Arid
DOI10.1007/s12040-012-0174-x
Mineral chemistry of Pangidi basalt flows from Andhra Pradesh
Rao, P. V. Nageswara1; Swaroop, P. C.2; Karimulla, Syed1
通讯作者Rao, P. V. Nageswara
来源期刊JOURNAL OF EARTH SYSTEM SCIENCE
ISSN0253-4126
出版年2012
卷号121期号:2页码:525-536
英文摘要

This paper elucidates the compositional studies on clinopyroxene, plagioclase, titaniferous magnetite and ilmenite of basalts of Pangidi area to understand the geothermometry and oxybarometry conditions. Petrographic evidence and anorthite content (up to 85%) of plagioclase and temperature estimates of clinopyroxene indicate that the clinopyroxene is crystallized later than or together with plagioclase. The higher An content indicates that the parent magma is tholeiitic composition. The equilibration temperatures of clinopyroxene (1110-1190A degrees C) and titaniferous magnetite and ilmenite coexisting mineral phases (1063-1103A degrees C) are almost similar in lower basalt flow and it is higher for clinopyroxene (900-1110A degrees C) when compared to titaniferous magnetite and ilmenite coexisting mineral phases (748-898A degrees C) in middle and upper basalt flows. From this it can be inferred that the clinopyroxene is crystallized earlier than Fe-Ti oxide phases reequilibration, which indicates that the clinopyroxene temperature is the approximate eruption temperature of the present lava flows. The wide range of temperatures (900-1190A degrees C) attained by clinopyroxene may point out that the equilibration of clinopyroxene crystals initiated from depth till closer to the surface before the melt erupted. Pangidi basalts follow the QFM buffer curve which indicates the more evolved tholeiitic composition. This suggests the parent tholeiitic magma suffered limited fractionation at high temperature under increasing oxygen fugacity in lower basalt flow and more fractionation at medium to lower temperatures under decreasing oxygen fugacity conditions during cooling of middle and upper basalt flows. The variation of oxygen fugacity indicates the oxidizing conditions for lower basalt flow (9.48-10.3) and extremely reducing conditions for middle (12.1-15.5) and upper basalt (12.4-15.54) flows prevailed at the time of cooling. Temperature vs. (FeO+Fe2O3)/(FeO+Fe2O3 +MgO) data plots for present basalts suggested the lower basaltic flow is formed at higher temperatures while the middle and upper basalt flows at medium to lower temperatures. The lower basalt flow is represented by higher temperatures which shows high modal values of opaques and glass whereas the medium to lower temperatures of middle and upper flow are caused by vesicular nature which contain larger content of gases and humid to semi-arid conditions during cooling.


英文关键词Mineral chemistry geothermometry oxygen fugacities basalt flows Andhra Pradesh
类型Article
语种英语
国家India
收录类别SCI-E
WOS记录号WOS:000304660600019
WOS关键词IRON-TITANIUM OXIDES ; RAJAHMUNDRY TRAPS ; DECCAN TRAPS ; LAVA FLOWS ; INDIA ; GEOTHERMOMETRY ; MAHABALESHWAR ; PETROGENESIS ; THERMOMETRY
WOS类目Geosciences, Multidisciplinary ; Multidisciplinary Sciences
WOS研究方向Geology ; Science & Technology - Other Topics
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/173439
作者单位1.Acharya Nagarjuna Univ, Dept Geol, Nagarjuna Nagar 522510, Andhra Pradesh, India;
2.CR Reddy Coll, Dept Geol, Eluru 534003, Andhra Pradesh, India
推荐引用方式
GB/T 7714
Rao, P. V. Nageswara,Swaroop, P. C.,Karimulla, Syed. Mineral chemistry of Pangidi basalt flows from Andhra Pradesh[J],2012,121(2):525-536.
APA Rao, P. V. Nageswara,Swaroop, P. C.,&Karimulla, Syed.(2012).Mineral chemistry of Pangidi basalt flows from Andhra Pradesh.JOURNAL OF EARTH SYSTEM SCIENCE,121(2),525-536.
MLA Rao, P. V. Nageswara,et al."Mineral chemistry of Pangidi basalt flows from Andhra Pradesh".JOURNAL OF EARTH SYSTEM SCIENCE 121.2(2012):525-536.
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