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1.
Geochemical exploration in China was commenced in the early 1950's. In 1951, the first experimental work was carried out in Yeshan, and a geochemical exploration section was set up in the Ministry of Geology in 1953.Regional geochemical reconnaissance (metallometric surveying) was initiated in 1956 on a nation-wide scale. Soil samples have been collected, and analyzed by semiquantitative spectrography. The results were heavily biased and were not adequately processed and utilized. Renewed efforts have been made to reprocess the vast amount of data accumulated and to utilize them more fully in mineral exploration.Meanwhile, another nation-wide project of regional geochemistry using more refined techniques is in its preparatory stage. It is the Regional Geochemistry-National Reconnaissance Project. In this project stream sediment sampling with a density of one per km2 will be used in China Proper, and low-density sampling of various kinds of media in different environments will be used in remote areas. Pilot surveys covering areas of several thousand square kilometers are being undertaken in several provinces.Beside regional reconnaissance, geochemical prospecting has been carried out at virtually all phases of mineral prospecting in China.A brief summary of current research in exploration geochemistry taken by research institutes and universities is given, including studies on the methodology of regional geochemical surveys, primary halos around various types of ore deposits, mercury vapor survey techniques, refinement of analytical methods and instrumentation, and computerized data processing and plotting techniques.Several case histories are described where geochemical exploration techniques have led to successful ore discoveries in China.  相似文献   

2.
史长义  王惠艳 《地质学报》2022,96(11):3705-3721
深部矿产资源的勘查是战略性矿产资源勘查的一个重要方面。找矿实践证明,化探方法技术在矿产勘查乃至深部找矿中发挥了重要的、不可或缺的作用。找矿工作的不断深入和找矿难度的不断加大,促使化探方法技术不断的发展和完善,在传统方法技术的基础上,研发出了许多新的方法技术。本文从方法论和系统论的角度出发,对现有的找寻深部隐伏矿盲矿的有效化探方法技术进行了系统的归纳和总结,提出了立体地球化学勘查方法技术体系的概念,将立体地球化学勘查方法技术划分为地面地球化学测量方法技术和地下地球化学测量方法技术,建立了深部矿产资源立体地球化学勘查方法技术体系。不同的方法技术有不同的优势和不同的适用条件,实际工作中应当根据不同的勘查阶段,不同的勘查目的和不同的地质地球化学条件选择不同的立体方法技术组合才能发挥出最大效益,取得最大效果。  相似文献   

3.
中国区域化探若干基本问题研究:1999—2009   总被引:1,自引:1,他引:0       下载免费PDF全文
奚小环  李敏 《中国地质》2012,39(2):267-282
1999—2009年,中国区域化探发生了根本性改变。主导思想是以地球化学理论为指导研究区域化探方法技术问题和进行矿产资源潜力评价。区域化探方法技术研究的基本要求是最大限度保持原生地球化学分布特征,表生地球化学条件下采样物质问题是区域化探方法研究的核心,样品采集应以代表地质找矿信息的基岩物质成分为原则,在全国范围内最大限度地保持采样物质的一致性。基于成矿地球化学理论建立资源潜力地球化学评价方法和实行地质找矿定量预测,使勘查地球化学从单纯方法手段上升到指导地质找矿的理论高度。主要标志是在全国建立完整的区域化探工作方法技术系统和实行样品分析质量全程监控。在区域化探高精度数据基础上绘制与出版精美的地球化学图集,使区域地球化学图精确地反映地质背景分布与异常特征,促进区域化探数据信息深度开发和利用,建立具有从区域、普查到详查进行全过程独立开展资源调查、评价和预测的方法技术体系和工作程序。区域化探长期支撑中国地质找矿工作,是整个地质找矿工作的先导。随着新一代地区和全国地球化学图的形成,将在基础地质和成矿规律研究以及揭示重大地质事件等方面提供新的发现、新的认识和新的观点,对于未来中国勘查地球化学和整个地质工作产生重要影响。  相似文献   

