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1.
“寨背式”离子吸附型稀土矿床多类型稀土矿化及其成因   总被引:1,自引:0,他引:1  
赵芝  王登红  邹新勇 《岩石学报》2022,38(2):356-370
赣南寨背离子吸附型稀土矿床产于寨背复式花岗岩体的风化壳中,自20世纪80年代发现以来一直以轻稀土型开采,近年在轻稀土型花岗岩风化壳中发现了重稀土矿。为了探讨轻稀土型花岗岩风化过程中重稀土元素的迁移、分馏和富集机制,本文选择了区内三个具有代表性的风化壳钻孔(ZK1、ZK2和ZK4)对其进行了全相和离子交换相稀土元素地球化学研究。结果显示:钻孔ZK4中离子交换相稀土含量介于14.90×10-6~835.8×10-6之间,并富集轻稀土(LREE/HREE=2.28~10.78);钻孔ZK1中离子交换相稀土含量达1470×10-6(9件样品均值),具有从轻稀土型向重稀土型过渡的配分特征(LREE/HREE=1.30~1.65),并且剖面自上而下显示轻、重稀土逐渐富集的趋势;钻孔ZK2中离子交换相稀土含量为492.4×10-6(8件样品均值),自上而下稀土配分类型从轻稀土型过渡至重稀土型(LREE/HREE=0.43~2.25),且轻稀土富集在全风化层上部而重稀土则富集在下部。三个钻孔的Nb/Ta和Zr/Hf...  相似文献   

2.
潘泽伟 《地质与勘探》2021,57(4):784-795
滇西陇川地区广泛分布着白垩纪至古近纪中酸性花岗岩,以邦棍尖山为代表的岩体花岗岩稀土含量较高,经复杂的风化淋滤作用,岩体中的稀土元素在风化壳中迁移、富集成矿,陇川营盘山稀土矿即为近年新发现的该类型矿产地之一。为研究新发现的营盘山稀土矿稀土元素分布特征、富集规律及稀土配分特征,利用电感耦合等离子体质谱仪(ICP-MS)分析成矿母岩及其风化壳不同风化程度样品稀土分量,结果表明:风化壳各层位稀土元素分布特征相比母岩具有明显的继承性,随风化程度升高,轻重稀土分馏程度升高,轻稀土在全风化层上部相对富集,且随风化程度升高轻稀土富集程度升高,而重稀土的富集程度则逐渐减弱,Gd是风化壳富集能力最强的元素,Dy富集能力最弱,Ce富集在近地表,重稀土具有更强的向下迁移能力。同时,研究发现该稀土矿床的稀土配分特征为低钇、铕,富镧、铈、钕。  相似文献   

3.
南岭离子吸附型稀土矿床成矿规律研究新进展   总被引:13,自引:1,他引:12  
赵芝  王登红  陈郑辉  陈振宇 《地质学报》2017,91(12):2814-2827
离子吸附型稀土矿是我国的优势资源,是全球重稀土的主要来源。20世纪80年代我国对此类矿床的成矿规律开展过大量研究,但仍有诸多未解之谜。为了解目前离子吸附型稀土资源的分布特征和成矿规律,2011~2015年中国地质科学院矿产资源所三稀项目组对52个离子吸附型稀土矿床进行了综合研究,本文介绍稀土成矿规律研究方面取得的一些新进展:(1)离子吸附型稀土矿床广泛分布在华南地区,以南岭最为发育,近些年在越南、老挝、泰国及美国也有发现。矿床主要产在花岗岩和酸性火山岩风化壳中,近几年也在变质岩和灰岩风化壳中有所发现,但花岗岩离子吸附型稀土矿床规模较大,品位较高,仍是最为重要的一类(亚类)稀土矿床;(2)成矿花岗岩的形成时代范围较宽,锆石U-Pb年龄集中在461~384Ma、228~242Ma和189~94Ma三个区间。相对于LREE型成矿花岗岩,HREE型更加富硅,富HREE,具有强烈的负Eu异常,普遍高Rb,低Ti、Zr、Hf、Nb、Ta、Ba、Sr等微量元素,暗示HREE型成矿花岗岩岩浆经历了高度分异。值得注意的是,部分LREE型成矿花岗岩相对富集HREE,特别是富集Y,轻重稀土元素比值(LREE/HREE)多介于1~3之间,风化易形成HREE型风化壳,这很可能是今后重稀土资源的重要来源之一;(3)成矿花岗岩中稀土矿物的成因多样,有岩浆成因(如榍石、褐帘石、独居石、磷钇矿等)、流体交代成因(稀土氟碳酸盐类)和表生成因(水磷铈矿、水磷镧矿等),稀土元素的内生矿化很大程度上受流体交代作用影响;(4)发育完整的风化壳垂向剖面中稀土元素含量呈"弓背式"分布,即表土层和半风化层中含量低,全风化层中含量高,但受地形、地貌及地表水等因素的影响,稀土含量变化曲线呈多种形态。垂向上LREE和HREE可分层富集,即全风化层上部富集LREE,下部富集HREE,也可以同时富集在全风化层下部。华南大量成矿母岩和风化壳样品的化学风化蚀变指数(CIA)与稀土元素总量(∑REE)之间存在明显的相关性,当CIA85%时,CIA与∑REE呈正相关,当85%CIA100%时,CIA与∑REE呈负相关;(5)表生过程中,母岩中易风化的稀土矿物不断释放出可交换性吸附态的稀土元素,酸性淋滤作用是稀土元素迁移的动力,黏土矿物是稀土元素赋存的载体,风化程度影响稀土元素的次生富集。  相似文献   

