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1.
Kolonodale矿床是东南亚红土镍矿带上一处典型矿床,位于印度尼西亚苏拉威西岛东部。矿床产自富镁超基性岩红土风化壳,矿化剖面自上而下出现红土层→腐岩层→基岩层垂向分带。红土镍矿石产在红土剖面上部,载镍矿物是铁质氧化物。硅镁镍矿石产在红土剖面中下部,载镍矿物为镍蛇纹石、镍滑石等含水层状硅酸盐矿物。地球化学分析显示,沿矿化剖面元素地球化学分异非常显著,Ni次生富集效应明显。超基性岩红土化过程的元素地球化学行为具有多样性,Fe、Al、Ti、Cr属残留富集组分,Si、Mg属淋滤缺失组分,Mn、Ca、Co、Ni属次生富集组分。通过典型矿床对比,Kolonodale矿床属原地自生硅酸盐型红土镍矿床,其发育受地质背景和地表环境条件的综合制约。富镁超基性岩、良好的构造组合、稳定的大地构造环境、湿热热带雨林气候、有利地形地貌等均是成矿有利条件。综合分析认为,Kolonodale矿床的成矿过程可划分为腐岩化、红土化和次生富集3个成矿阶段。  相似文献   

2.
Kolonodale矿床是东南亚红土镍矿带上一处典型矿床,位于印度尼西亚苏拉威西岛东部。矿床产自富镁超基性岩红土风化壳,矿化剖面自上而下出现红土层→腐岩层→基岩层垂向分带。红土镍矿石产在红土剖面上部,载镍矿物是铁质氧化物。硅镁镍矿石产在红土剖面中下部,载镍矿物为镍蛇纹石、镍滑石等含水层状硅酸盐矿物。地球化学分析显示,沿矿化剖面元素地球化学分异非常显著,Ni次生富集效应明显。超基性岩红土化过程的元素地球化学行为具有多样性,Fe、Al、Ti、Cr属残留富集组分,Si、Mg属淋滤缺失组分,Mn、Ca、Co、Ni属次生富集组分。通过典型矿床对比,Kolonodale矿床属原地自生硅酸盐型红土镍矿床,其发育受地质背景和地表环境条件的综合制约。富镁超基性岩、良好的构造组合、稳定的大地构造环境、湿热热带雨林气候、有利地形地貌等均是成矿有利条件。综合分析认为,Kolonodale矿床的成矿过程可划分为腐岩化、红土化和次生富集3个成矿阶段。  相似文献   

3.
缅甸达贡山风化壳型硅酸镍矿床   总被引:2,自引:0,他引:2  
程迁群  罗太旭 《云南地质》2009,28(4):420-424
矿床产于超基性岩顶部的风化壳硅镁镍矿层中,超基性岩方辉橄榄岩是成矿母岩和矿体直接载体。矿石为硅酸镍氧化矿石,镍以类质同象存在于硅酸盐矿物中。具有典型的风化壳型硅酸镍矿床特点。  相似文献   

4.
陈百友  刘洪滔  杨平  孙媛 《地球学报》2013,34(S1):202-206
全球红土型镍矿床具有明显的时空分布规律, 红土型镍矿体则具有明显的垂向分带规律。红土型镍矿化强度明显受成矿母岩成分(包括镍含量、岩石地球化学成分、矿物成分)、气候、地形地貌、水文地质、构造地质、成矿时间长短及风化壳成熟度的影响和控制。红土型镍矿的矿床类型主要受气候、大地构造背景、构造隆升状态控制, 并受地形地貌、排水条件、成矿母岩岩性及其蛇纹石化程度影响。  相似文献   

5.
红土型镍矿是基性、超基性岩在热带、亚热带地区常年高温、多雨的环境下,经过风化--淋滤--沉积富集而成。基性、超基性岩是此类矿床的成矿母岩。因此,以往针对红土型镍矿的找矿勘探首先是寻找基性、超基性岩。笔者近期在印度尼西亚苏拉威西省Kolaka县发现了一种新型红土镍矿床,该矿床成矿母岩并非是基性、超基性岩,而是砾石成分以超基性岩为主的一套砾岩。为了区分传统意义上由基性、超基性岩风化淋滤形成的红土型镍矿,笔者将其称为砾岩型红土镍矿。该矿床的结构分带由上往下可分为:腐植土层、红土层、强风化砾岩层、半风化砾岩层、砾岩层,镍矿体主要分布于半风化砾岩层中。初步认为矿床是由砾岩经过风化--水解-淋滤-沉淀富集等作用形成的。  相似文献   

