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81.
李昭升 《福建地质》2004,23(2):82-88
在研究多金属硫化物矿床的特点,分析以往矿床勘查中确定矿石密度值难点的基础上,通过建立矿石密度值与矿石各组分的多元线性回归数学模型,预测矿床的矿石密度值。  相似文献   
82.
峨口铁矿中硫化物的特征与成因研究   总被引:1,自引:0,他引:1  
徐勇  乔葆 《世界地质》1996,15(3):37-40
硫是铁矿中的有害元素。峨口铁矿中硫主要以磁黄铁矿和黄铁矿两种形式存在。本区硫化物有三个形成期次。第五期为变质作用形成的星点状硫化物;第二期为变质后热液阶段形成的脉状硫化物;第三期为后期热液阶段形成的裂隙充填式硫化物。  相似文献   
83.
渤海、黄海是高产二甲基硫(Dimethyl Sulfide,DMS)的大陆架海区.该海区DMS的现场调查研究有助于准确评估海洋DMS释放量及其对全球气候变化的负反馈作用.目前,无论是基于模型还是直接测量法的通量估算均以表层海水或低层大气DMS浓度为基础,因此,先进的检测技术对其通量估算的准确度具有决定性作用.气相色谱法...  相似文献   
84.
新疆喀拉通克铜镍硫化物矿床成矿岩浆作用过程   总被引:5,自引:2,他引:3  
喀拉通克铜镍硫化物矿床3个主要含矿镁铁质岩体的主量元素、微量元素和铂族元素组成分析及母岩浆组成估算结果表明:3个岩体中不同类型岩石的主要氧化物含量的变化具玄武质岩浆结晶分异的特征;在MgO含量为10%~15%区间,SiO2含量迅速增高;微量元素和稀土元素原始地幔标准化配分模式相似,具Nb和Ta亏损,K、Sr富集的特征.与1号和2号岩体相比,3号岩体中大离子亲石元素及轻稀土元素相对富集,(La/Yb)N介于6.8~9.2之间,δEu显示轻微负异常,在460 m深度表现出Cu-Ni等成矿元素与SiO2含量同时剧变的特征,铂族元素配分模式与2号岩体相似.上述结果显示,3个岩体可能是同源岩浆不同期次的产物,原始岩浆为高镁玄武岩浆.成矿岩浆演化过程中经历的岩浆分离结晶作用和富硅地壳组分混染可能是成矿岩浆硫饱和及硫化物熔离的主要诱因.  相似文献   
85.
Abstract: The Shijuligou deposit was separated by an arcuate ductile shear zone cross the center of the deposit region, resulting in the difference between the southern and northern ore bodies. The lead (Pb) isotopic data of ores of the Shijuligou copper deposit have averages of 206Pb/204Pb, 207Pb/204Pb, and 208Pb/204Pb in 17.634, 15.444, and 37.312, respectively. It has been shown that ore-forming metals originated from intrusive and extrusive rocks in the upper part of ophiolites. The sulfur isotopic data of pyrite and chalcopyrite in the northern part change from +7.61‰ to +8.09‰ and +4.95‰ to +8.88‰ in the southern part. Isotopes of δ18O in the Shijuligou copper deposit are between +11.1‰ and +18.6‰, with the calculated δ18OH2O at +0.65‰. It is suggested that the mineralized fluid is a mixture of magma fluid, meteorological water, and seawater through circulating and leaching metals from the volcanic rocks. The zircon uranium-lead (U–Pb) dating of gabbro is 457.9±1.2 Ma, and the lower crossing age of the discordant and concordia curves of pyroxene spilite of zircon is 454±15 Ma. It is indicated that the Shijuligou deposit formed in a new ocean crust (ophiolite) of the back-arc basin in the late Ordovician. Mineralization should occur in the intermittence period after strong volcanic activity, and the age should be the late Ordovician. Moreover, the mineralization of ophiolite-hosted massive sulfide deposits in the ancient orogenic belt of the late Ordovician in the northern Qilian Mountains was controlled by the primary fault/fracture, with the forming of a metallogenic hydrothermal system by a mixture of volcanic magma fluid and seawater, which circularly leached the metallogenic metals from the volcanic rocks, resulting in their accumulation. The ore bodies were transformed with morphology and metallogenic elements. Jasperoid is an important sign for prospecting such deposits. There were many island arcs in the continent of China. This study provides evidence for understanding and exploration of ophiolite-hosted massive sulfide deposits in western China, especially in the area of northern Qilian Mountains.  相似文献   
86.
