典型文献
Hydration Effect on Equations of State for Minerals in the Peridotite System:Implication for Geotherms in the Mantle
文献摘要:
Water in the deep Earth's interior has important and profound impacts on the geodynamical properties at high-temperature (T) and high-pressure (P) conditions. A series of dense hydrous Mg-silicate (DHMS) phases are generated from dehydration of serpentines in subduction slabs below the lithosphere, including phase A, chondrodite, clinohumite, phase E, superhydrous phase B and phase D. On the other hand, olivine and its high-P polymorphs of wadsleyite and ringwoodite are dominant nominally anhydrous minerals (NAMs) in the upper mantle and transition zone, which could contain significant amount of water in the forms of hydroxyl group (OH-) defects. The water solubilities in wadsleyite and ringwoodite are up to about 3 weight percent (wt.%), making the transition zone a most important layer for water storage in the mantle. Hydration can significantly affect the pressure-volumetemperature equations of state (P-V-T EOSs) for the DHMS and NAM phases, including the thermal expansivities and isothermal bulk moduli. In this work, we collected the reported datasets for the DHMS and NAM phases, and reconstruct internally consistent EOSs. Next, we further evaluated the thermodynamic Grüneisen parameters, which are fundamental for constraining the temperature distribution in an isentropic process, such as mantle convection. The adiabatic temperature profiles are computed for these minerals in the geological settings of normal mantle and subduction zone, and our calculation indicates that temperature is the dominant factor in determining the gradient of a geotherm, rather than the mineralogical composition.
文献关键词:
中图分类号:
作者姓名:
Yu Ye;Joseph R.Smyth;Guangchen Chen
作者机构:
State Key Laboratory of Geological Processes and Mineral Resources,China University of Geosciences,Wuhan 430074,China;Department of Geological Sciences,University of Colorado,Boulder,CO 80309,U.S.A.
文献出处:
引用格式:
[1]Yu Ye;Joseph R.Smyth;Guangchen Chen-.Hydration Effect on Equations of State for Minerals in the Peridotite System:Implication for Geotherms in the Mantle)[J].地球科学学刊(英文版),2022(05):1124-1144
A类:
Peridotite,Geotherms,DHMS,serpentines,chondrodite,clinohumite,superhydrous,wadsleyite,ringwoodite,volumetemperature,expansivities
B类:
Hydration,Effect,Equations,State,Minerals,System,Implication,Mantle,Water,deep,Earth,interior,important,profound,impacts,geodynamical,properties,high,pressure,conditions,series,dense,Mg,silicate,phases,are,generated,from,dehydration,subduction,slabs,below,lithosphere,including,On,hand,olivine,its,polymorphs,dominant,nominally,anhydrous,minerals,NAMs,upper,mantle,transition,zone,which,could,contain,amount,water,forms,hydroxyl,group,defects,solubilities,about,weight,percent,wt,making,most,layer,storage,significantly,affect,equations,state,EOSs,isothermal,bulk,moduli,In,this,work,collected,reported,datasets,reconstruct,internally,consistent,Next,further,evaluated,thermodynamic,Gr,neisen,parameters,fundamental,constraining,distribution,isentropic,process,such,convection,adiabatic,profiles,computed,these,geological,settings,normal,our,calculation,indicates,that,determining,gradient,geotherm,rather,than,mineralogical,composition
AB值:
0.541037
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