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21.
Two anhydrous equilibria can be written among the components of stilpnomelane, chlorite, white mica and quartz, namely 89 daphnite+131 Fe-celadonite+190 quartz=96 stilpnomelane+71 muscovite, and amesite+Mg-celadonite=muscovite+clinochlore. We assume that the free energy change of reaction, ΔGGoRT lnaij, is approximated by ΔG=A?BT +C(P?1)+ΣRT lnaij, where ΔGo is the free energy change of the end-member components at temperature T and pressure P, ai is the activity of component i whose coefficient in the equilibrium is j, and A, B and C are constants to be determined. Values of C can be approximated by the change in volume on reaction, namely C=406.517 J/bar for the first reaction and C=0.613 J/bar for the second reaction. Constants A and B were determined by using six occurrences of the assemblage stilpnomelane–chlorite–white mica for which PT have been otherwise estimated. Using solution models from the literature, linear regression gives for the first equation A=?6118.269 kJ, B=?4584.09 J/K, and for the second equation A=19.397 kJ, B=66.72 J/K. These values predict PT within 0.5 kbar and 25 K for all occurrences, and appear reasonably robust relative to probable analytical errors. PT are determined by intersection of the curves generated by given compositions in PT space. Fine-grained and/or zoned chlorite and white mica make application of the geothermobarometer difficult in some instances, but our work in the Bathurst region of New Brunswick suggests that, with patience and care, useful analyses can be obtained, and the database for the geothermobarometer greatly expanded.  相似文献   
22.
In this study, we applied chemical geothermometers to the estimation of formation temperatures of chlorites from various types of hydrothermally altered rocks in the Toyoha geothermal field, using core samples from six drill holes (TH-2 to TH-7) together with wasted ore samples from Toyoha vein-type ore deposit. Based on the preliminary examination of mineral assemblages by X-ray powder diffraction and optical microscopy, hydrothermal alteration observed through the drill holes was classified into four types of alteration zones: propylitic, mixed-layer minerals, kaolin minerals, and ore mineralized zones. The mineral assemblage of the ore mineralized zone observed through TH-2, TH-4, and TH-6 is similar to those of Toyoha ore veins reported previously. The Fe3+/ΣFe ratios of chlorites were determined by X-ray photoelectron spectroscopy (XPS), in addition to the usual microprobe analyses. The ratios ranged from 0.20–0.26 for chlorites from the propylitic alteration zone and from 0.13 to 0.17 for those from the ore mineralized zone associated with sulfide minerals. After correcting the Fe3+ contents in the octahedral sites of chlorite structures, we obtained acceptable temperatures of the chlorite formation by application of geothermometers, for instance, a similar range of 150–300°C for chlorites from either the propylitic zone or the ore mineralized zone developed through TH-2, TH-4, and TH-6. Chlorites from the ore mineralized zone proximal to the Toyoha deposit are characterized by high Fe and Mn contents compared to the propylitic chlorites, which is similar to the Toyoha vein-filling chlorites; the formation temperatures were close to both the homogenization temperatures of fluid inclusions and the present subsurface temperatures measured through drill holes. Chlorites from the Toyoha ore veins, however, gave slightly higher formation temperatures (180–350°C) than those of chlorites from the ore mineralized zone in the drill cores. This suggests that several types of hydrothermal alteration occurred at different stages in the Toyoha geothermal field and the composition of product chlorite was controlled not only by the temperature but also the composition of fluid related to the formation. Reliable estimation of temperature for the chlorite formation provides basic information on evaluating correctly other physicochemical conditions prevalent at the formation.  相似文献   
23.
绿泥石化是龙首山铀矿床重要的蚀变类型之一。通过对龙首山碱交代型铀矿床的绿泥石等蚀变矿物进行的岩相学和电子探针成分分析研究,确定了龙首山地区绿泥石的化学类型主要为铁镁绿泥石,少数为蠕绿泥石。依据绿泥石成因或与共生矿物的关系,绿泥石可被划分为黑云母蚀变型、长石蚀变型、沥青铀矿共生型和副矿物共生型等4种类型。泥质岩是本区绿泥石的主要原岩类型,是多期次地质作用形成的产物。研究认为,龙首山地区碱交代型铀矿床的成矿过程可表述为矿前期在相对较高温度的热液流体作用下,黑云母发生绿泥石化蚀变,随后热液继续交代长石,形成长石蚀变型绿泥石,进而在成矿期热液温度相对较低的条件下形成与沥青铀矿紧密共生的绿泥石。绿泥石在铀成矿过程中不但活化了花岗岩里的铀,而且还给铀矿化供应了相对良好的积淀环境。  相似文献   
24.