Abstract: The Jinchuan deposit is hosted by the olivine-rich ultramafic rock body, which is the third-largest magmatic sulfide Ni–Cu deposit in the world currently being exploited. Seeking new relaying resources in the deep and the border of the deposit becomes more and more important. The ore body, ore and geochemistry characteristics of the concealed Cu-rich ore body are researched. Through spatial analysis and comparison with the neighboring II1 main ore body, the mineralization rule of the concealed Cu-rich ore body is summed up. It is also implied that Cu-rich magma may exist between Ni-rich magma and ore pulp during liquation differentiation in deep-stage chambers, which derives from deep-mantle Hi–MgO basalt magma. It is concluded that the type of ore body has features of both magmatic liquation and late reconstruction action. It has experienced three stages: deep liquation and pulsatory injection of the Cu- and PPGE-rich magma, concentration of tectonic activation, and the later magma hydrothermal superimposition. In addition, the Pb and S isotopes indicate the magma of I6 concealed Cu-rich ore body originates predominantly from mantle; however, it is interfused by minute crust material. Finally, it is inferred that the genesis of the Cu–Ni sulfide deposit is complex and diverse, and the prospect of seeking new deep ore bodies within similar deposits is promising, especially Cu-rich ore bodies.  相似文献   
87.
There are two types of temporally and spatially associated intrusions within the Emeishan large igneous province (LIP); namely, small uitramafic subvolcanic sills that host magmatic Cu-Ni-Platinum Group Element (PGE)-bearing sulfide deposits and large mafic layered intrusions that host giant Ti-V magnetite deposits in the Panxi region. However, except for their coeval ages, the genetic relations between the ore-bearing intrusions and extrusive rocks are poorly understood. Phase equilibria analysis (Q-PI-OI-Opx-Cpx system) has been carried out to elucidate whether ore-bearing Panzhihua, Xinjie and Limahe intrusions are co-magmatic with the picrites and flood basalts (including high-Ti, low-Ti and alkali basalts), respectively. In this system, the parental magma can be classified as silica-undersaturated olivine basalt and silica-saturated tholeiite. The equivalents of the parental magma of the Xinjie and Limahe peridotites and picrites and iow-Ti basalts are silica-undersaturated, whereas the Limahe gabbro-diorites and high-Ti basalts are silica-saturated. In contrast, the Panzhihua intrusion appears to be alkali character. Phase equilibria relations clearly show that the magmas that formed the Panzhihua intrusion and high-Ti basalts cannot be co-magmatic as there is no way to derive one liquid from another by fractional crystallization. On the other hand, the Panzhihua intrusion appears to be related to Permian alkali intrusions in the region, but does not appear to be related to the alkali basalts recognized in the Longzhoushan lava stratigraphy. Comparably, the Limabe intrusion appears to be a genetic relation to the picrites, whereas the Xinjie intrusion may be genetically related to be low-Ti basaits. Additionally, the gabbro-diorites and peridotites of the Limahe intrusion are not co-magmatic, and the former appears to be derived liquid from high-Ti basalts.  相似文献   
88.
陈喜峰 《矿产与地质》2009,23(4):291-296
狼山-渣尔泰山多金属成矿带位于华北地台北缘西段的中元古代被动陆缘裂陷槽内,其产出的多处大型-超大型铜、铅、锌、铁多金属硫化物矿床的矿床特征具相似性和可对比性。通过分析该成矿带的区域地质背景、含矿建造特征及其产出的典型矿床(东升庙、炭窑口、霍各乞、甲生盘)的矿床地质特征,得出该成矿带内铜铅锌铁多金属硫化物矿床的以下特征:①盆地控矿特征十分明显;②成矿过程中伴有与成矿作用关系密切的同生断裂活动和同沉积期火山活动;③成矿元素具分带性和规律性组合的特征;④各典型矿床具鲜明的“时控”、“层控”和“岩控”特点;⑤成矿作用具有间歇性和多期演化成矿的特征;⑥含矿建造具有典型地球化学剖面结构序列特征;⑦矿体的产状与含矿岩系一致,且相应类型的矿石对应相应的容矿岩性。  相似文献   
89.