4.
外生稀土矿床的分布、类型和成因概述   总被引:1,自引:0,他引:1  
稀土是当今危机资源,勘探和研究稀土矿床是世界热点。外生矿床是重要的稀土来源之一。本文综述了残-坡积、(河流)冲积和海滨砂矿,碳酸盐岩风化壳型,花岗岩风化壳型等稀土矿床地质特征和成因认识。风化壳型稀土矿床是由富稀土的原岩经过地表机械和化学风化作用形成,母岩稀土的最初富集是形成风化壳型稀土矿床的前提,风化壳继承了母岩的稀土特征。目前世界对重稀土的需求最为突出,中国南岭花岗岩风化壳型重稀土矿床为世界之最。风化是后期稀土提炼富集过程,成矿关键在于花岗岩岩浆阶段重稀土矿物的形成。然而,何种因素形成南岭地区具有稀土成矿潜力的花岗岩,富稀土花岗岩表现出的轻重稀土分异是由于源区性质的差异还是源于岩浆演化过程中的分异作用,以及重稀土矿物的形成机制仍有待于研究。  相似文献   

5.
本研究选择中国东部主要的花岗岩分布区中位于中温带、暖温带和热带的8个花岗岩风化壳作为研究对象,对比研究了不同气候环境下花岗岩风化过程中稀土元素(REE)的分布规律及其演化特征。结果表明,各气候带的花岗岩风化壳的REE分布具有一定的共性规律,风化产物的REE总量相对基岩都有不同程度的富集,且都表现出轻稀土(LREE)相对重稀土(HREE)富集以及一定程度的Eu负异常。由于REE的迁移和淋滤,导致其在风化壳内的再分配。通常REE在半风化层富集,p H值和粘土矿物含量等内因变化是导致这一现象的主要因素。对于少数表层REE富集的现象,如SD-DG、HN-3剖面,气候环境与地质条件等外因则是这一现象的主导因素。受海洋性气候影响显著的风化壳(QHD-1,HN-3),以基岩为标准,容易发生HREE富集的轻、重稀土分异的现象。大部分花岗岩风化壳中,Ce通常在剖面上部出现正异常,而在下部出现与之互补的Ce负异常。  相似文献   

6.
云南省澜沧县地处临沧花岗岩的中南段,在其境内发现多地与花岗岩风化壳有关的离子吸附型稀土矿床。文章通过对该区晚三叠世黑云母二长花岗岩风化壳全风化层的剖面及钻孔样品分析,对赋存于花岗岩风化壳离子吸附型稀土矿床的成矿地质地球化学特征进行研究,探讨其关键成矿过程并总结地形地貌与风化壳和矿体露头的关系。研究表明,黑云母二长花岗岩风化壳分层特征明显,离子吸附型稀土矿体规模及形态严格受风化壳发育程度及微地貌控制;花岗岩风化壳全风化层稀土元素配分曲线呈右倾平滑的浅“W”型,轻稀土元素的分异程度强于重稀土元素;除Ce元素外,轻稀土元素的浸出率略高于重稀土元素;矿石类型为以轻稀土元素为主、中重稀土元素配分齐全的混合型稀土矿。通过厘定离子吸附型稀土矿床的关键成矿过程,文章发现内应力、渗透能力、风化程度、黏土矿物含量在风化壳剖面中由上至下变化特征综合决定了稀土矿体主要定位于风化壳全风化层。  相似文献   