6.
通过对印度尼西亚卫古岛风化壳型硅酸镍矿床的成矿地质条件、矿床地质特征、成矿机制的分析和研究,认为矿床是由于超铗铁岩-橄榄岩在中生代、第三纪、第四纪的热带、亚热带气候条件下,经过风化作用,镍从含镍的硅酸盐矿物中淋滤出来,随地表水向下渗透到风化壳的下部,形成富含镍的次生矿物,具有典型的风化壳型硅酸镍矿床特点.  相似文献   

7.
红土型镍矿占世界上镍矿总储量的85%。近年来,红土型镍矿床找矿勘查工作在一些国家和地区取得了重要进展。本文较详细地总结了红土型镍矿床地质特征,分析了红土型镍矿床的矿化类型和成矿条件,并归纳出红土型镍矿床7个方面的关键找矿标志。红土型镍矿床按其成分和内部结构不同可分为褐铁矿带、粘土带、腐岩带及风化基岩带。根据不同带内镍矿化特征和载镍矿物特征,又可将红土型镍矿化分为硅酸盐型、粘土型和氧化物型3类。红土型镍矿床形成条件分析显示,富镍超基性岩是其形成的物质条件,热带-亚热带湿热气候是其形成的风化营力条件,地形-地貌和构造组合为镍元素活化-淋滤-沉积提供了通道和赋存空间,良好的物理化学条件提供了内在的成矿动力,稳定的大地构造环境为其形成后的保存提供保障。红土型镍矿床的关键找矿标志主要有富镍超基性岩发育的构造位置、风化壳发育、岩性为超基性岩、有利的地形-地貌、遥感-地球化学和地球物理异常区。  相似文献   

8.
菲律宾迪纳加特岛红土型镍矿床地质特征及找矿勘查方法   总被引:1,自引:0,他引:1  
通过对菲律宾迪纳加特岛风化壳氧化镍-硅酸镍矿床的成矿地质条件、矿床地质特征、成矿机制的分析和研究,认为矿床是由于超镁铁岩-橄榄岩在中生代、第三纪、第四纪的热带、亚热带气候条件下,经过风化作用,镍从含镍的硅酸盐矿物中淋滤出来,随地表水向下渗透到风化壳的下部,形成富含镍的次生矿物,具有典型的风化壳型硅酸镍矿床特点。找矿勘探工作要在找矿区域进行地质填图及工程取样扫面来确定矿化区。  相似文献   

9.
东南亚地区红土型镍矿分布较广,成矿地质条件优越。该类矿床产于超基性岩带顶部红土型风化壳内,矿石多为含镍的褐铁矿化黏土,其产出规模、分布范围和品位高低与原岩类型、气候变化、地形地貌和构造条件关系密切。成矿物质主要来源于超基性岩体,是镁铁质-超镁铁质岩体风化-淋滤-淀积的产物,矿石的矿物组分与风化土的矿物组分大体一致,属黏土硅酸盐镍矿床。本文在收集前人资料的基础上,系统地阐述了矿床区域地质背景、矿床地质特征及成矿分布规律初步研究,总结出了该类矿区找矿标志及成矿规律,对寻找红土型镍矿床具有一定的指导作用。  相似文献   

10.
威拉砾岩型红土镍矿形成过程相对较特殊,系辉石橄榄岩经剥蚀、搬运、沉积形成砾岩及巨砾岩之后经风化淋滤富集而成矿。成岩成矿过程短:成岩于早更新世,成矿期为早更新世以来。橄榄岩质砾岩分布面积5. 5 km~2,决定了成矿后矿床(体)规模仅为中型,边界品位矿体平均厚度为3. 62m,工业品位矿体平均厚度为2. 92 m,工业品位矿石量仅占5. 23%。其矿床规模、品位和品级等与直接由超基性岩经风化淋滤富集形成的红土型镍矿差别较大。现阶段开采利用将处于亏损状态。"走出去"进行红土型镍矿找矿勘查时,应首先确定其成矿母岩岩性,对砾岩型红土镍矿勘查不宜超越预查阶段。  相似文献   