胶州湾李村河口沉积物中硫化物形成的控制因素   总被引:1,自引:0,他引:1  
在胶州湾李村河口,对多个短柱状岩芯沉积物中的有机质(有机碳和有机氮)、酸可挥发性硫化物(AVS)、黄铁矿及活性铁等进行了分析。结果表明,样品的有机质含量较高,有机碳含量为0.16%~3.21%,有机氮含量为0.002%-0.2%;6个短柱状样的AVS含量变化较大:198.4—0.4umol/g,平均35.6umol/g;活性铁含量为47.5~169.3umol/g,平均91.4umol/g;黄铁矿含量为14.8~41.0umol/g,平均28.7umol/g。通过计算沉积物中活性铁的黄铁矿化度(DOP)与硫化度(DOS)指标,及分析各参数间相关性,发现以下现象:(1)胶州湾李村河口沉积物中的活性铁被转化为硫化物的程度较高,被转化为黄铁矿的程度较低,沉积物中的黄铁矿得到了较好保存。DOP不适宜用作河口区氧化还原状态的判断指标,DOS对氧化还原状态的响应更加灵敏;(2)距河口较近的区域,受李村河河水的影响较大,易分解有机质供应充足,AVS大量形成,其向黄铁矿的转化并不充分,活性铁成为硫化物形成的控制因素。距河口较远的站位,活性铁含量相对充足,有机质含量相对不足,因此有机质含量成为硫化物形成的控制因素,AVS向黄铁矿的转化比较充分;(3)有机质尤其是易分解有机质含量是李村河口硫化物形成、活性铁富集及其黄铁矿化度的主要控制因素。AVS的形成主要受到有机氮的限制,而黄铁矿的形成主要受到有机碳的限制。因此,河流输入物质对河口区沉积物中C、S和Fe的循环具有显著的影响。  相似文献   
90.
孟洁  翟增秀  刘英会  张君  韩萌 《岩矿测试》2019,38(2):179-185
还原硫化物是一Z类典型的恶臭物质,其特点是活性高、不易储存,因此适宜的储存条件对还原硫化物的准确测定具有重要意义。本文使用气相色谱-质谱联用技术,从气袋材质、还原硫化物初始浓度、还原硫化物性质和储存时间四个因素探究袋采样法储存还原硫化物过程的损失情况。以Tedlar~? PVF和Teflon~? FEP为目标采样袋,使用5个初始浓度(0. 001、0. 010、0. 100、1. 000和10. 000μg/m L)的混合还原硫化物,选择0、2、6、12、24、48以及72h的储存时间,以响应因子和相对回收率作为评价因子,并使用配对t检验法和吸附动力学,研究影响储存效果的主要因素、物质损失机理以及两种采样袋的储存能力。结果表明,储存时间越长、物质初始浓度越高,物质活性越强,损失情况越严重;在环境温度达到60℃时,Tedlar~? PVF的基质背景较Teflon~? FEP更复杂;相同条件下,还原硫化物在Teflon~? FEP储存过程中损失更严重。依据研究结果建议:(1)样品采集后避光保存;(2)低浓度含硫样品的测定在采样后8h内完成,高浓度含硫样品的测定在2h内完成;(3)若待测样品气体温度较高,优先选择Teflon~? FEP采样袋,气体温度较低条件下选择Tedlar~? PVF采样袋,可最大限度保持样品的原始状态。本研究成果有利于确保还原硫化物样品的储存稳定性,最大限度还原恶臭污染现场情况,为恶臭污染的分析测试以及后续的恶臭污染控制与治理提供技术支持。  相似文献   
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