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1.
风化作为一种重要的地表作用,能造成岩石崩解或分解,并使岩石在结构或成分上不同于基岩。为研究页岩风化过程中矿物转变机制及主微量元素变化规律,以四川北部江油地区韩家店组页岩风化剖面为实例,采用薄片鉴定、全岩X射线衍射、X射线荧光光谱和等离子体质谱等方法,对不同风化层及基岩层的矿物成分及主微量元素进行研究。结果表明,与基岩相比,风化层中方解石和长石等矿物占比降低,石膏和黏土矿物等次生矿物生成;根据元素地球化学质量迁移系数计算得出:与基岩相比,风化层中Mg、Ca、Fe、Mn、Sr和U等元素明显亏损,Pb、Zn、Cu、Rb和Cs等元素富集。风化层中稀土元素含量增加,可能是风化生成的黏土矿物吸附稀土元素导致的。根据化学蚀变指数(CIA=69.51~76.21)判断该剖面属于中等风化程度,A-CN-K图解显示剖面处于脱Ca和Na早期风化阶段。根据垂向剖面上Si/Al、Ca/Al、Mg/Al、Na/Al、K/Al和P/Al等元素比值变化规律及样品中元素Pearson相关分析得出,方解石和磷灰石等矿物发生了不同程度的分解,次生矿物铁锰氧化物和伊利石等生成。因此,风化剖面矿物转变及元素活动耦合性研究对于揭...  相似文献   

2.
长江下游下蜀黄土化学风化的地球化学研究   总被引:39,自引:3,他引:39  
根据元素含量,K2O/Na2O,K2O/CaO,Al2O3/Na2O,CIA及A-CN-K图解等指标,对长江下游地区下蜀土的化学风化作用进行了研究,下蜀土比西北黄土经历了较强的化学风化过程,Ca,Sr,Na和Mg大量迁移淋失,不仅表现为碳酸盐矿物的迅速风化,而且硅酸盐矿物如斜长石也明显风化,脱Ca,Na过程显著,而钾长石的风化很弱,脱K不明显,下蜀土与西北黄土的原始沉积物具有相似的化学组成,下蜀土较强的化学风化过程可能受长江下游地区较强的季风性气候控制。  相似文献   

3.
系统考察了湖南省麻田和桃花江两个不同发育程度的下寒武统黑色页岩风化剖面,并提出了元素在理想剖面中的分布模式(概念模型);通过对比分析这两个剖面中元素的分布特征与理想分布模式的关系,并结合元素相关性研究、等质量图解的判别分析、微量元素的赋存状态及地球化学性质的探讨,认为在黑色页岩风化过程中,Ti为不活动元素,可作为参照系来计算其它元素的相对迁移性,Nb、Ta的活动性较小,Zr与Hf之间存在着共迁移现象;研究表明化学风化程度是影响元素活动性的重要因素.  相似文献   

4.
徐磊  赵萌生  程琰勋  潘江涛  管继云  张亚  徐杰  陈伟志  王浩宇  黄加忠  杨明龙  巴永  王守营 《地质论评》2023,69(6):2023060011-2023060011
富碱斑岩带分布较广,目前对其风化过程中的元素地球化学行为研究较少。笔者等以滇中姚安富碱斑岩为例,通过对其化学风化过程的研究,有助于了解富碱斑岩成土过程中元素富集贫化控制因素,丰富碱性岩浆岩风化成土理论。笔者等分析了富碱斑岩风化过程中的矿物风化特征、元素含量分布特征、化学风化趋势、元素迁移富集特征及主控因素,结果表明:富碱斑岩各风化层元素含量与基岩具有继承性,体现了原位风化的特征,符合北亚热带季风气候下云南境内上扬子地块岩石的风化特征;与大陆上地壳组成(UCC)相比,风化成土过程中Ca、Na、K等阳离子强烈淋失亏损,Fe、Al富集;化学风化过程主要发生脱Ca、Na、K、Mg、Si与富Al、Fe作用,风化早期主要为去Ca、去Na过程,风化中、晚期为去K、去Mg、富Al、富Fe过程,并伴随着强烈的脱硅作用;结合迁移系数,常量元素活动性强弱顺序为:Ca>Na>K>Mg>Si>Al>Fe;微量元素地球化学行为一方面主要受地球化学性质相似的常量元素行为控制,另一方面Al、Fe氧化物/氢氧化物和受黏土矿物吸附作用的影响,Sm、Nb、Sc、Th、Ti、U、Y、Cu、Cr、Ni随风化原地残余富集,Ba、Rb、Sr与K、Na、Ca、Mg等常量元素行为一致,随风化而淋失迁出。  相似文献   

