超临界流体在花岗岩成岩成矿过程中的作用——以香花岭花岗岩型铌钽矿床(430)为例  被引量:14

ROLE OF THE SUPERCRITICAL FLUID IN THE PROCESS OF GRANITIC ROCKFORMING AND MINERALIZATION:TAKING THE GRANITIC NbTa DEPOSIT IN XIANGHUALING AREA AS AN EXAMPLE

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作  者:邱瑞照[1] 周肃[1] 常海亮[1] 杜绍华[1] 彭松柏[1] 

机构地区:[1]国土资源部宜昌地质矿产研究所

出  处:《地质科技情报》1998年第S1期41-45,共5页Geological Science and Technology Information

基  金:地质行业科学发展基金;国家自然科学基金

摘  要:以香花岭花岗岩型铌钽矿床为例,把花岗岩熔体内的组分按其活动性分为活动组分、有效活动组分和惰性组分3类;论述了花岗岩熔体在超临界流体作用下(流体—熔体,流体—岩石作用),粘度、内压、结构、组分活动性及相对含量等,随岩浆演化而呈现的一系列变化,同时,铌钽等成矿元素随岩浆体系内超临界流体聚集而富集,随体系内射气分异作用的发生而矿化,成岩作用和成矿作用表现为一连续过程,在这一过程中,结晶分异作用和交代、溶蚀作用并存,沉淀作用和溶解作用交替,实质上是岩浆体系的内部分异作用或自组织作用过程,成矿作用发生在广义岩浆作用范畴,矿床属岩浆成因。In this paper,granitic NbTa deposit in Xianghualing is taken as an example.According to the mobility of components in granite melt,the authors classify them into three families:active component,efficacious active component and indolent component,and discuss that a series of physical and chemical properties including viscosity,inner pressure,structure,mobility and contents of components in magmatic system change systematically under the action of the supercritical fluid(the interaction of fluidmelt and fluidrock),with the evolution of magma from early to late stages.In the mean while,Nb,Ta and other oreforming elements become richer and richer and cause the mineralization as the supercritical fluid concentrates progressively during the magma′s evolution and as the emanationdifferentiation occur within the magma system.Mineralization and rockforming are a successive process in which fractional crystallization of magma,metasomatism and resorption coexist,and precipitation and dissolution take place alternatively.The formation of granitic NbTa deposit in Xianghualing area is in fact a process of differentiation or selforganization in magmatic system under the action of supercritical fluid.Mineralization comes out in the generalized magmatism and granitic NbTa deposit belongs to magmatic genesis.

关 键 词:花岗岩型铌钽矿床 超临界流体作用 花岗岩熔体组分活动性 湖南香花岭 

分 类 号:P611.1[天文地球—矿床学] P588.113[天文地球—地质学]

 

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