4.
Uranium and copper concentrations were determined on 184 sediment samples collected systematically arount the periphery of 24 lakes in the Kaipokok region of Labrador. The results allowed us to define several zones across glacial drift and lake-covered terrain which are enriched in these elements and which warrant further exploration. Some zones are extensions of known U and Cu mineralization, but others had not previously been found.This survey demonstrates that systematic nearshore lake sediment sampling and geochemical analysis is an informative method of mineral exploration which can be used as a follow-up to reconnaissance level sampling.  相似文献   

5.
陈扬玉 《物探与化探》1986,10(6):446-452
本文通过对云南西南部两个1:5万图幅地球化学水系沉积物测量、土壤测量和岩石测量三种区域化探方法的试验,从找矿、经济两个方面进行对比,得出了三种化探方法找矿效果相近的结论,但水系沉积物测量以其异常衬度高、野外采样工作量小、样品分析费用少而明显优于土壤测量。在试验中得到的另一发现是低密度(每平方公里约2个样)的岩石测量在发现异常信息和了解微量元素分布区域性变化规律方面有好的效果。岩石测量作为一种有效的区域化探方法值得重视和进一步研究。  相似文献   

6.
赵娟 《地质与勘探》2017,53(4):739-745
青海省祁漫塔格地区位于柴达木盆地西南缘,是青海东昆仑成矿带西部的重要组成部分。近10年来祁漫塔格地区完成20385km2的1∶5万水系沉积物测量工作,实现了祁漫塔格地区1∶5万水系沉积物测量工作的全面覆盖,提供了大批可供进一步开展工作的化探综合异常和找矿靶区,为祁漫塔格地区矿产资源评价工作提供了翔实的地球化学资料。经异常查证,区内已发现了夏日哈木、铜金山、拉陵高里河沟脑等多金属矿床及一批找矿信息,已证实具有小型-超大型规模,使祁漫塔格地区成为重要的矿产勘查地区。近年来祁漫塔格地区1∶5万水系沉积物测量工作进展及找矿成果表明,1∶5万水系沉积物测量工作对于重要成矿带上矿床的发现具有重要作用,有力推动了祁漫塔格地区矿产资源调查评价工作的开展。  相似文献   

7.
Regional geochemical maps in Finland have been produced from many different programmes. The scale of sampling, the material collected and the analytical methods used varied according to the aim of the study. The entire country was covered at a reconnaissance scale using glacial till, groundwater, surface water and organic stream sediments as sampling media. Glacial till was sampled throughout the country at a regional scale. Local scale mapping and detailed geochemical studies are carried out in selected areas. The main analytical methods have been ICP-AES and ICP-MS, but other methods were used when necessary. In assaying solid material, both total decomposition and strong acid (aqua regia) leaching were used. The results are stored in ALKEMIA, a database developed in the geochemistry department of the Geological Survey of Finland. The data are available as tabulated ASCII files and as digital image files on diskettes, or as various types of symbol and colour maps from desired areas or map sheets. Two examples of the application of geochemical mapping data in prospecting and in environmental research are presented. Indications of the presence of gold and multiple-sulphide ore deposits have been the most useful results obtained from a prospecting standpoint. On the environmental side, reconnaissance scale geochemical mapping data gave more reliable information on the base cation concentration than bedrock maps, making them particularly valuable in devising an acidification assessment model.  相似文献   

8.
矿产勘查地球化学:过去的成就与未来的挑战   总被引:24,自引:0,他引:24  
王学求 《地学前缘》2003,10(1):239-248
勘查地球化学经过 70年的发展 ,已从矿产勘查从属地位的一种战术手段上升到能左右整个矿产勘查全局的战略地位 ,并且从一门经验或技术 ,发展成为一门地学分支科学。这主要表现在 (1)系统地建立了各种类型的地球化学分散模式 ,并根据这些分散模式所形成的地球化学异常去追踪和发现矿床的理论 ;(2 )发展了各种尺度和各种不同介质的地球化学采样方法 ,多元素高灵敏分析方法和数据处理与图件表达方法 ;(3)发展了不同尺度 (局部、区域、国家和全球 )地球化学填图理论 ,一些国家开始陆续完成和出版了区域性或国家性地球化学图 ;(4 )在全世界发现了一大批新的矿产地 ,包括从 2 0世纪 30年代一直延续到 70年代在前苏联、北美和南美发现的许多斑岩铜矿 ,70年代在北美发现许多铀矿 ,80年代开始在中国发现数百个金矿。勘查地球化学尽管取得了从理论到实践的很大成功 ,但它也面临如下的挑战 :(1)全球各种介质中的地球化学基准与全球地球化学填图 ,(2 )隐伏区三维地球化学分散模式、深穿透地球化学与隐伏区矿产勘查 ,(3)巨量金属的聚集机理、地球化学块体与大型矿集区或巨型矿床的定量评价 ,(4 )难识别矿种或难识别类型的地球化学勘查与评价方法。  相似文献   

