A NEW PETROGENETIC GRID FOR LOW-GRADE METABASITES

被引:233
作者
FREY, M [1 ]
DECAPITANI, C [1 ]
LIOU, JG [1 ]
机构
[1] STANFORD UNIV,DEPT GEOL,STANFORD,CA 94305
关键词
LOW-TEMPERATURE METAMORPHISM; METABASITES; PETROGENETIC GRIDS; SUBGREENSCHIST FACIES; PREHNITE PUMPELLYITE FACIES; SANBAGAWA METAMORPHIC BELT; PHASE-RELATIONS; VANCOUVER ISLAND; KARMUTSEN METABASITES; MINERAL ASSEMBLAGES; NORTHERN CALIFORNIA; STABILITY RELATIONS; BRITISH-COLUMBIA; CENTRAL SHIKOKU;
D O I
10.1111/j.1525-1314.1991.tb00542.x
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
We have used internally-consistent thermodynamic data to present calculated phase equilibria for the system Na2O-CaO-MgO-Al2O3-SiO2-H2O (NCMASH), in the range 0-500-degrees-C and 0.1-10 kbar, involving the phases anorthite, glaucophane, grossular, heulandite, jadeite, laumontite, lawsonite, paragonite, prehnite, pumpellyite, stilbite, tremolite, wairakite, zoisite with excess albite, clinochlore, quartz and pure water. Average activity terms derived from published mineral chemical data were included for clinochlore, glaucophane, prehnite, pumpellyite, tremolite, and zoisite. The new petrogenetic grid delineates stability fields and parageneses of common index minerals in zeolite, prehnite-actinolite, prehnite-pumpellyite, pumpellyite-actinolite, blueschist and greenschist facies metabasites. The stability fields of mineral assemblages containing prehnite, pumpellyite, epidote, actinolite (+ albite + chlorite + quartz) were analysed in some detail, using activity data calculated from five specific samples. For example, the prehnite-actinolite facies covers a P-T field ranging from about 220 to 320-degrees-C at pressures below 4.5 kbar. The transition from the prehnite-actinolite and pumpellyite-actinolite to greenschist facies occurs at about 250-300-degrees-C at 1-3 kbar and at about 250-350-degrees-C at 3-8 kbar. P-T fields of individual facies overlap considerably due to variations in chemical composition.
引用
收藏
页码:497 / 509
页数:13
相关论文
共 51 条
[21]   MODEL FOR PHASE-EQUILIBRIA IN PREHNITE-PUMPELLYITE FACIES [J].
GLASSLEY, W .
CONTRIBUTIONS TO MINERALOGY AND PETROLOGY, 1974, 43 (04) :317-332
[22]   AN ENLARGED AND UPDATED INTERNALLY CONSISTENT THERMODYNAMIC DATASET WITH UNCERTAINTIES AND CORRELATIONS - THE SYSTEM K2O-NA2O-CAO-MGO-MNO-FEO-FE2O3-AL2O3-TIO2-SIO2-C-H2-O2 [J].
HOLLAND, TJB ;
POWELL, R .
JOURNAL OF METAMORPHIC GEOLOGY, 1990, 8 (01) :89-124
[23]   AMPHIBOLE ZONATION IN METABASITES AS A GUIDE TO THE EVOLUTION OF METAMORPHIC CONDITIONS [J].
HOLLAND, TJB ;
RICHARDSON, SW .
CONTRIBUTIONS TO MINERALOGY AND PETROLOGY, 1979, 70 (02) :143-148
[24]  
JOHNSON GK, 1985, AM MINERAL, V70, P1065
[25]   PUMPELLYITE-ACTINOLITE AND CONTIGUOUS FACIES METAMORPHISM IN PART OF UPPER WAKATIPU DISTRICT, SOUTH ISLAND, NEW-ZEALAND [J].
KAWACHI, Y .
NEW ZEALAND JOURNAL OF GEOLOGY AND GEOPHYSICS, 1975, 18 (03) :401-441
[26]  
Liou J.G., 1987, LOW GRADE METAMORPHI, V1st, P59
[27]   PARAGENESES AND COMPOSITIONS OF AMPHIBOLES FROM FRANCISCAN JADEITE GLAUCOPHANE TYPE FACIES SERIES METABASITES AT CAZADERO, CALIFORNIA [J].
LIOU, JG ;
MARUYAMA, S .
JOURNAL OF METAMORPHIC GEOLOGY, 1987, 5 (03) :371-395
[30]   COMPOSITIONS AND PARAGENESES OF SECONDARY MINERALS IN THE ONIKOBE GEOTHERMAL SYSTEM, JAPAN [J].
LIOU, JG ;
SEKI, Y ;
GUILLEMETTE, RN ;
SAKAI, H .
CHEMICAL GEOLOGY, 1985, 49 (1-3) :1-20