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131.
胶东是我国黄金的主要产地, 前人已开展大量矿床学研究, 但主要集中在浅部, 其深部的成矿研究仍然薄弱。本文以目前最深的见矿钻孔为研究对象, 在宏观观察描述的基础上, 以电子探针为主要研究方法, 在微观上系统开展深部金矿的矿相学和元素地球化学研究, 为深部金矿成矿特征提供了第一手的基础资料, 研究结果对于深入认识焦家金矿带矿床的成因以及进一步的深部找矿预测都具有重要意义。超深科研钻ZK01井位于莱州吴一村地区, 是目前焦家断裂带最深的见矿钻孔, 也是我国岩金最深见矿孔。深钻蚀变类型主要有钾化、硅化、黄铁矿化、绢英岩化、黄铁绢英岩化、绿泥石化和碳酸盐化, 矿石类型为黄铁绢英岩化碎裂岩和黄铁绢英岩化花岗质碎裂岩, 矿体多以脉状、细脉网脉状、细脉浸染状为主。载金矿物主要为黄铁矿, 少数金矿物分布在黄铜矿、石英和钾长石中。焦家带深部矿石金矿物成色较高, 主要为含银自然金, 其次为银金矿, 说明该深钻深部金矿形成于高温、较深的成矿环境; 成矿时代相对较老。Au主要有两种赋存形式: 独立的金矿物和不可见金即晶格金。独立金矿物可分为三种赋存状态, 即包体金、裂隙金和晶隙金。初步认为矿石矿物生成顺序从早到晚依次为: (不含Pb黄铁矿、方铅矿、辉铋矿、金矿物)→(黄铜矿)→(含Pb黄铁矿)→(方铅矿、金矿物)→(重晶石)→(闪锌矿)。深钻成矿热液存在多期活动, 碎裂岩带为含金热液运移提供了通道, 多重成矿阶段的叠加和复合导致金矿物多期次结晶。 相似文献
132.
海南抱伦金矿区的金矿脉与大量辉绿岩脉在空间上紧密相关。在详细的野外地质调查基础上,本文对这些辉绿岩脉开展了岩相学和矿相学观察、全岩主量和微量元素分析、Sm-Nd同位素组成分析、金丰度分析以及SHRIMP锆石U-Pb定年,初步探讨了辉绿岩脉的成因、岩浆演化和构造背景以及与金成矿作用的关系。地球化学分析结果表明,辉绿岩脉形成于拉斑玄武质岩浆,主要为左倾型的稀土配分模式;相对N-MORB,富集Sr、K、Rb和Ba等LILE和Th,亏损HFSE,ε_(Nd)(t)为0. 3~5. 6,说明岩浆源区为受到俯冲带含水流体影响和少量地壳混染的亏损地幔。辉绿岩脉的SHRIMP锆石U-Pb年龄为231. 6±2. 6Ma,与尖峰岭花岗质岩体的年龄(236±3. 5Ma~249±5Ma)相近,产出位置相邻,类似于海南兴隆地区的双峰式侵入岩,表明它们产出于造山后伸展环境。辉绿岩脉对应的岩浆富含CO_2、H_2O、F、K、Rb、Ba和适量的S,为抱伦金矿等单金矿床中Au的合适载体。金丰度分析结果表明,辉绿岩脉中的Au曾被活化迁移。再结合辉绿岩脉成岩年龄与抱伦矿区的成矿年龄在误差范围内一致的特征,认为抱伦金矿的Au可能来源于辉绿岩脉。 相似文献
133.
134.
COSEISMIC DISPLACEMENT FIELD OF THE WENCHUAN EARTHQUAKE DERIVED FROM STRONG MOTION RECORDS AND APPLICATION IN SLIP INVERSION
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The development of high-rate GNSS seismology and seismic observation methods has provided technical support for acquiring the near-field real-time displacement time series during earthquake. But in practice, the limited number of GNSS continuous stations hardly meets the requirement of near-field quasi-real-time coseismic displacement observation, while the macroseismographs could be an important complement. Compared with high-rate GNSS, macroseismograph has better sensitivity, higher resolution(100~200Hz)and larger dynamic range, and the most importantly, lower cost. However, baseline drift exists in strong-motion data, which limits its widespread use. This paper aims to prove the feasibility and reliability of strong motion data in acquiring seismic displacement sequences, as a supplement to high-rate GNSS.
In this study, we have analyzed the strong-motion data of Wenchuan MS8.0 earthquake in Longmenshan fault zone, based on the automatic scheme for empirical baseline correction proposed by Wang et al., which fits the uncorrected displacement by polynomial to obtain the fitting parameters, and then the baseline correction is completed in the velocity sequence. Through correction processing and quadratic integration, the static coseismic displacement field and displacement time series are obtained. Comparison of the displacement time series from the strong motions with the result of high-rate GPS shows a good coincidence. We have worked out the coseismic displacement field in the large area of Wenchuan earthquake using GPS data and strong motion data. The coseismic displacement fields calculated from GPS and strong motions are consistent with each other in terms of magnitude, direction and distribution patterns. High-precision coseismic deformation can provide better data constraint for fault slip inversion. To verify the influence of strong-motion data on slip distribution in Wenchuan earthquake, we used strong motion, GPS and InSAR data to estimate the stress drop, moment magnitude and coseismic slip model, and our results agreed with those of the previous studies. In addition, the inversion results of different data are different and complementary to some extent. The use of strong-motion data supplements the slip of the fault in the 180km segment and the 270~300km segment, thus making the inversion results of fault slip more comprehensive.