7.
围绕国家战略性产业发展对稀土资源的需求, 特别是紧缺的重稀土资源, 如何快速有效地发现富含重稀土矿床找矿靶区是勘查地球化学急需解决的问题。“化学地球”大科学计划获得全国地球化学基准数据, 圈定稀土异常超常富集区9处, 其中新发现的滇南红河州蒙自—中越边境地区稀土富集区轻重稀土比值(LREE/HREE)为3.5, 与华南富含重稀土的离子吸附型稀土矿异常LREE/HREE比值一致。结合地质背景、成矿母岩、气候和地形地貌特点等初步判断具有寻找类似华南富含重稀土的离子吸附型稀土矿资源潜力。因此, 对这一异常的核心区, 开展了1:25万、1:5万地球化学调查和风化剖面测量, 并经29个钻孔验证, 初步发现马鞍底潜在超大型富含重稀土离子吸附型稀土矿。富矿区分布于坡度较缓的坡脚处, 风化母岩为印支期和燕山期花岗岩、元古界斜长片麻岩和变粒岩。风化剖面厚度最深可达25 m左右, 富矿层位位于全风化层, 一般在2~13 m深度, 矿体平均厚度6~13 m, 最厚可达21 m, 平均品位0.14%。根据29个钻孔和84个风化壳剖面测量, 初步估算稀土潜在矿石量约9.46亿吨、稀土氧化物潜在资源约100万吨。这是我国首次在滇南地区发现潜在超大型离子吸附型稀土矿。该离子吸附型稀土矿同时富含轻稀土(镧、铈、镨、钕)和重稀土(钆、铽、镝、钇), 具有重大经济价值和科学意义。这一发现表明开展从极低密度、低密度到高密度地球化学调查, 获得全部16个稀土元素高质量数据是发现离子吸附型稀土矿的快速有效方法。  相似文献   

8.
研究风化壳中纳米微粒的稀土元素特征,对于从微观层面揭示我国华南风化壳型稀土矿床成因具有重要意义。以广西平南富稀土花岗岩风化壳剖面(ΣREEmax含量1 201 ×10-6)为典型案例,采用物理方法(超纯水,MQW)和化学方法(Na4P2O7, TSPP)两种技术手段,提取了花岗岩风化产物中的纳米微粒(1~100 nm)。进而采用中空纤维流场流分离-电感耦合等离子质谱仪联用技术(HF5-ICP-MS),对纳米微粒进行了连续分离和表征,同步获得了不同粒径纳米微粒中REE的含量特征。结果指示,化学提取剂TSPP能有效打破花岗岩风化产物中的大颗粒团聚体,它对纳米微粒的提取效率比物理提取方法高102~103倍。在TSPP提取的纳米微粒悬浮液中,REE含量(ΣREETSPP含量)最高可占到风化产物全岩REE总量(ΣREE含量)的80.5 %。纳米微粒主要分布于2~5 nm和10~30 nm两个粒径区间,另有少量粒径为30~80 nm的纳米微粒出现。其中,在2~5 nm微粒中,REE峰位与有机质大分子峰位对应,指示二者在离子键合作用下形成了聚合体。而在10~30 nm微粒中,REE峰位与Al元素峰位相对应,指示REE被黏土矿物纳米微粒吸附或离子交换。此外,本研究还发现轻稀土(LREE)与重稀土(HREE)在纳米微粒中的分布并不一致。其中以La、Ce、Pr和Nd为代表的LREE元素集中出现在2~5 nm和10~30 nm的纳米微粒中,而以Tb和Lu为代表的HREE元素除了在上述两个粒径的纳米微粒中有含量显示外,还分布于30~80 nm的纳米微粒中,指示了花岗岩风化产物中可能存在着相对独立的、与有机质和黏土矿物无直接关联的重稀土纳米微粒矿物。上述发现为进一步认识风化壳型稀土矿床中稀土元素的赋存状态和富集分异过程提供了新的启示。  相似文献   

