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A New Method for Determining Fluid Compositions in the H_2O-NaClCaCl_2 System with Cryogenic Raman Spectroscopy 被引量:8
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作者 CHI Guoxiang CHU Haixia +1 位作者 Ryan SCOTT chou i-ming 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2014年第4期1169-1182,共14页
Raman peaks of various hydrates in the H20-NaCl-CaCl2 system have been previously identified, but a quantitative relationship between the Raman peaks and XNaCl (i.e.,NaCl/ (NaCl+CaCl2)) has not been established, ... Raman peaks of various hydrates in the H20-NaCl-CaCl2 system have been previously identified, but a quantitative relationship between the Raman peaks and XNaCl (i.e.,NaCl/ (NaCl+CaCl2)) has not been established, mainly due to the difficulty to freeze the solutions. This problem was solved by adding alumina powder to the solutions to facilitate nucleation of crystals. Cryogenic (-185℃) Raman spectroscopic studies of alumina-spiced solutions indicate that XNaCl is linearly correlated with the total peak area fraction of hydrohalite. Capsules of solutions made from silica capillary were prepared to simulate fluid inclusions. Most of these artificial fluid inclusions could not be totally frozen even at temperatures as low as -185℃, and the total peak area fraction of hydrohalite is not correlated linearly with XNaCI. However, the degree of deviation (△XNaCl) from the linear correlation established earlier is related to the amount of residual solution, which is reflected by the ratio (r) of the baseline "bump" area, resulting from the interstitial unfrozen brine near 3435 cm^-1, and the total hydrate peak area between 3350 and 3600 cm^-1. A linear correlation between △XNaCl and r is established to estimate XNaCl from cryogenic Raman spectroscopic analysis for fluid inclusions. 展开更多
关键词 CRYOGENIC RAMAN H20-NaCl-CaCl2 XNaCI fluid inclusion
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Redox Control and Measurements in Hydrothermal Experiments
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作者 chou i-ming 《矿物学报》 CAS CSCD 北大核心 2013年第S2期561-561,共1页
For minerals containing multivalent elements,their stabilities depend not only on pressure(P),temperature(T),and bulk chemical composition,but also the redox state.This applies to many ore forming minerals,such that t... For minerals containing multivalent elements,their stabilities depend not only on pressure(P),temperature(T),and bulk chemical composition,but also the redox state.This applies to many ore forming minerals,such that the redox state and its fluctuations in hydrothermal systems have long been considered as important controlling factors for the transport and deposition of ores. 展开更多
关键词 redox MINERALS HYDROTHERMAL KINETICS sealed PERMEATION DISSOCIATION mentioned CAPSULE adding
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