted regularly every five years)Spatial variation in ecosystem service relationships in alpine 2023年5月1日 (b) Schematic geological map of the JiabusiNarenwula ore district showing the distribution of the Late JurassicEarly Cretaceous multiphase granites (c) Cross section through the exploration line a–b and sampling locations in the Jiabusi NbTa deposit (modified from Mengjin Mining Investment Co, Ltd, Inner Mongolia, unpublished report, 2012)Mineralizations of Nb–Ta–Li and rareearth elements in the Jiabusi 2017年8月30日 The Zhunsujihua porphyry molybdenum deposit, located in northern Inner Mongolia of China that belongs to CentralAsian Orogenic Belt (CAOB), is the only Mo deposit formed in the late Carboniferous in this area so far Its mineralization is mainly restricted to the Zhunsujihua granitoid intrusions, which are composed of the main granodiorite (GD) and Geochronology, geochemistry, and Sr–Nd–Pb–Hf isotopes of the
Spatiotemporal distribution of human brucellosis in Inner Mongolia
2005–2010, Inner Mongolia accounted for 332–683% of the country’s total human brucellosis burden 12 In 2011, 20,845 cases of human brucellosis were reported in Inner Mongolia 11 2018年9月14日 The spatial distribution characteristics of heavy metals (As, Cd, Cu, Pb, and Zn) in a typical lead–zinc mine located in Inner Mongolia were studied by applying mathematical statistics and the ArcGIS spatial interpolation analysis The Nemerow index and potential ecologicalrisk index were applied to the pollution assessment of heavy metals from the soil in Distribution characteristics and pollution assessment of soil heavy 2013年4月3日 To understand the mechanism of arsenic mobilization from sediment to groundwater mediated by microorganism, vertical distribution of bacterial populations in aquifer sediments of the Hetao plain, Inner Mongolia was investigated by a twostep nested PCRDGGE and 16S rRNA gene clone libraries, combined with sediment geochemistry A borehole to 30 Vertical distribution of bacterial populations associated with 2014年8月26日 When the strain was incubated with high arsenic sediments from Hetao Basin of Inner Mongolia under anaerobic conditions, 0894 mmol L−1 Fe(III) and 1244 μmol L−1 As were released to aqueous Vertical distribution of bacterial communities in high arsenic
Uranium isotopes in surface soil in Inner Mongolia and zghjkx
Uranium isotopes in surface soil in Inner Mongolia and northwest China: level, distribution and sources: HUANG Zhao 1,3, HOU Xiaolin 1,2, ZHAO Xue 1,2, ZHANG Luyuan 1,2: 1 Institute of Earth Environment, Chinese Academy of Sciences, State Key Laboratory of Loess and Quaternary Geology, Shaanxi Key Laboratory of Accelerator Mass Spectrometry Technology