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Mineral Paragenesis, Fluid Inclusions and Sulfur Isotope Systematics of the Lepanto Far Southeast Porphyry Cu-Au Deposit, Mankayan, Philippines

机译:菲律宾Mankayan Lepanto远东南斑岩铜金矿床的矿物共生,流体包裹体和硫同位素体系

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The Lepanto Far Southeast porphyry Cu-Au deposit is located beneath and to the southeast of the Lepanto enargite-luzonite Cu-Au deposit in Mankhyan, Benguet Province, Philippines.The principal orebody consists of potassic alteration subjected to partial retrograde chlorite alteration that rims stock-work of quartz-anhydrite veinlets. Fluid inclusions found in stockwork quartz and anhydrite in the biotitized orebody center are dominated by polyphase inclusions that homogenize at temperatures of >500 deg C. Sulfur isotopic thermometry applied to the sulfides-anhydrite pairs suggests around 500 deg C. The principal ore minerals associated with quartz-anhydrite stockworks are chalcopyrite and pyrite with minor bornite and Bi-Te-bearing tennantite, with trace of native gold. Rounded pyrite grains appear fractured and corroded and are interpreted as remnants of primary intermediate solid solution + pyrite assemblage.A breccia pipe truncates the deposit. Mineralization in the breccia pipe is brought by quartz-anhydrite veinlets and infilling in the interstices between clasts. Chalcopyrite-Au mineralization associated with molybdenite is recognized in the deeper zone in the breccia pipe. Fluid inclusion microthermometry on polyphase inclusions in veinlet quartz as well as sulfur isotope thermometry applied for the pair of anhydrite and sulfides suggests >450 deg C.Fluid inclusions in veinlet quartz and anhydrite in the fringe advanced argillic alteration are chiefly composed of coexisting liquid-rich inclusions and gas-rich inclusions, in addition to coexisting polyphase inclusions and gas-rich inclusions, These inclusions exhibit a wide range of homogenization temperatures, suggesting heterogeneous entrapping in the two-fluid unmixing region.Sulfur isotopes of aqueous sulfide and sulfate exhibit a general trend from the smallest fractionation pairs (about 11 per thousand) in the biotitized orebody center to the largest fractionation (about 25 per thousand) pairs in the fringe advanced argillic alteration, suggesting a simple evolution of hydrothermal system. The slopes of arbitrary regression lines in #delta#~(34)S versus #DELTA#~(34)S(SO_4~=-H_2S) diagram suggest that the abundance ratio of aqueous sulfate to sulfide in the hydrothermal fluid has been broadly constant at about 1:3 through temperature decrease. The intersection of these two regression lines at the #delta#~(34)S axis indicates that the bulk #delta#~(34)S is about +6 per thousand. Thus, the Lepanto FSE deposit is a further example which confirms enrichment in ~(34)S in the hydrous intermediate to silicic magmas and associated magmatic hydrothermal deposits in the western Luzon arc.
机译:Lepanto远东南斑岩型Cu-Au矿床位于菲律宾Benguet省Mankhyan的Lepanto钠钙锰矿-Luzonite Cu-Au矿床的下方和东南部,主要矿体由钾肥蚀变,部分逆向绿泥石蚀变和边缘储量组成。石英硬石膏小孔的工作。在生物体化矿体中心的储层石英和硬石膏中发现的流体夹杂物以在500摄氏度以上的温度下均质的多相夹杂物为主。应用于硫化物-硬石膏对的硫同位素测温表明大约为500摄氏度。石英硬石膏厂为黄铜矿和黄铁矿,以及次要的褐铁矿和含Bi-Te的球铁矿,并带有少量天然金。圆形的黄铁矿晶粒出现破裂和腐蚀,并被解释为主要的中间固溶体+黄铁矿组合的残余物。角砾岩管道将矿床截断。角砾岩管中的矿化作用是由石英-硬石膏小孔和填充在碎屑之间的空隙中引起的。在角砾岩管道的较深区域识别出与辉钼矿相关的黄铜矿-金矿化作用。细石英中多相夹杂物的流体包裹体微热分析以及对无水石膏和硫化物的硫同位素测温表明温度> 450℃。边缘高级泥质蚀变中细石英和无水石膏中的流体夹杂物主要由富液共存组成除了共存的多相夹杂物和富含气体的夹杂物外,这些夹杂物还具有很宽的均质温度范围,表明在两流体解混区中存在非均质截留。从生物化矿体中心的最小分馏对(约每千分之一)到最大的分馏对(约每千分之25)的趋势发生了先进的泥质蚀变,表明水热系统的简单演化。 #delta#〜(34)S与#DELTA#〜(34)S(SO_4〜= -H_2S)图中任意回归线的斜率表明,热液中硫酸盐水溶液与硫化物的丰度比已大致恒定通过降低温度以大约1:3在#delta#〜(34)S轴上这两条回归线的交点表示,总体#delta#〜(34)S约为+6 / 1000。因此,Lepanto FSE矿床是另一个例证,证实了吕宋岛西部硅质岩浆和相关岩浆热液矿床的含水层中间〜(34)S富集。

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