5.
徐则民  黄润秋 《中国地质》2013,40(4):1298-1306
岩石风化过程中的元素活动性评价除应考虑该元素在风化产物中残留与淋失状况及在淋滤液(地下水及室内浸泡液等)中的浓度外,还应考虑其在母岩中的相对含量.峨眉山玄武岩斜坡地下水及室内浸泡液中各元素原子个数比值与母岩中对应比值之间均存在显著差异,其造岩矿物的非全等溶解特征显著.综合考虑风化过程中的岩石成分变化、斜坡地下水及室内浸泡液化学成分确定的峨眉山玄武岩风化过程中的元素活动性顺序为Ca>Na>Mg≥Si>K>Fe.活动性强或惰性程度高、对风化程度变化响应敏感应成为岩石风化程度指示性元素的选择标准,Ca和Fe应成为峨眉山玄武岩风化程度评价的首选元素.  相似文献   

6.
黑色页岩化学风化程度指标研究   总被引:5,自引:0,他引:5  
黑色页岩是一套化学组成变化大、成份分布极不均一的岩石。建立在化学组成相对均一的岩浆岩风化基础之上的化学风化指数如CIA(MIA)、CIW、CIX、PIA、STI、R、WIP、V、W等,因不能较好地把母岩化学组成变化与风化反应引起的化学变化区分开来,用于厘定黑色页岩的风化程度时,存在灵敏度低、与实际风化程度不相符等问题。故需要建立新的风化指数来厘定黑色页岩的风化程度。本文以湘中地区下寒武统新鲜和风化黑色页岩的主量元素分析为基础,利用单因素方差分析和多变量判别分析等方法,确定引起新鲜和风化黑色页岩化学组成差别的关键化学组分,并甄别其影响程度。建立影响黑色页岩风化程度的主量元素判别函数,进而构建厘定黑色页岩风化程度的化学风化指数。研究表明,引起新鲜和风化黑色页岩化学组成差别的主量元素,其影响程度依TiO_2Al_2O_3Fe_2O_3LOIMnOCaOSiO_2MgOK_2ONa_2OP_2O_5顺序而降低。以此为基础,构建厘定黑色页岩风化程度的化学风化指数为:WB=28.8×ln(SiO_2)+16.67×ln(TiO_2)+10.52×ln(Al_2O_3)+5.62×ln(Fe_2O_3)-2.01×ln(MgO)+4.10×ln(CaO)-4.24×ln(K_2O)-5.06×ln(Na_2O)+5.07×ln(LOI)-158.13。该风化指数(WB)能克服现有各风化指数的不足,适合用于厘定黑色页岩风化程度。  相似文献   

7.
丰宁黄土-古土壤剖面常量元素地球化学特征   总被引:1,自引:0,他引:1       下载免费PDF全文
丰宁滦河上游的河谷地带有多处黄土堆积,由于该地区黄土分布零星、厚度较小,在以往的研究中却很少引起人们的关注,然而该地区黄土堆积是河北坝上地区环境演化和气候变化的重要地质记录.为了探讨该地区黄土的成因、物源以及化学风化强度,选取代表性的黄土-古土壤剖面77个样品进行了常量元素分析,并与已知典型风成堆积物的地球化学元素特征进行对比.结果表明:(1) 丰宁剖面的主要常量元素(SiO2、Al2O3和Fe2O3)之和以及UCC(Upper Continental Crust)标准化曲线均与典型风成堆积物具有较好的相似性, 表明丰宁黄土和古土壤为风成成因;(2) 丰宁黄土处于初等化学风化阶段,古土壤则进入了中等化学风化阶段.与典型风成堆积物相比,化学风化强度序列为:宣城风成红土>>西峰红黏土、镇江下蜀土>丰宁古土壤、洛川古土壤>洛川黄土>丰宁黄土;(3) 常量元素迁移特征表明丰宁黄土和古土壤的化学风化已完成了早期去Na、Ca阶段,并进入到了中期去K阶段;(4) 丰宁黄土、古土壤的K2O/Al2O3和Fe2O3/Al2O3比值与洛川黄土、洛川古土壤、镇江下蜀土、西峰红黏土较为接近,表明这些风成堆积物可能具有相似的源区.而TiO2/Al2O3比值小于其他风成堆积物, 指示丰宁剖面具有其他物源.   相似文献   