9.
梁晓亮  谭伟 《地学前缘》2022,29(1):29-41
华南离子吸附型稀土矿床提供了全球超过90%的重稀土,是我国优势的战略性关键金属矿产资源。掌握这类矿床的成矿机制和禀赋特征,可为增加稀土资源储量和高效利用稀土资源提供理论支撑。离子吸附型稀土矿床主要发育在富稀土花岗岩、浅变质岩及火山岩的风化壳中。基岩中的(含)稀土矿物是风化壳中离子态稀土的主要来源,其矿物组合很大程度上决定了稀土矿床的禀赋和分异特征。在物理-化学风化和微生物作用下,造岩矿物、含稀土矿物和稀土独立矿物逐渐溶解,使稀土元素活化和再富集。一方面,母岩风化形成的黏土矿物和铁锰氧化物具有较大的比表面积和一定的表面电荷密度,是稀土离子的主要载体;另一方面,稀土离子通过离子交换、表面吸附与络合、共沉淀,以及形成次生稀土矿物等途径富集在次生矿物表面,其富集-分异特征和赋存状态受矿物类型、pH、微生物活动等因素所控制。利用高分辨透射电镜结合选区电子衍射和电子能量损失谱,以及同步辐射X射线吸收精细结构谱,有望在原子级尺度查明稀土的微观赋存状态。未来研究需更多关注基岩中(含)稀土矿物组合及其演化路径的制约因素、微生物风化对离子吸附型稀土矿床成矿作用的约束,以及稀土元素的微观赋存状态等问题。  相似文献   

10.
花山矿区南矿段稀土矿矿石为中低品位为主的花岗岩风化壳离子吸附型稀土矿石,属于轻稀土富集型,且Eu具有明显的负异常,其稀土配分特征表现出了与原岩的明显继承性。花岗岩原岩风化程度越高,风化壳厚度越大,矿层的品质就越好,浸取率也相应增高。全风化层是稀土矿的主要赋矿层位,全风化层的顶部稀土氧化物含量不高,稀土元素主要富集在全风化层的中下部。矿体轻重稀土的比值由地表向下,比值降低,即表现出明显的矿层上部富集轻稀土,下部富集重稀土。  相似文献   

11.
The behaviour of the rare-earth elements(REE)during the weathering of granites was studied in southern Guangxi,China.Based on the study of the weathering profiles,the soil,weathered and sub-weatereb zones are identified with different REE geochemical behaviours throug the weathering profiles of granite.The Ce anomalies of the weathering profiles cover a large range of values with most falling between 1.02 and 1.43in the soil zone and 0.16and 0.40in the weathered and sub-weathered zones.Light rare-earth elements(LREE) and heavy rare-earth elements(HREE)are enriched to varying degree in the weathering profiles as compared to host granites.In the soil zone,more HREEs are leached than LREEs,and HREEs are more enriched than LREE in the weathered and sub-weathered zones.It is considered that infiltration and adsorption on clays are two processes controlling the enrichment and formation of REE deposits in the weathering profiles of granite.  相似文献   

12.
[研究目的]临沧花岗岩风化壳广布,离子吸附型稀土资源潜力巨大.加强对临沧花岗岩风化壳离子吸附型稀土相态特征、浸出率等矿床地球化学特征和成矿机制的研究有利于进一步促进该区离子吸附型稀土资源的找矿工作.[研究方法]本文选择临沧花岗岩中段地区,通过系统实施钻探工程,详细了解稀土成矿地质及矿床地球化学特征,并对其成因进行探讨....  相似文献   

13.
高玲  闫峻  李全忠  谢建成 《地质论评》2022,68(5):1820-1838
皖南地区花岗岩风化壳中稀土元素普遍富集,局部已成为矿床,其中,郎溪县姚村岩体风化壳富集程度较高。LA- ICP- MS锆石U- Pb定年表明,姚村花岗岩体的形成年龄为127. 9±1. 4 Ma,属于皖南地区燕山期晚期岩浆作用的产物。风化壳可细分为残坡积层(A)、强半风化层(C1)、过渡层(C2)、弱半风化层(C3)和基岩(D) 5层。稀土总量在纵向剖面上呈“波浪式”分布,各层稀土分布型式表现出对原岩的继承性。风化壳稀土配分型式与基岩一致, 富集LREE,轻重稀土分馏明显\[(La/Yb)N=15. 6\],但总含量明显更高。基岩∑REE为338×10-6,半风化层∑REE最高达642×10-6,富集约两倍。风化壳物质由风化残余主矿物(石英、钾长石、斜长石、黑云母)、黏土矿物(高岭石、埃洛石、伊利石、三水铝石等)和副矿物(锆石、磷灰石、榍石等)等组成。黏土矿物以伊利石含量最高,指示风化壳发育不成熟。REE与埃洛石含量明显正相关,与其他黏土矿物关系不明显。(含)稀土矿物(尤其是榍石)对风化壳中稀土元素的贡献量超过 50%,其次为斜长石,是风化壳中REE的重要来源。  相似文献   

