Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Mineral Chemistry and Genetic Constraints on Yiyuan Jade, Eastern Qinling Orogen, China

View through CrossRef
Yiyuan jade, a specific gem-quality jade variety in the East Qinling Orogen, occurs as lenticular and vein-shaped bodies hosted within the dolomite and biotite-quartz marble of the Neoproterozoic Meiyaogou Formation. Based on detailed petrological and mineralogical characterization, three subtypes are defined: tremolite jade (nephrite), serpentine jade (a green variety of serpentine group minerals that resembles true jade), and their transitional varieties. Among these, tremolite jade is predominantly white, moon-white, and light green, whereas serpentine jade (gem-quality serpentine) exhibits dark green, yellow-green, and yellow coloration. Comprehensive mineral composition analyses are presented, encompassing amphibole, serpentine, carbonate minerals, and titanite in metagabbro, aiming to constrain the physicochemical conditions and genetic model of these jades. We propose that tremolite jade and serpentine jade are probably formed simultaneously via metasomatic processes, primarily governed by variations in fluid volume and the activities of SiO2 and CO2. The serpentine jade is interpreted as serpentinized marble, within which local serpentine aggregation forms serpentine jade akin to Lantian jade in the western East Qinling region. The tremolite jade closely resembles Hetian tremolite jade within geochemical and mineralogical characteristics but differs significantly from serpentine-type tremolite jade associated with ultramafic rocks, thereby confirming its classification as dolomite-type jade. Application of the Ti-in-tremolite geothermometer yields a formation temperature exceeding 400 °C. Integrated with regional geochronological constraints, our findings link the formation of Yiyuan tremolite jade and serpentine jade to tectonic activity driven by the Late Devonian subduction of the Erlangping back-arc basin. This study not only enhances the current understanding of jade mineralization within collisional orogenic settings but also establishes a robust foundation for future exploration in the East Qinling Orogen.
Title: Mineral Chemistry and Genetic Constraints on Yiyuan Jade, Eastern Qinling Orogen, China
Description:
Yiyuan jade, a specific gem-quality jade variety in the East Qinling Orogen, occurs as lenticular and vein-shaped bodies hosted within the dolomite and biotite-quartz marble of the Neoproterozoic Meiyaogou Formation.
Based on detailed petrological and mineralogical characterization, three subtypes are defined: tremolite jade (nephrite), serpentine jade (a green variety of serpentine group minerals that resembles true jade), and their transitional varieties.
Among these, tremolite jade is predominantly white, moon-white, and light green, whereas serpentine jade (gem-quality serpentine) exhibits dark green, yellow-green, and yellow coloration.
Comprehensive mineral composition analyses are presented, encompassing amphibole, serpentine, carbonate minerals, and titanite in metagabbro, aiming to constrain the physicochemical conditions and genetic model of these jades.
We propose that tremolite jade and serpentine jade are probably formed simultaneously via metasomatic processes, primarily governed by variations in fluid volume and the activities of SiO2 and CO2.
The serpentine jade is interpreted as serpentinized marble, within which local serpentine aggregation forms serpentine jade akin to Lantian jade in the western East Qinling region.
The tremolite jade closely resembles Hetian tremolite jade within geochemical and mineralogical characteristics but differs significantly from serpentine-type tremolite jade associated with ultramafic rocks, thereby confirming its classification as dolomite-type jade.
Application of the Ti-in-tremolite geothermometer yields a formation temperature exceeding 400 °C.
Integrated with regional geochronological constraints, our findings link the formation of Yiyuan tremolite jade and serpentine jade to tectonic activity driven by the Late Devonian subduction of the Erlangping back-arc basin.
This study not only enhances the current understanding of jade mineralization within collisional orogenic settings but also establishes a robust foundation for future exploration in the East Qinling Orogen.

Related Results

Distribution Characteristics and Metallogenic Regularity of Graphite Deposits in Qinling Orogen, China
Distribution Characteristics and Metallogenic Regularity of Graphite Deposits in Qinling Orogen, China
AbstractQinling orogen is one of the five main repository distribution provinces of large scale graphite resources. Graphite occurrence strata are multitudinous including NeoArchae...
Onset of mountain building in the Qinling Mountains: Evidence from bedrock and detrital low-temperature thermochronology
Onset of mountain building in the Qinling Mountains: Evidence from bedrock and detrital low-temperature thermochronology
Abstract: Hinterland mountains serve as the pivotal link that spatially and temporally couples deep lithospheric processes with surface responses in orogenic systems. The Qinling M...
Complex evolution and the Triassic Tethyan‐type sedimentation in the Qinling Orogen
Complex evolution and the Triassic Tethyan‐type sedimentation in the Qinling Orogen
The evolution of the Tethys Ocean is a significant geological event in global evolution history. However, although the hinterland of China has Tethyan sedimentary formations, the o...
HISTORICAL STAGES OF CHINA JADE CULTURE. THE EPOCH OF “HOLY JADE”
HISTORICAL STAGES OF CHINA JADE CULTURE. THE EPOCH OF “HOLY JADE”
The article discusses the emergence and formation of the pearl of Chinese jade culture – the “Holy Jade” or “Jade God” epoch. On the example of the archaeological jade artifacts of...
Doklam Standoff Resolution: Interview of Major General S B Asthana by SCMP
Doklam Standoff Resolution: Interview of Major General S B Asthana by SCMP
(Views of Major General S B Asthana,SM,VSM, (Veteran), Questioned by Jiangtao Shi of South China Morning Post on 29 August 2017.Question 1 (SCMP)Are you surprised that the over 70-...

Back to Top