8.
本文分析扬子地台西缘黑色页岩土壤(BSS)及其成土新鲜黑色页岩(FB)的主、微量元素的地球化学特征,探讨黑色页岩土壤成土地球化学作用机制。结果表明,黑色页岩土壤明显亏损MgO、CaO、Na2O、P2O5和LOI(有机质),而富集Al2O3和Fe2O3等主量组分;且明显亏损Ba、V、Ni、Cu、Zn和Sr等微量元素,但其他微量元素则不然。与成土母岩相比,黑色页岩土壤的化学组成相对均一。主量组分对黑色页岩与黑色页岩土壤之间化学组成有不同的影响,这种影响与CaO、Na2O和MgO等碱质组分、LOI所代表的有机质等的淋滤释出,及Fe2O3和Al2O3等氧化物的次生富集有关,其影响程度顺序为:CaO>Na2O>LOI>MgO>Al2O3>Fe2O3>MnO>K2O>SiO2>P2O5。推断黑色页岩风化-成土过程中有机质、黄铁矿、方解石、钠长石、斜绿泥石等不稳定矿物的化学蚀变分解和长石等硅酸盐矿物的水解导致CaO、LOI、Na2O、MgO、K2O和SiO2等主量组分,以及V、Cr、Ni、Cu、Zn、Ge、Ba、Sr等微量元素的淋滤释出;而黏土矿物、铁-锰氧化物等次生矿物的次生富集,导致Fe2O3、MnO和Al2O3等主量组分,以及Pb、Cs、Co、Th、Sc、Ga、Rb、REE等微量元素在土壤中形成次生富集。故而黑色页岩可为环境重金属污染源,而黑色页岩土壤本身也可存在重金属污染。  相似文献   

9.
汉江上游庹家湾剖面化学风化特征及其意义   总被引:1,自引:0,他引:1  
通过对庹家湾黄土剖面元素的分析,揭示汉江上游地区黄土中常量元素的地球化学行为及对气候变化的响应。用X-Ray荧光光谱仪、MS-2型磁化率仪分别测量了庹家湾剖面元素含量及磁化率值,实验结果显示:庹家湾剖面的风成黄土化学成分以SiO2、Al2O3和Fe2O3为主,三者含量分别为355.83 g/kg、79.62 g/kg、62.64 g/kg;以Ti为参比,Na、Ca、Mg、Si、K表现为迁移淋失,Fe、Al元素相对富集,元素的活动性及其迁移序列为Na > Ca > Mg > Si > K > Al > Fe;Fe和Al元素含量曲线及CIA曲线在228~260 cm(L1~S1)和294~370 cm(L1~S2)深度处出现明显的峰值,并与磁化率曲线呈现出高度一致性,指示该层化学风化程度明显高于典型黄土,接近于古土壤(S0),OSL年龄在27.5~21.5 ka B.P.之间。庹家湾剖面常量元素在剖面的变化,表明在汉江上游地区晚更新世末期的气候并非是持续干燥寒冷,而是存在一定的气候波动,在27.5~21.5 ka B.P.期间风化成壤作用较为明显,气候相对温暖湿润。  相似文献   

10.
铂族元素的表生地球化学研究进展   总被引:2,自引:0,他引:2  
基性-超基性岩及黑色页岩等风化过程中铂族元素发生了活化和迁移。铂族元素在岩体附近土壤、植物和水体等表生介质中的迁移富集特征可以用来寻找岩浆型铂族元素矿床。黑色页岩风化过程中,Os的表生迁移对海洋^187Os/^188Os值上升有重要意义。此外,作为重金属元素,机动车铂族元素催化剂在环境中的释放,也会带来潜在的生态环境和人体健康问题。  相似文献   

