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This study has reviewed the distribution and pedogenesis of late Mesozoic A-Type granitoids in SE China. These A-Type granitoids belong to four belts ( S Jiangxi-SW Fujian belt, Xiang-Gui-Yue belt, Can-Hang belt and coastal belt) due to their temporal-spatial distribution. Based on the comparative analysis of chronology, geochemistry and magmatic association, this study has discussed the formation of A-Type granitoids and the subduction and slab rollback process of paleo-Pacific plate beneath SE China. 相似文献
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虾蛄(Squillidae)是重要的水产增养殖品种。目前针对虾蛄类的研究主要集中在其基础生物学和繁殖生物学方面,其中在虾蛄的纳精结构、性腺发育和幼体发育等研究方面还存在诸多分歧。作者综述了几种虾蛄类,如口虾蛄(Oratosquilla oratoria)、黑斑口虾蛄(O. kempi)、猛虾蛄(Harpiosquilla harpax)和棘突猛虾蛄(H. raphidea)的资源分布、生活习性、亲本、性腺和幼体发育等研究成果,以期为虾蛄繁殖生物学和人工育苗的深入研究提供参考。 相似文献
126.
辽西地区中生代义县旋回火山活动特征分析 总被引:6,自引:0,他引:6
辽西地区广泛发育中生代火山岩,其中以义县旋回火山岩最为发育。本文在对辽西地区义县旋回火山岩微量元素地球化学特征研究的基础上,认为义县旋回火山岩具有同源性质,由壳幔混溶物质作用于统一的火山活动过程中产生。 相似文献
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As an important unconventional resource, oil shale has received widespread attention. The oil shale of the Chang 7 oil layer from Triassic Yanchang Formation in Ordos Basin represents the typical lacustrine oil shale in China. Based on analyzing trace elements and oil yield from boreholes samples, characteristics and paleo-sedimentary environments of oil shale and relationship between paleo-sedimentary environment and oil yield were studied. With favorable quality, oil yield of oil shale varies from 1.4% to 9.1%. Geochemical data indicate that the paleo-redox condition of oil shale’s reducing condition from analyses of V/Cr, V/(V + Ni), U/Th, δU, and authigenic uranium. Equivalent Boron, Sp, and Sr/Ba illustrate that paleosalinity of oil shale is dominated by fresh water. The paleoclimate of oil shale is warm and humid by calculating the chemical index of alteration and Sr/Cu. Fe/Ti and (Fe + Mn)/Ti all explain that there were hot water activities during the sedimentary period of oil shale. In terms of Zr/Rb, paleohydrodynamics of oil shale is weak. By means of Co abundance and U/Th, paleo-water-depth of oil shale is from 17.30 to 157.26 m, reflecting sedimentary environment which is mainly in semi deep–deep lake facies. Correlation analyses between oil yield and six paleoenvironmental factors show that the oil yield of oil shale is mainly controlled by paleo-redox conditions, paleoclimate, hot water activities, and depth of water. Paleosalinity and paleohydrodynamics have an inconspicuous influence on oil yield. 相似文献
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斑岩铜矿是指与具斑状结构的中酸性侵入岩伴生,蚀变与矿化受流体、构造控制且分带明显,矿石以细脉浸染状为主,低品位、大储量的铜矿床,是最重要的铜矿床类型。大地构造背景对斑岩铜矿的形成具有重要意义,经典的斑岩铜矿主要产于岛弧、陆缘弧环境。然而,近年来国内矿床学家发现,国内形成于大陆环境的斑岩铜矿与大洋板块俯冲、板块消减作用无关,斑岩铜矿还可产于碰撞造山带,甚至是在陆内环境。相比之下,不同构造背景下形成的斑岩铜矿床含矿岩浆、成矿物质来源、矿床成因等方面存在一定差异与共性。综述了目前斑岩铜矿研究内容中的关于构造背景的一些重要观点和几个重要进展,对比了不同构造背景下形成的斑岩铜矿床的含矿岩浆、蚀变矿化、成矿流体等方面的共性与差异,以期对斑岩型矿床的成因与找矿提供一定的线索。 相似文献
130.
Yong-Jun Tang Ze-Min Xu Zhen-Chen Shao Zhe Ren Kun Wang Kui Yang Jun-Yao Luo Hai-Yan Gao Lin Tian 《地球表面变化过程与地形》2020,45(4):999-1012
Debris-flow runout is a fascinating process to understand due to its implications for downstream alluvial fans. Based on the propagation-deposition behaviors of the Dongyuege (DYG) debris flow, in Yunnan, the effect of biofilms on channel surfaces on debris-flow runout is investigated in laboratory flumes with two different internal surfaces: surfaces are lined with granite slabs (Model I) and gravel (Model II), respectively. Our results show that biofilms can significantly reduce frictional resistance to flows. They increase flow velocities, slow down the deceleration of the snouts, prolong runout distances, and subsequently extend the areas covered with resulting deposits, thus greatly assisting the propagation of experimental debris flows. Slippery biofilms consisting mainly of diatoms and their extracellular mucus (ECM) reduce the contact friction between the flume-beds and the overlying fluids, and greatly promote the propagation of tested flows. Well-developed biofilms are found on the underwater channel surfaces of the DYG Creek. Acting as lubricating layers, they likely played a key role in the DYG debris-flow runout. Most of the debris transported during the DYG event was deposited on overbanks, and the sediment that caused the disaster was transported to the populated fan region through the stream-bed clad in the thick biofilms. Owing to their impacts on the development and width of the temporary debris dam breach, the stream-bed covered with biofilms became a direct contributor to the debris-flow hazard. Because of the ubiquitous presence of biofilms on mountain stream-bed surfaces, the development of perennial streamflows can be viewed as an indicator of gully susceptibility to debris flows threatening creek fans. The underwater areas of pre-event channel cross-sections should be regarded as slip or low-friction boundaries, and the parts above stream-levels can be viewed as no-slip boundaries. © 2019 John Wiley & Sons, Ltd. 相似文献