新寮岽铜多金属矿是近年来在粤东地区新发现的一个铜矿床,在该矿区绿泥石化十分强烈,并与铜矿化关系密切。按照矿物共生组合关系,矿区绿泥石可分为与硫化物共(伴)生及未与硫化物共(伴)生呈单独产出两类,两类绿泥石主要呈叶片状、纤维状、蠕虫集合体状等形态产出。本文在岩矿鉴定的基础上,以矿区绿泥石为研究对象,利用电子探针技术,对其微区化学成分进行了研究。结果表明:随着孔深的增加,与矿化有关绿泥石的Si和Mg元素含量逐渐升高,Al、Fe、Mn元素含量逐渐降低,而与矿化无关的绿泥石成分变化规律不明显。两类绿泥石主要为富铁种属的蠕绿泥石、铁镁绿泥石;绿泥石为泥质岩或者铁镁质岩受热液交代蚀变的产物,绿泥石结构的离子置换主要体现为Fe对Mg的置换,反映其可能形成于富铁及相对酸性环境;由绿泥石地质温度计估算得出两类绿泥石形成温度为166.32~245.62℃,平均为219.15℃,且与硫化物共(伴)生的绿泥石的形成温度相对较高,但两者均属中-低温范围。绿泥石的形成机制主要表现为溶蚀-结晶和溶蚀-迁移-沉淀结晶2种。  相似文献   
25.
在哈密黄山铜镍矿区,采用PIMA(便携式短波红外矿物分析仪)进行野外光谱测试,用新引进的TSG(光谱地质专家)软件进行了矿物种类及相对含量识别、光谱处理分析,为蚀变矿物光谱分析起到了示范作用。详细论述了几类典型蚀变矿物的光谱特征;对绿泥石特征光谱吸收强度D(Fe-OH)、D(Mg-OH)与矿物成分的关系进行了探讨。结果表明,绿泥石Fe-OH和Mg-OH吸收强度比值可以大体上代替Fe2+/Mg2+比值,D[Mg-OH)/(Fe-OH)+(Mg-OH)]值绝大部分在0.4~0.8之间。用HyMap数据做地质信息半定量反演,准确反映了各岩相主要金属元素含量的变化。研究结果对高光谱技术识别矿物种类、反演岩矿成分具有重要意义。  相似文献   
26.
Abstract

The characteristics and distribution of clay minerals and their effects on reservoir quality in the Huagang sandstones in the Xihu Sag, East China Sea Basin were studied by using X-ray diffraction, casting thin-sections, scanning electron microscopy, electron microprobe analysis, fluid inclusion analysis, constant-rate mercury injection and nuclear magnetic resonance. Clay minerals consist of kaolinite, chlorite, illite and illite–smectite mixed layer (I/S); kaolinite forms from dissolved feldspars, chlorite occurs as clay coatings that are transformed from clay precursors owing to the flocculation of suspended detrital clays or the crystallisation of pore fluids, and illite forms from the illitisation of detrital smectite, authigenic kaolinite and K-feldspars. Clay distribution is controlled by sedimentary environments, burial history and lithologies. Typical reservoirs in the western sub-sag are thin and developed in braided river facies at relatively shallow burial depths with clays dominated by kaolinite. However, typical reservoirs in the central inversion tectonic zone are thicker and developed in a braided delta front facies at deeper burial depths with clays mainly consisting of chlorite, illite and I/S. High-quality reservoirs are characterised by coarse granularity, high quartz content and low clay content with widespread development of chlorite coatings that inhibit quartz cements at low temperatures. At higher temperatures, the high-quality reservoirs develop more pores providing growth space for quartz cements and result in the coexistence of chlorite coatings and quartz cements. The high-quality reservoirs are controlled by their lithological characteristics rather than chlorite coatings. Illite and I/S clays create severe damage to reservoirs by reducing the size and connectivity of pore-throats.  相似文献   
27.
本文简略回顾了堇青石-石榴石-矽线石-石英地质温压计的研究历史,并介绍由Aranovich等人完成的最新实验研究。以内蒙古南部贺兰山群的麻粒岩相矽线石榴堇青片麻岩的温压计算为例,用Aranovich等人实验标定的温压计计算结果与石榴石-堇青石Fe-Mg交换反应温度计和石榴石-斜长石-矽线石-石英压力计的计算结果相当吻合;而应用含有假定的热力学参数的哈奇森的温压计与其它温压计计算结果有较大差别,温度明显偏低,与岩石形成于麻粒岩相变质条件这一地质事实不符。  相似文献   
28.