11.
In this study, the mobilization, redistribution, and fractionation of trace and rare earth elements (REE) during chemical weathering in mid-ridge (A), near mountaintop (B), and valley (C) profiles (weak, weak to moderate, and moderate to intense chemical weathering stage, respectively), are characterized. Among the trace elements, U and V were depleted in the regolith in all three profiles, Sr, Nb, Ta, Zr, and Hf displayed slight gains or losses, and Th, Rb, Cs, and Sc remained immobile. Mn, Ba, Zn, Cu, and Cr were enriched at the regolith in profiles A and B, but depleted in profile C. Mn, Pb, and Co were also depleted in the saprock and fractured shale zones in profiles A and B and enriched in profile C. REEs were enriched in the regolith and depleted at the saprock zone in profiles A and B and depleted along profile C. Mobility of trace and REEs increased with increasing weathering intensity. Normalized REE patterns based on the parent shale revealed light REE (LREE) enrichment, middle REE (MREE), and heavy REE (HREE) depletion patterns. LREEs were less mobile compared with MREEs and HREEs, and this differentiation increased with increasing weathering degree. Positive Ce anomalies were higher in profile C than in profiles A and B. The Ce fractionated from other REE showed that Ce changed from trivalent to tetravalent (as CeO2) under oxidizing conditions. Minimal REE fractionation was observed in the saprock zone in profiles A and B. In contrast, more intense weathering in profile C resulted in preferential retention of LREE (especially Ce), leading to considerable LREE/MREE and LREE/HREE fractionation. (La/Yb)N and (La/Sm)N ratios displayed maximum values in the saprock zone within low pH values. Findings demonstrate that acidic solutions can mobilize REEs and result in leaching of REEs out of the highly acidic portions of the saprock material and transport downward into fractured shale. The overall behavior of elements in the three profiles suggests that solution pH, as well as the presence of primary and secondary minerals, play important roles in the mobilization and redistribution of trace elements and REEs during black shale chemical weathering.  相似文献   

12.
对甘肃天水地区师家崖典型黄土-古土壤剖面化学元素的测定和分析结果表明:该剖面中氧化物SiO2、Fe2O3、K2O和Al2O3含量变化趋势基本一致,均在古土壤层(S0和S0)中较高,黄土层(L0、L1和Lt)中较低;而氧化物CaO和Na2O变化呈相反趋势;根据钙镁比(Ca/Mg)、钾钠比(K/Na)、淋溶系数、退碱系数、残积系数和化学蚀变系数(CIA)等化学参数的统计分析结果,揭示了古土壤层形成时期风化成壤作用强烈,黄土层堆积时期风化成壤作用微弱的规律;以Ti为参比,Si、Fe、K和Al相对富集,而Na和Ca发生不同程度的淋溶,总体处于脱Ca、Na的低等化学风化阶段;SJY剖面全新世以来的沉积环境分为化学风化较弱期、波动增强期和减弱期,记录了该区域气候经历了早全新世温凉、中全新世温暖湿润但不稳定,晚全新世凉干的演变过程,对天水地区的古气候变化具有重要意义。  相似文献   

13.
The northwestern Guizhou in the Yangtze Craton of south China has a tremendous potential of shale gas resource. In this paper, we present results from major and trace elements, total organic carbon, mineralogical composition analysis and petrophysical parameters to characterise shale weathering features. Further, the differences of black shale between underground and outcrops have also been presented to examine the changes of black shale after weathering. Our results show that the trace elements of shale have varying degrees of loss in the weathering leaching process, both in Niutitang shale and Longmaxi shale, the loss of B, V, Ni, Cu, Zn and Ba is obvious, but the element migration quantity in the former is greater than in the latter. Decomposition of minerals such as pyrite, feldspar and calcite result in the leaching of Na, Ca, Mg and Fe. The loss rate of total organic carbon (TOC) in black shales ranges from 18% to 70% with an average of 43%; moreover, the loss of organic carbon in samples with high TOC content is larger than in those samples with low TOC content. Results following the testing of porosity and permeability show that porosity increases significantly after weathering but permeability changes little. Furthermore, the increment of porosity is greater in the Niutitang shale (with more sulphide minerals) than in the Longmaxi shale, suggesting that the oxidation of sulphide minerals may have led to the formation of an acidic environment, causing the other minerals in the black shale to weather more quickly, thus resulting in increased porosity. The content of clay minerals in the core samples is slightly lesser than the outcrop samples, but the TOC content in the core samples is greater and has a larger specific surface area. This suggest that the TOC content played a decisive role on the specific surface area of shale. In addition, changes in the black shale caused by the weathering process mainly depend on the mineral composition and the TOC content in shale. In this study, we try to establish relations between outcrop samples and core samples, in order to better understand the underground characteristics of shale reservoir.  相似文献   