11.
Many nickel deposits are known in Brazil, accounting for about 350 · 106 tons of ore with an average of 1.5% Ni. All are of the lateritic type. These deposits are scattered throughout the country, being rarer in the Northeastern Region and in the South, below 25 °S latitude. They are mainly associated with mafic-ultramafic massifs of large dimensions and ultramafic alkaline complexes, and occur in climatic regions of contrasting seasons. The weathering profile developed over the fresh rock consists, from bottom to top, of the following horizons: altered rock, coarse saprolite, argillaceous saprolite, ferruginous saprolite and lateritic overburden. The thickness of each horizon varies from one deposit to another, the whole profile generally exceeding 20 m. The saprolitic horizons with inherited minerals (serpentine, chlorite) or neoformed minerals (smectites) constitute the silicated nickel ore and are thicker were climatic conditions are drier; the ferruginous upper horizons made up of iron oxide-hydroxides are more developed in more humid regions. In Brazil, the silicated ore generally prevails over the oxidized ore. The main Ni-bearing minerals are serpentine, smectite, garnierite and goethite. The lateritic nickel deposits of Brazil may be correlated with two erosion surfaces, corresponding to the Sul Americano (Lower Tertiary) and Velhas (Upper Tertiary) levelling cycles. The degree of dismantling of the higher and more ancient surface and the consequent development of the Velhas Surface control the position of the nickel accumulation in the landscape. Thus, the deposits may be found either in the lowlands or in the highlands, where they are always covered by a silcrete layer. The alteration profiles in the Brazilian lateritic nickel deposits are broadly similar to those described elsewhere in the world. However, they present two characteristic features: the silicated ore prevails over the oxidized ore, and a silicified layer covers the profies developed on the highlands.  相似文献   

12.
Lateritic Ni ore mined in the Rio Tuba Mine, Philippines, derived from ultramafic rock by tropical intense weathering, is generally composed of two accumulated zones, an upper laterite zone and a lower saprolite zone. These two zones are very different in appearance, mineral assemblage, chemical composition, and in other ways. A transitional zone may be seen between the upper and lower zones, but it does not develop to any appreciable thickness. Although serpentine and goethite are still predominant in the constituent minerals, other clay minerals are increasing.

The transitional zone may be subdivided into three groups based on chemical composition. The behaviour of the chemical composition in this horizon indicates a complicated process of component transportation under the weathering process.

In the ore, chemical components are closely related in particle size of constituent minerals. In the laterite - transitional - saprolite sequence, a common variation range and tendency in chemical composition for each particle size can be seen. However, taking samples with the same particle size the chemical composition obviously differed, representing the characteristics of the components for each zone.

Concerning the correlation coefficient of the chemical components of each zone, a somewhat different inter-component relationship can be seen in these zones. These differences of correlation suggest the different complicated lateritized conditions under which they are formed.  相似文献   


13.
陈德杰 《西北地质》2012,(3):103-108
菲律宾保和岛达瑙镍矿床位于西比克尔-东莱特岛(Western Bicol-Eastern Leyte)蛇绿岩带附近,矿体分布在超基性岩体顶部的褐铁矿层、腐泥土层中,与地表红棕色土壤的分布范围基本一致。层中硅镁镍矿较为发育,主要含镍矿物为镍绿泥石、暗镍蛇纹石。化学分析结果显示成矿物质来源于超基性岩;对矿区超基性岩、气候、地理位置、岩石破碎程度等特征进一步分析研究,认为该矿床的成因类型为风化壳淋积矿床。地壳抬升超基性岩接受风化,释放出Ni~2+。Ni~2+随地表水下渗至褐铁矿层下部的腐泥土层(风化岩石)中被蛇纹石矿物捕获,富集成矿。类质同象中的Mg~2+释放出来,由于本区地层渗透性好,Mg~2+至基岩处富集。一般而言,红土层下面的风化岩石含Ni最富。  相似文献   