湘南铜山岭矽卡岩铜铅锌矿床产于铜山岭岩体北东缘隐伏接触带及其外围地层中,在成因上与铜山岭花岗闪长斑岩密切相关。铜山岭铜铅锌矿床具有独特的成矿分带,从岩体向外依次发育近端内矽卡岩、近端外矽卡岩、硫化物-石英脉和远端矽卡岩矿体。根据穿切关系、交代结构和矿物组合等地质特征可以把铜山岭铜铅锌矿床划分为4个矿化蚀变阶段,从早到晚依次为进变质矽卡岩、退变质矽卡岩、石英-硫化物和碳酸盐阶段,其中石英-硫化物阶段为主成矿阶段。闪锌矿成分压力计研究表明,近端内矽卡岩型团块状硫化物矿石中闪锌矿的形成压力为(3.1±1.0)×108Pa,对应的成矿深度为6~12 km,相当于中—上地壳水平,说明铜山岭铜铅锌矿床形成于较大深度。近端内矽卡岩、近端外矽卡岩和远端矽卡岩中都存在两阶段绿泥石。绿泥石成分温度计研究表明,3类矽卡岩中退变质矽卡岩阶段绿泥石的形成温度分别为345~388℃、296~376℃和296~338℃,代表各类矽卡岩形成温度的下限;石英-硫化物阶段绿泥石的形成温度分别为270~318℃、209~238℃和200~223℃,代表各类矽卡岩矿体的成矿温度。3类矽卡岩的绿泥石温度表现出逐步降低的趋势,指...  相似文献   
29.
许赛华  任涛  白鑫  叶勤富  韩彬 《矿床地质》2022,41(4):741-750
都龙Sn-Zn多金属矿床位于滇东南老君山锡锌钨多金属成矿区南部,是中国3大锡石硫化物矿床之一。该矿床发育闪锌矿-黄铜矿-磁黄铁矿密切共生结构,即硫化物交生结构。文章利用电子探针和LA-MC-ICP-MS对具有交生结构的闪锌矿-黄铜矿-磁黄铁矿和毒砂进行了微区主量元素和硫同位素测试,以期明确其成因及硫的来源。主量元素测试结果显示,闪锌矿中的w(Zn)为52.23%~57.22%,w(S)为33.06%~36.10%,w(Fe)为9.92%~12.24%,w(Cu)为0.11%~0.30%;黄铜矿中的w(Cu)为33.95%~35.08%,w(S)为33.49%~35.27%,w(Fe)为30.74%~31.41%,w(Zn)为0.04%~1.50%;磁黄铁矿中的w(Fe)为49.30%~51.94%,w(S)为38.36%~39.69%,w(Zn)为9.35%~11.01%,w(Cu)为0.05%~0.15%。磁黄铁矿和黄铜矿包裹体边部和核部成分均一,且投影点全部落在固溶体出溶区域,说明都龙矿床交生闪锌矿-黄铜矿-磁黄铁矿是固溶体分离成因。原位S同位素分析结果显示,闪锌矿的δ34S为0.9‰~3.2‰,磁黄铁矿的δ34S为0.6‰~2.1‰,毒砂的δ34S为2.9‰~4.2‰,黄铜矿的δ34S为0.6‰~2.8‰,均显示为岩浆来源特征。主量元素温度计估算的闪锌矿-黄铜矿的形成温度介于285~394℃,指示该矿床主要硫化物形成于中高温阶段。  相似文献   
30.
曲希玉  刘珍  高媛  陈修  于强 《沉积学报》2015,33(4):786-794
以大牛地气田含绿泥石胶结物样品为研究对象,结合国内外研究现状,研究绿泥石包壳的成因及其对储层物性的影响,并探讨其环境指示意义.大牛地气田的绿泥石包壳形成于成岩作用早期,厚10~20 μm,由原生粒间孔的边缘向中心晶形渐好,颗粒渐大.据铁质来源绿泥石包壳可分为原地和异地成因,原地成因由先体黏土矿物和岩屑溶解未排出的富铁流体生成,一般以混层黏土和晶体较小的包壳形式存在;异地成因是富铁矿物及岩屑溶蚀、溶解形成的富铁流体通过河流异地絮凝沉淀生成,结晶充分、晶形好.绿泥石包壳的储层保护机理为:①抑制石英次生加大;②增加矿物颗粒间抗压实强度,抑制压溶作用;③抑制碳酸盐胶结,促进溶蚀作用.大牛地气田的绿泥石包壳主要发育于盒一段(63%)和山二段,当其含量在15%以下时,孔隙度随绿泥石含量的增高呈线性递增.绿泥石包壳可作为三角洲(辫状河三角洲)前缘水下分流河道(水下辫状河道)等强水动力条件的微观相标志.  相似文献   
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