14.
Different from previous studies on effect of weathering upon geochemical variation along a single weathered profile, this paper provides a new methodology validated by comparing a weathered outcrop samples and their stratigraphic counterpart un-weathered core samples in a nearby shallow borehole. This outcrop and borehole penetrated the Ordovician-Silurian Wufeng–Longmaxi shales, located in the same anticline structure in the northern part of Guizhou Province, Southern China. The mineral composition, major, trace and rare earth elements (REEs) composition and Rock-Eval parameters of outcrop and core samples were analyzed and compared. Organic matter (OM) was observed in the microscope and extracted for elements analysis. The results show that short-term weathering still has significant influence on OM, mineral and elemental composition of black shales. The elements composition shows the outcrop profile was moderately weathered. The REEs compositions do not alter much during weathering process and the REEs composition and their relative ratios still are valid for rock origin determination. The OM, mainly composed by graptolite and bitumen, even entering the highly-over thermal maturity, is still sensitive to the weathering with a systematic loss 30–50% of TOC along the outcrop profile, which suggests that the OM consumption is predominantly controlled by weathering duration and the distance from the weathering surface. In turn, OM has significant influence on the trace elements transportation behavior during weathering. Some trace elements associated with the OM such as V, Cr, Th, U, Ni and Co, change significantly in their absolute concentration during weathering, but their relative ratios do not necessarily change too much and might be still reliable proxies for paleo-environmental determination. The mobility of shale minerals during weathering is in the following order: plagioclase?>?potassium feldspar and dolomite >pyrite and OM. Short-term weathering can also result in considerable transportation of elements and significant variation of minerals content in black shale, which may pose potentially high environmental and engineering risk in the regions rich in black shale.  相似文献   

15.
The early Jurassic black shales are the most important source rocks in the Qiangtang Basin, Tibet. These black shales may provide a useful example for understanding the sedimentary conditions during the early Jurassic in the eastern Tethys. Thirty‐two black‐shale samples were collected from the Qiangtang Basin to reconstruct the depositional environments during the early Jurassic in the eastern Tethys. The palaeoclimate index Σ(Fe + Mn + Cr + Ni + V + Co)/Σ(Ca + Mg + Sr + Ba + K + Na) varies between 0.58 and 1.14, together with low Sr/Ba (0.20–0.60) and Sr/Cu (1.68–7.88) ratios, indicating a warm humid to semi‐humid climatic condition during black‐shale deposition. The early Jurassic black shales exhibit slight Ce anomalies (0.89–0.94) and Mn enrichment (EF = 1.2), suggesting a slightly oxic depositional environment. The conditions of the sedimentary water system during black‐shale deposition were apparently brackish as evidenced by middle B/Ga (3.96–5.73) and Th/U (3.96–6.51) ratios. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   

16.
黑色页岩的资源功能和环境效应   总被引:15,自引:2,他引:13  
利用ICP—MS等分析技术对典型黑色页岩的微量元素及P、S等组分进行了分析,探讨了黑色页岩的化学特征、风化机制和微量元素富集特征,阐明了黑色页岩的资源功能和环境效应。结果表明,黑色页岩不但富含多种矿产资源,产有大型、超大型多金属矿床,而且可用作复合化肥以改良土壤。同时,黑色页岩因风化分解释放CO2、产生酸性矿排水、释出重金属元素等而可能对环境产生严重影响,引起环境问题。开发利用黑色页岩不但要充分认识其资源功能特征,拓宽其应用途径,而且要特别注意其可能引发的环境问题。  相似文献   

