著者
高木 哲一
出版者
Japan Association of Mineralogical Sciences
雑誌
岩鉱 (ISSN:09149783)
巻号頁・発行日
vol.88, no.4, pp.165-178, 1993-04-05 (Released:2008-03-18)
参考文献数
66
被引用文献数
5 4

This paper describes the petrography of magnetite-series and ilmenite-series granitoids in the San'yo and San'in belts, and estimates the redox paths of the granitoid magmas during cooling. In magnetite-series granitoids in these areas, the magnetite commonly occurs as secondary minerals after decomposition of magmatic mafic silicates such as pyroxenes, hornblende and biotite. The magnetite is divided into two types, differentiated by their coexisting minerals. The first-type of magnetite crystallizes concurrently with hornblende and biotie after decomposition of pyroxenes and brown hornblende at the late magmatic stage, and continues to crystallize during subsolidus conditions. The second-type of magnetite crystallizes with actinolite, cummingtonite and chlorite during subsolidus stages of crystallization. Petrography, combined with Fe-Ti oxide geothermo-barometers for the magnetite-series granitoids, suggests that the magnetite crystallizes due to an increase in the oxidation state of the magma (and/or fluid phase) above the NNO-buffer during cooling. However, the redox states of the ilmenite-series granitoid magmas are kept below the FMQ-buffer, throughout the solidifying process of the magma. The chemistry of the fluid phase determines whether the magma follows the magnetite-series or ilmenite-series trend.

言及状況

外部データベース (DOI)

Twitter (5 users, 7 posts, 34 favorites)

@SocStudMollDiv 承前 そして、最初に伽耶諸国からの製鉄技術が移植されたのは山陽の吉備国~安芸国なんですが、実は山陽の「砂鉄」はチタン鉄鉱質で製鉄原料としては優良ではありません。だから歴史的に製鉄地帯は磁鉄鉱質の砂鉄を産する参院の出雲国に遷移します。 https://t.co/rzXgFi8Ljr

収集済み URL リスト