International audienceThe Niaz porphyry Cu-Mo deposit in the Arasbaran metallogenic belt of NW Iran exhibits extensive hydrothermal alteration developed in three temporally and spatially overlapping zones: early potassic, transitional phyllic and intermediate argillic, and late advanced argillic. The early and transitional zones contain biotite, either of magmatic (re-equilibrated) or hydrothermal (replacement and/or neoformed) origin. This study aims to understand the petrography and chemistry of the hydrothermal biotite for evaluating the fluid compositional changes during alteration processes. Selected samples from the different alteration zones were studied for petrography crossing from inner to outer parts of the Niaz deposit. Electr...
Biotite and apatite occur with copper and iron sulfides, quartz, and traces of other minerals in a v...
Biotite, chlorite, muscovite, illite, and kaolinite from the Altar porphyry Cu-(Au) deposit of the A...
ical compositions ofcoexisting biotite and chlorite determined by electron microprobe and wet chemic...
<p><span>DOI: 10.17014/ijog.5.1.47-64</span></p><p>This study aims to understand the petrography and...
DOI: 10.17014/ijog.5.1.47-64This study aims to understand the petrography and chemistry of both magm...
Porphyry copper-gold deposit commonly exhibits an extensive alteration zone of hydrothermal micas pa...
The Iju porphyry copper deposit is located 72 km NE of Shahr-e- Babak in the western part of the Deh...
Ninety-two biotite separates from 35 different igneous systems in western North America and the Cari...
Key constraints related to the nature of alteration and mineralization in geologically complex and e...
Porphyry copper-gold deposit commonly exhibits an extensive alteration zone of hydrothermal micas pa...
Fluid pathways in hydrothermal ore deposits can potentially be traced through alteration zoning patt...
The chemical composition of biotites and «sericites » from the Cerro Verde porphyry copper type depo...
The chemical composition of biotites and «sericites » from the Cerro Verde porphyry copper type depo...
Biotite is the most frequent ferromagnesian phase in granitoids from the Malayer-Boroujerd Plutonic ...
Biotite is the most frequent ferromagnesian phase in granitoids from the Malayer-Boroujerd Plutonic ...
Biotite and apatite occur with copper and iron sulfides, quartz, and traces of other minerals in a v...
Biotite, chlorite, muscovite, illite, and kaolinite from the Altar porphyry Cu-(Au) deposit of the A...
ical compositions ofcoexisting biotite and chlorite determined by electron microprobe and wet chemic...
<p><span>DOI: 10.17014/ijog.5.1.47-64</span></p><p>This study aims to understand the petrography and...
DOI: 10.17014/ijog.5.1.47-64This study aims to understand the petrography and chemistry of both magm...
Porphyry copper-gold deposit commonly exhibits an extensive alteration zone of hydrothermal micas pa...
The Iju porphyry copper deposit is located 72 km NE of Shahr-e- Babak in the western part of the Deh...
Ninety-two biotite separates from 35 different igneous systems in western North America and the Cari...
Key constraints related to the nature of alteration and mineralization in geologically complex and e...
Porphyry copper-gold deposit commonly exhibits an extensive alteration zone of hydrothermal micas pa...
Fluid pathways in hydrothermal ore deposits can potentially be traced through alteration zoning patt...
The chemical composition of biotites and «sericites » from the Cerro Verde porphyry copper type depo...
The chemical composition of biotites and «sericites » from the Cerro Verde porphyry copper type depo...
Biotite is the most frequent ferromagnesian phase in granitoids from the Malayer-Boroujerd Plutonic ...
Biotite is the most frequent ferromagnesian phase in granitoids from the Malayer-Boroujerd Plutonic ...
Biotite and apatite occur with copper and iron sulfides, quartz, and traces of other minerals in a v...
Biotite, chlorite, muscovite, illite, and kaolinite from the Altar porphyry Cu-(Au) deposit of the A...
ical compositions ofcoexisting biotite and chlorite determined by electron microprobe and wet chemic...