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81.
公婆泉盆地局部排泄源氧化还原属性与铀矿化关系探讨 总被引:1,自引:0,他引:1
在系统分析公婆泉盆地地质背景、水文地质条件的基础上,对该区局部排泄源氧化还原属性与铀矿化的关系进行了探讨。研究结果表明,局部排泄源的存在对铀矿化具有重要作用,当局部排泄源属于还原性质时,铀矿体常常分布于该排泄源上游;若属氧化性质,排泄源铀矿体通常位于其下游或附近。公婆泉盆地存在相对氧化和相对还原的二种局部排泄源,北骆驼泉区的沙泉沟与平沙地、麻黄沟、北骆驼泉沟排泄源之间应为有利的铀矿化地段。 相似文献
82.
伊犁盆地是在前震旦系基础上发展形成的双层结构盆地,即内裂谷盆地—山间陆相盆地。经多次造陆运动后,盆地内普遍缺失震旦系、下古生界、泥盆系、下三叠统和白垩系。盆地内的生油层主要为海相石炭系阿克沙克组、也列莫顿组,陆相二叠系院山萨依组、塔姆其萨依组。生油中心主要位于伊什基里克山—脱勒斯拜克山以北的湖盆区内。储层主要以二叠系、三叠系和保罗系的碎屑岩为主。伊犁盆地虽然经历了多期构造运动的影响,地质结构更加复杂,沉积中心的不断西移,但仍然在中新生代地层的地表及井下发现大量油气显示,表明该盆地具备生储油能力。该盆地有利与不利因素并存,对盆地的进一步勘探应加强基础研究工作,以避免盲目投入。 相似文献
83.
鞍子山超单元由4个单元组成,各单元不同程度地发育岩浆侵位变形构造。侵位变形构造主要由叶理构造组成,闪长质包体,钾长石斑晶总体按优选方位定向,三者产状一致,平行接触带分布。从早期单元至晚期单元,随着岩浆侵位叶理构造变形强度减弱,闪长质包体数量减少,压扁变形程度降低,钾长石斑晶从明显按优选方位定向到杂乱分布。根据上述特征,将该超单元浆侵位变形、中等侵位变形、弱侵位变形及基本无侵位变形4个带。 相似文献
84.
张发林 《地质灾害与环境保护》2003,14(1):11-14
通过对金风口片区地表的调查,分析了地面降沉、塌陷的原因;研究了塌陷对水源的影响;总结了水源干枯的规律及影响因素;并提出了防治的办法及合理化建议。 相似文献
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就如何利用数据库,结合Java、XML等手段对震源参数管理进行了一些探索,并给出了一些在一个实际系统中实现了的例子。 相似文献
88.
Introduction An MS=6.0 earthquake occurred on February 23, 2001 in Yajiang county, Sichuan Province. The earthquake is located on the east of the southeast segment of the Litang-Dewu fault with strike of NW. Before the event, on February 14, an MS=5.0 earthquake took place nearly in the same place. In 1948 an MS=7.3 earthquake occurred on the northwestern segment of the Litang fault. The length of the surface rupture belt caused by the earthquake is 70 km, which extended from Litang to… 相似文献
89.
1 INTRODUCTION Agricultural use of pesticides has been recognized as one of the important non-point pollution sources in the world, and the pesticide application to agricultural lands has led to large amounts of residues discharged into surface water through runoff (Leonard, 1990). There have been growing concerns about the fate and transport of pesticides in agricultural lands, due to the associated adverse impacts on water environment and human health (Agassi et al., 1995; Ng and Clegg… 相似文献
90.
Merapi Volcano (Central Java, Indonesia) has been frequently active during Middle to Late Holocene time producing basalts and basaltic andesites of medium-K composition in earlier stages of activity and high-K magmas from 1900 14C yr BP to the present. Radiocarbon dating of pyroclastic deposits indicates an almost continuous activity with periods of high eruption rates alternating with shorter time spans of distinctly reduced eruptive frequency since the first appearance of high-K volcanic rocks. Geochemical data of 28 well-dated, prehistoric pyroclastic flows of the Merapi high-K series indicate systematic cyclic variations. These medium-term compositional variations result from a complex interplay of several magmatic processes, which ultimately control the periodicity and frequency of eruptions at Merapi. Low eruption rates and the absence of new influxes of primitive magma from depth allow the generation of basaltic andesite magma (56–57 wt% SiO2) in a small-volume magma reservoir through fractional crystallisation from parental mafic magma (52–53 wt% SiO2) in periods of low eruptive frequency. Magmas of intermediate composition erupted during these stages provide evidence for periodic withdrawal of magma from a steadily fractionating magma chamber. Subsequent periods are characterised by high eruption rates that coincide with shifts of whole-rock compositions from basaltic andesite to basalt. This compositional variation is interpreted to originate from influxes of primitive magma into a continuously active magma chamber, triggering the eruption of evolved magma after periods of low eruptive frequency. Batches of primitive magma eventually mix with residual magma in the magmatic reservoir to decrease whole-rock SiO2 contents. Supply of primitive magma at Merapi appears to be sufficiently frequent that andesites or more differentiated rock types were not generated during the past 2000 years of activity. Cyclic variations also occurred during the recent eruptive period since AD 1883. The most recent eruptive episode of Merapi is characterised by essentially uniform magma compositions that may imply the existence of a continuously active magma reservoir, maintained in a quasi-steady state by magma recharge. The whole-rock compositions at the upper limit of the total SiO2 range of the Merapi suite could also indicate the beginning of another period of high eruption rates and shifts towards more mafic compositions. 相似文献