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Information Journal Paper

Title

MAGMATIC-HYDROTHERMAL FLUID EVOLUTION OF THE DALLI PORPHYRY CU-AU DEPOSIT; USING AMPHIBOLE AND PLAGIOCLAS MINERAL CHEMISTRY

Pages

  7-8

Abstract

 Introduction: The formation of porphyry copper deposits is attributed to the shallow emplacement, and subsequent cooling of the hydrothermal system of porphyritic intrusive rocks (Titley and Bean, 1981). These deposits have usually been developed along the chain of subduction-related volcanic and calc-alkalin batholiths (Sillitoe, 2010). Nevertheless, it is now confirmed that porphyry copper systems can also form in collisional and post collisional settings (Zarasvandi et al., 2015b). …

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  • Cite

    APA: Copy

    POURKASEB, HOUSHANG, ZARASVANDI, ALIREZA, SAED, MADINEH, & DAVOUDIAN DEHKORDY, ALIREZA. (2017). MAGMATIC-HYDROTHERMAL FLUID EVOLUTION OF THE DALLI PORPHYRY CU-AU DEPOSIT; USING AMPHIBOLE AND PLAGIOCLAS MINERAL CHEMISTRY. JOURNAL OF ECONOMIC GEOLOGY, 9(1 (16) ), 7-8. SID. https://sid.ir/paper/362114/en

    Vancouver: Copy

    POURKASEB HOUSHANG, ZARASVANDI ALIREZA, SAED MADINEH, DAVOUDIAN DEHKORDY ALIREZA. MAGMATIC-HYDROTHERMAL FLUID EVOLUTION OF THE DALLI PORPHYRY CU-AU DEPOSIT; USING AMPHIBOLE AND PLAGIOCLAS MINERAL CHEMISTRY. JOURNAL OF ECONOMIC GEOLOGY[Internet]. 2017;9(1 (16) ):7-8. Available from: https://sid.ir/paper/362114/en

    IEEE: Copy

    HOUSHANG POURKASEB, ALIREZA ZARASVANDI, MADINEH SAED, and ALIREZA DAVOUDIAN DEHKORDY, “MAGMATIC-HYDROTHERMAL FLUID EVOLUTION OF THE DALLI PORPHYRY CU-AU DEPOSIT; USING AMPHIBOLE AND PLAGIOCLAS MINERAL CHEMISTRY,” JOURNAL OF ECONOMIC GEOLOGY, vol. 9, no. 1 (16) , pp. 7–8, 2017, [Online]. Available: https://sid.ir/paper/362114/en

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