From this result, we can draw the following conclusions:1)Based on the robust baseline correction method, the use of strong motion data, as an important complement to high-rate GNSS, can obtain reliable surface displacement after the earthquake. 2)The strong motion data provide an effective method to study the coseismic displacement sequence, the surface rupture process and quick seismogenic parameters acquisition. 3)The combination of multiple data can significantly improve the data coverage and give play to the advantages of different data. Therefore, it is suggested to combine multiple data(GPS, strong motion, InSAR, etc.)for joint inversion to improve the stability of fault slip model. 相似文献
135.
火电厂粉煤灰的矿物磁性及其环境意义 总被引:11,自引:0,他引:11
火电厂排放的粉煤灰是重要的大气颗粒污染物之一,利用粉煤灰的磁性监测环境污染是新近发展的新手段。应用矿物磁测技术和X射线衍射对浙江省主要电厂排放的粉煤灰的矿物磁性特征和磁性矿物学,以及与重金属元素的关系进行了研究,结果表明粉煤灰具有较高的磁化率(X)、软剩磁(IRM20mT)和饱和等温剩磁(SIRM)值,粉煤灰频率磁化率(Xfd)的平均值为2.5%,磁性矿物以多畴(MD)颗粒存在,粉煤灰的剩磁矫顽力(BCR)在42~53mT之间。矿物测试结合X射线衍射分析表明粉煤灰中的氧化铁矿物以FeO4和Fe2O3-α为主,粉煤灰的磁化率与Fe、Mn、Pb、Zn、Cu、CA含量呈显著线性正相关,相关系数(r)分别是0.924,0.866,0.725,0.756,0.945和0.867,磁化率可作为粉煤灰中重金属元素含量的代用指标。 相似文献
136.
137.
近几十年,随着卫星测高技术和相关数据精密处理技术发展,依托卫星测高技术业已成为快速获取全球海底地形数据的可靠手段,国内外相关组织机构已发布了一系列全球海底地形模型。整理评述了多款全球海底地形的基本情况,以及相互间的内在联系,包括DBDB系列模型、ETOPO系列模型、Sandwell系列模型、GEBCO系列模型、SRTM+系列模型、EARTH地形球谐系数模型、BAT_VGG模型、BAT_WHU2020模型、STO_IEU2020模型等。通过对全球海底地形模型的认识和梳理,以期为下一步全球海底地形模型高效、低成本构建提供方法参考。 相似文献
138.
以中国南海部分海域作为试验区,依据测区船载重力测量结果分别对S&S V28.1、S&S V29.1、DTU15和DTU17卫星测高海洋重力场模型开展了精度评估与分析工作。首先利用EIGEN6C4超高阶位系数模型计算得到的参考重力异常,使用多项式拟合技术对船载重力异常进行了长波误差改正;然后借鉴3σ准则进一步控制船载重力测量结果质量;最后以RMS作为精度主要评价指标,完成了对4种海洋重力场模型精度评估。结果表明,4种海洋重力场模型检核精度整体相当,其中S&S V29.1检核精度略高于S&S V28.1,4种重力异常模型在试验海域精度大致在1.5~6mGal之间。试验结论对于后续重力场模型应用具有一定参考价值。 相似文献
139.
环境因子对贝类累积溶解态重金属的影响 总被引:10,自引:0,他引:10
对溶解态重金属的吸收是贝类累积重金属的重要来源之一,易受到生物因素和非生物因素的影响。综述溶解氧、温度、空气预暴露、化学物质预暴露等环境因子,诱导的机体代谢过程的改变,对溶解态重金属的累积和转运过程的影响。强调了贝类对溶解态重金属的转运除了被动转运之外,还涉及到需要ATP供能的主动转运过程。 相似文献
140.
USE OF SEISMIC WAVEFORMS AND INSAR DATA FOR DETERMINATION OF THE SEISMOTECTONICS OF THE MAINLING MS6.9 EARTHQUAKE ON NOV.18, 2017
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On November 18, 2017, a MS6.9 earthquake struck Mainling County, Tibet, with a depth of 10km. The earthquake occurred at the eastern Himalaya syntaxis. The Namche Barwan moved northward relative to the Himalayan terrane and was subducted deeply beneath the Lhasa terrane, forming the eastern syntaxis after the collision of the Indian plate and Asian plates. Firstly, this paper uses the far and near field broadband seismic waveform for joint inversion (CAPJoint method)of the earthquake focal mechanism. Two groups of nodal planes are obtained after 1000 times Bootstrap test. The strike, dip and rake of the best solution are calculated to be 302°, 76° and 84° (the nodal plane Ⅰ)and 138°, 27° and 104° (the nodal plane Ⅱ), respectively. This event was captured by interferometric synthetic aperture radar (InSAR)measurements from the Sentinel-1A radar satellite, which provide the opportunity to determine the fault plane, as well as the co-seismic slip distribution, and assess the seismic hazards. The overall trend of the deformation field revealed by InSAR is consistent with the GPS displacement field released by the Gan Wei-Jun's team. Geodesy (InSAR and GPS)observation of the earthquake deformation field shows the northeastern side of the epicenter uplifting and the southwestern side sinking. According to geodetic measurements and the thrust characteristics of fault deformation field, we speculate that the nodal plane Ⅰ is the true rupture plane. Secondly, based on the focal mechanism, we use InSAR data as the constraint to invert for the fine slip distribution on the fault plane. Our best model suggests that the seismogenic fault is a NW-SE striking thrust fault with a high angle. Combined with the slip distribution and aftershocks, we suggest that the earthquake is a high-angle thrust event, which is caused by the NE-dipping thrust beneath the Namche Barwa syntaxis subducted deeply beneath the Lhasa terrane. 相似文献