17.
Re-Os analyses were performed on five soil profiles developed on silicate lithologies in the Narayani drainage basin of the Himalayas, as well as on several altered black shales and associated alteration phases. The results indicate that all of these samples have lost large amounts of Re. This Re loss approached 100% in the black shale-derived soils, which also most probably lost substantial quantities of Os. The near constancy of Os and Re concentrations with depth indicates that this loss occurred quite early in the alteration process, rather than progressively during the course of soil development. A slight decrease in 187Os/188Os was observed toward the surface of the two black shale soil profiles, possibly indicating a minor preferential mobility of radiogenic 187Os for this lithology. In the black shale-derived saprolite and soils, the loss of Re and Os was related to the loss of organic carbon. The importance of this phase is underscored by the fact that organic material separated from a black shale sample accounted for nearly all of the Os contained in the whole rock. Analysis of alteration phases from the surface of a weathered black shale showed that Os liberated during alteration was partially reprecipitated in Fe oxides, with Os isotopic compositions very similar to that of the original rock, whereas Re was removed with the fluid phase.These results demonstrate the disproportionately large role that black shale weathering may play in determining the Re and Os contents of continental runoff and, thus, ultimately of seawater, but they also emphasize the possible complexity of this process. The data suggest that a large fraction of the Os contained in black shales is released during chemical alteration, which is apparently not the case for most other silicate rocks. Therefore, the potential contribution of black shales to the dissolved Os budget of runoff and river water may be even greater than that expected from the high Os concentrations of these rocks. The extent to which this Os will affect the seawater Os composition depends on how efficiently it is recaptured by secondary phases such as Fe-Mn oxides in situ or during transport. These results also underscore the high mobility of Re with respect to Os at every stage in the erosional process, thus explaining the order of magnitude increase in Re/Os ratio from the black shale source rocks to seawater.  相似文献   

18.
华北北部洪水庄组黑色页岩是中元古代的富有机质沉积,它可能记录了当时重要的地球化学信息。通过对洪水庄组页岩中的常量和微量元素特征的分析,研究了洪水庄组的物源及其风化作用。高Th/Sc、Al2O3/TiO2、La/Sc、La/Cr、La/Co、Th/Cr和Th/Co值,低Cr/Zr和TiO2/Zr比值,Euan值、Co/Y Ti/Zr关系和La Th Sc组成表明洪水庄组页岩物源主要为上地壳中的长英质花岗闪长岩。洪水庄组页岩的Al、Ca、Na和K组成表明其具有较高的化学蚀变指数(CIA),同时,元素组成的化学风化作用轨迹反映了洪水庄组页岩受到钾交代作用的影响,可能导致CIA值被低估,其原始CIA值应在90以上。高的原始CIA、化学风化指数(CIW)和斜长石蚀变指数(PIA)表明洪水庄组物源区经历了强烈的化学风化作用。化学风化作用强度以及微量元素组成特征揭示了中元古代洪水庄组沉积时期可能处于温暖潮湿的气候条件,这与中元古代时期大气高CO2浓度以及华北板块古大陆当时位于低纬度地区重建的结果不谋而合。  相似文献   

19.
黔北下寒武统黑色岩系的沉积环境与地球化学响应   总被引:2,自引:0,他引:2  
下寒武统黑色岩系在我国华北、华南及塔里木盆地等广泛发育,但富有机质泥页岩的分布特征及其控制因素未有定论.本文对黔北地区下寒武统牛蹄塘组(及同时期地层)不同沉积相带典型剖面中的富有机质泥页岩及其上下层位进行了地球化学分析,识别出寒武纪早期不同沉积相带氧化还原环境的明显差异.台内凹陷相主要岩性为黑色页岩,底部为不等厚的薄层...  相似文献   

20.
贵州遵义和湖南张家界黑色岩系中的矿物组合非常复杂,用X射线衍射仪分析并结合前人的研究成果,显示其中的硫化物矿物、粘土矿物和有机质含量较高;经破碎和分选流程对样品进行处理后,用ICP-MS方法测定了黑色页岩和分选后样品中的铂族元素含量,对贵州遵义和湖南张家界黑色岩系中的铂族元素赋存特征进行研究,结果表明:贵州遵义和湖南张家界的黑色页岩系中赋存高含量的铂族元素,且含量表现较高的稳定性;低温氧化条件下,铂族元素的化学活动性足以使之以相当规模活化、迁移并在还原条件下沉淀富集;经强风化淋滤作用,富含碳硫钼矿黑色页岩中铂族各元素含量都有不同程度的降低;绝大部分的铂族元素富集于黑色页岩的有机质和黄铁矿中;铂族元素的分布模式具规律性,铂族元素的明显分异说明此黑色页岩的分布模式不具有地外物质的特征。  相似文献   

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