14.
高玲  闫峻  李全忠  谢建成 《地质论评》2022,68(3):2022062013-2022062013
皖南地区花岗岩风化壳中稀土元素普遍富集,局部已成为矿床,其中,郎溪县姚村岩体风化壳富集程度较高。LA- ICP- MS锆石U- Pb定年表明,姚村花岗岩体的形成年龄为127.9±1.4 Ma,属于皖南地区燕山期晚期岩浆作用的产物。风化壳可细分为残坡积层(A)、强半风化层(C1)、过渡层(C2)、弱风化层(C3)和基岩(D)五层。稀土总量在纵向剖面上呈“波浪式”分布,各层稀土分布型式表现出对原岩的继承性。风化壳稀土配分型式与基岩一致, 富集LREE,轻重稀土分馏明显(La/Yb)N=15.6),但总含量明显更高。基岩∑REE为338×10-6,半风化层∑REE最高达642×10-6,富集约两倍。风化壳物质由风化残余主矿物(石英、钾长石、斜长石、黑云母)、黏土矿物(高岭石、埃洛石、伊利石、三水铝石等)和副矿物(锆石、磷灰石、榍石等)等组成。黏土矿物以伊利石含量最高,指示风化壳发育不成熟。REE与埃洛石含量明显正相关,与其他黏土矿物关系不明显。(含)稀土矿物(尤其是榍石)对风化壳中稀土元素的贡献量超过百分之五十,其次为斜长石,是风化壳中REE的重要来源。  相似文献   

15.
Mineralization with ion adsorption rare earth elements (REEs) in the weathering profile of granitoid rocks from Nanling region of Southeast China is an important REE resource, especially for heavy REE (HREE) and Y. However, the Jurassic granites in Zhaibei which host the ion adsorption light REE (LREE) ores are rare. It is of peraluminous and high K calc-alkaline composition, which has similar geochemical features of high K2O + Na2O and Zr + Nb + Ce + Y contents and Ga/Al ratio to A-type granite. Based on the chemical discrimination criteria of Eby [Geology 20 (1992) 641], the Zhaibei granite belongs to A1-type and has similar source to ocean island basalts. The rock is enriched in LREE and contains abundant REE minerals including LREE-phosphates and halides. Minor LREE was also determined in the feldspar and biotite, which shows negligible and negative Eu anomalies, respectively. This indicates that the Zhaibei granite was generated by extreme differentiation of basaltic parent magmas. In contrast, granites associated with ion adsorption HREE ores contain amounts of HREE minerals, and show similar geochemical characteristics with fractionated felsic granites. Note that most Jurassic granitoids in the Nanling region contain no REE minerals and cannot produce REE mineralization. They belong to unfractionated M-, I- and S-type granites. Therefore, accumulation of REE in the weathering profile is controlled by primary REE mineral compositions in the granitoids. Intense fractional crystallization plays a role on REE enrichment in the Nanling granitoid rocks.  相似文献   