9.
The net effect of ice‐flow shifts resulting in the dilution or reworking of clasts on a single preserved till sheet is often unknown yet has major implications for palaeoglaciology and mineral exploration. Herein, we analyse variations in till clast lithologies from a single till sheet, within palimpsest‐type Glacial Terrain Zones in NE Manitoba, Canada, to better understand sediment–landform relationships in this area of high landform inheritance. This near‐ice‐divide area is known to consist of a highly fragmented subglacial landscape, resulting from spatio‐temporal variations in intensity of reworking and inheritance throughout multiple glacial events (subglacial bed mosaic). We show that a seemingly homogenous ‘Keewatin’ till sheet is composed of local (>15 km) and continental‐scale (~100‐km‐long carbonate train and 350–600 km long Dubawnt red erratic train) fan, irregular (amoeboid) or lobate palimpsest dispersal patterns. Local dispersal is more complex than the preserved local landform flowset(s) record, but appears consistent with the overall glacial history reconstructed from regional flowset and striation analyses. The resultant surface till is a spatial mosaic interpreted to reflect variable intensities in modification (overprinting) and preservation (inheritance) of a predominately pre‐existing till sheet. A multi‐faceted approach integrating till composition, regional landforms, ice‐flow indicators, and stratigraphic knowledge is used to map relative spatio‐temporal erosion/reworking intensity.  相似文献   

10.
In some glaciated regions, weathered mantles, formed under previous climatic regimes, were not always eroded bare by glacial activity, but instead lie buried beneath the glacial overburden. It is obviously important that geochemical exploration programs in such terrain should take into account some of the known regolith features seen in deeply weathered regions. The effects of glacial action upon deeply weathered terrain are considered in three conceptual models. The critical factor in each is the depth of truncation of the preglacial weathering profile. All three proposed models are dynamic systems and a wide range of intermediate situations must be expected.In Model 1 a complete, largely undisturbed, weathering profile is preserved beneath till. The key characteristic is preservation of a lateritic duricrust which may contain areally large (up to 200 km2) geochemical anomalies. It would be critical, firstly, that the duricrust be sufficiently continuous to allow a reasonable success rate in its being sampled, and secondly that the duricrust be recognizable in drill spoil. The most efficient geochemical exploration could be based upon wide-spaced overburden drilling directed at sampling the duricrust. For reconnaissance, holes could be based upon a 1-km grid where stratabound massive polymetallic sulphide or stratabound gold deposits are sought. Even wider spacing could be tried where larger-sized ore deposits are expected.Model 2 is characterized by a weathered profile that was partly stripped prior to glaciation. The essential feature is a vertically zoned weathering profile in the basement rock in which the upper levels of the weathering profile have undergone leaching of certain elements and lower levels contain enrichments of these elements. Any gossans present would show strong vertical zonation. Relatively strong sources for dispersion in till are likely to be enriched gossans where erosion has cut deep into the profile, zones of supergene enrichment of ore deposits, and supergene ore deposits themselves. In many situations, saprolite under glacial drift would be too soft to provide boulders so important in conventional till prospecting.The essential ingredient in hypothetical Model 3 involves progressive planing away of the weathering profile by glacial action. Thus any halo in duricrust is initially dispersed, followed by dispersion of progressively deeper levels of saprolite. If taken deep enough the supergene enriched zone of a mineral deposit could add to the glacial dispersion. A broadly zoned anomaly would be expected; a till anomaly would be characterized distally by elements from the former duricrust anomaly, with elements more characteristic of supergene zones closer to the source.  相似文献   

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