14.
文章选取印尼苏拉威西岛Kolonodale红土型镍矿区为研究区,对201个浅井剖面共采取3 161件风化壳样品,进行了w(Ni)值的测试,以揭示超基性岩红土风化壳中Ni的表生富集规律及矿化结构特征。研究结果表明,在平面上,矿区内风化壳的w(Ni)平均值的高低与地形地貌关系密切。斜坡带、坡脚堆积带的风化壳为含镍高值区,其w(Ni)值为0.8%~1.8%;山顶平台区、山脊的风化壳为含镍低值区,其w(Ni)值为0.7%~1.4%。在垂向上,风化产物的w(Ni)值的高低与取样深度及样品属性密切相关。w(Ni)值随着红土带→腐岩带→基岩带的变化出现低值(0.85%~1.55%)→高值(1.15%~4.75%)→低值(≤0.55%)的波动变化规律。矿层的产状(分布、深度、厚度)与风化壳产状之间表现出明显的正相关关系。矿区内的低品位矿层〔1.5%≤w(Ni)≤2.0%〕和高品位矿层〔w(Ni)≥2.0%〕单独或组合发育,产出"正常型双层矿化"、"倒置型双层矿化"、"低品位单层矿化"、"高品位单层矿化"和"叠层矿化"等5种矿化结构类型。综合分析认为,富镁及中等程度蛇纹石化的超基性岩母岩、热带雨林气候环境是矿区内发育富镍红土风化壳的首要条件。吸附、离子交换以及次生沉淀等3种成矿作用的共同发育,导致了红土风化壳中Ni表生矿化的连续性、矿石类型的多样性及特高品位矿石的形成。矿床中矿化结构类型的多样化是区域构造背景、地形地貌、构造发育、水文条件等诸多因素耦合作用的结果。文章指出,在今后的红土型镍矿床的找矿勘查过程中,需要综合考虑各类内、外生控矿因素对矿床发育的影响,总结矿区尺度的矿化结构规律,可有效地指导矿床勘查工作。  相似文献   

15.
The recently discovered lateritic nickel ore deposit on the summit area of the Tagaung Taung contains about 40 million DMT nickel-saprolite ore with approximately 2% Ni. The serpentinite massif is covered with a thick weathering mantle consisting of saprolite, limonite, and an allochthonous lateritic surface layer. The thickness, nickel content, and physical properties of the ore are very variable. The main minerals in the nickel saprolite ore are nickeliferous serpentine and smectite. Microprobe analyses show a strong depletion of Mg with increasing nickel content in the serpentine minerals; smectite generally contains less nickel than serpentine. Chemical analyses of samples from more than 100 drill holes are used to calculate the mean chemical compositions, mean accumulation factors, and gain and loss of major and trace elements for the various layers. This permits a quantitative approach to be made to the genetic history of the weathering mantle. Gain and loss determinations on the basis of constant chromium content and of constant volume give nearly identical results for the saprolite layer. Calculations on the basis of Ni/Cr ratios indicate that three-quarters of a former 20-m-thick limonite layer has been eroded away. Only the lower part of the original limonite layer with a relatively high SiO2 content is preserved. The kaolinite- and illite-rich surface layer is a mixture of limonite and weathered clayey material, which was probably derived from adjacent rocks. Part of the autochthonous weathering section is contaminated with infiltrated allochthonous surface material. It is not possible that colluvial-alluvial deposition of clayey material from nonultramafic rocks could have taken place under the present geomorphic regime. Thus, lateritization of the serpentinite and deposition of siallitic material must have occurred before exposure of the Tagaung Taung in its present form.  相似文献   

16.
The Çalda? nickel laterite deposit located in the Aegean region of W. Turkey contains a reserve of 33 million tons of Ni ore with an average grade of 1.14% Ni. The deposit is developed on an ophiolitic serpentinite body which was obducted onto Triassic dolomites in the Late Cretaceous. The deposit weathering profile is both laterally and vertically variable. A limonite zone, which is the main ore horizon, is located at the base of the profile. A hematite horizon is located above the limonite, which in the south of the deposit is capped by Eocene freshwater limestones and in the north by a siliceous horizon. The deposit is unusual in lacking a significant saprolite zone with little development of Ni-silicates. The boundary between the limonite zone and serpentinite below is sharp with a marked decrease in concentrations of MgO from 13 to 1 wt.% over a distance of 2 mm representing the ‘Mg discontinuity’. Ni concentrations within goethite, the main ore mineral, reach a maximum of ~3 wt.% near the base of the limonite zone. Silica concentrations are high throughout most of the laterite with up to 80 wt.% silica in the upper portion of some profiles. The combination of a serpentinite protolith and a high water table at Çalda?, in association with an aggressive weathering environment in a tropical climate, resulted in the formation of an oxide-dominated deposit. The precipitation of silica may coincide with a change in climate with silica precipitation linked to an increase in seasonality. Additional variations within profile morphology are attributed to transportation during and after laterite development as a result of faulting, pocket type laterite formation and slumping, each of which produces a contrasting set of textural and geochemical features.  相似文献   

17.
莫苇塘红土型镍矿分为土状矿和岩状矿,矿物成分基本相同,但量上有差异。矿石主要由蛇纹石类硅酸盐矿物和褐铁矿、赤铁矿等氧化物、氢氧化物矿物组成,有用组份镍主要赋存于硅酸盐类矿物和氧化物、氢氧化物类矿物中。  相似文献   

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