16.
Geochemical and mineralogical studies were conducted on the 12-m-thick weathering profile of the Kata Beach granite in Phuket, Thailand, in order to reveal the transport and adsorption of rare earth elements (REE) related to the ion-adsorption type mineralization. The parent rock is ilmenite-series biotite granite with transitional characteristics from I type to S type, abundant in REE (592 ppm). REE are contained dominantly in fluorocarbonate as well as in allanite, titanite, apatite, and zircon. The chondrite-normalized REE pattern of the parent granite indicates enrichment of LREE relative to HREE and no significant Ce anomaly. The upper part of the weathering profile from the surface to 4.5 m depth is mostly characterized by positive Ce anomaly, showing lower REE contents ranging from 174 to 548 ppm and lower percentages of adsorbed REE from 34% to 68% compared with the parent granite. In contrast, the lower part of the profile from 4.5 to 12 m depth is characterized by negative Ce anomaly, showing higher REE contents ranging from 578 to 1,084 ppm and higher percentages from 53% to 85%. The negative Ce anomaly and enrichment of REE in the lower part of the profile suggest that acidic soil water in an oxidizing condition in the upper part mostly immobilized Ce4+ as CeO2 and transported REE3+ downward to the lower part of the profile. The transported REE3+ were adsorbed onto weathering products or distributed to secondary minerals such as rhabdophane. The immobilization of REE results from the increase of pH due to the contact with higher pH groundwater. Since the majority of REE in the weathered granite are present in the ion-adsorption fraction with negative Ce anomaly, the percentages of adsorbed REE are positively correlated with the whole-rock negative Ce anomaly. The result of this study suggests that the ion-adsorption type REE mineralization is identified by the occurrence of easily soluble REE fluorocarbonate and whole-rock negative Ce anomaly of weathered granite. Although fractionation of REE in weathered granite is controlled by the occurrence of REE-bearing minerals and adsorption by weathering products, the ion-adsorption fraction tends to be enriched in LREE relative to weathered granite.  相似文献   

17.
Rare earth element (REE) geochemistry and mineralogy have been studied in the weathered crusts derived from the Early Yanshanian (Jurassic) biotite granites of Dabu and Dingnan, as well as in the Indosinian (Permian) muscovite–biotite granite of Aigao in southern Jiangxi province, China, and the weathered crusts and clay sediments on biotite granites in the Sanyo belt, SW Japan, that is, Okayama, Tanakami, and Naegi areas. In all of the weathered crusts, biotite and plagioclase commonly tend to decrease toward the upper part of the profile, whereas kaolinite and residual quartz and K‐feldspar increase. The weathered crusts of the Dingnan granites and some Naegi granites, which are characterized by the enrichment in light REE (LREE) in C horizons, have higher total REE (ΣREE) content than the parent REE‐enriched granites. Weathering of LREE‐bearing apatite and fluorocarbonates in the Dingnan granites and allanite and apatite in some Naegi granites may account for the leaching of LREE at the B horizons. The leached LREE must result in subsequent enrichment of LREE in the C horizons. The enrichment is probably associated with mainly adsorption onto kaolinite and partly formation of possible secondary LREE‐bearing minerals. In Japan it was found that REE mineralization occurs not in the weathered granitic crusts but in reworked clay sediments, especially kaolinite‐rich layers, derived mainly from the weathering materials of REE‐enriched granitic rocks. The clay sediments are more enriched in LREE, which likely adsorbed onto kaolinite. Concentration of heavy REE within almost all the weathered crusts and clay sediments, however, may reflect mainly residual REE‐bearing minerals such as zircon, which originated in the parent granitic rocks. The findings of the present study support the three processes for fractionation of the REE during weathering: (i) selective leaching of rocks containing both stable and unstable REE‐bearing minerals; (ii) adsorption onto clay minerals; and (iii) presence of possible secondary LREE‐bearing minerals.  相似文献   

18.
Warm and humid climate and gentle hilly topography have provided favourable conditions for the devel-opment of the weathering crust of the granite intrusions in the Longnan area, Jiangxi Province. REE is mostlyconcentrated in an adsorption state in clay in the wholly weathered zone. The rare-earth minerals enriched inthe parent rocks provided the source material for the REE enrichment. Exchangeable REE accounts for48-86%. Extraction experiments and stable isotopic study of clay minerals suggest that the downward infiltra-tion of meteoric water and increasing gradient of pH values have played an important role in the enrichment ofREE during the progressive weathering. Slight fractionation of individual REE can not change their distribu-tion patterns in the profiles. which are inherited from the parent rocks.  相似文献   

19.
摘要:运用岩石地球化学方法,对广东惠东地区离子吸附型稀土矿床的地球化学特征进行研究。结果显示,风化壳中元素含量及配分特点总体上取决于母岩,但稀土元素在继承母岩稀土元素的基础上含量进一步富集,且各风化层中元素含量变化与风化作用之间具有一定相关性。WIG指数相较于CIA指数能更有效地描述风化壳风化强度,风化壳中稀土元素迁出富集与WIG指数及元素迁移系数具有一定规律性,轻稀土元素多在全风化层上部富集,而重稀土元素在全风化层下部及半风化层明显迁入富集,Ce、Eu均具明显负异常。  相似文献   

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