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Chemico-viscous remanent magnetization in the oxidation of siderite and its implications in paleomagnetism 被引量:1

Chemico-viscous remanent magnetization in the oxidation of siderite and its implications in paleomagnetism
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摘要 Studies have been done of the secondary chemico-viscous remanent magnetization (CVRM) produced in the oxidization and decomposition of high-purity crystal siderite specimens collected from Dalizi Deposit, Jilin Province, The CVRM intensity increases to a peak value at an annealing temperature of 490*^0 . The direction of CVRM is always parallel to the applied field , and no self- reversal behavior has been observed in the transformation of maghemite to hematite . It is suggested that the phase transition of magnetic minerals can make great contribution to secondary magnetization. Results of successive heating at low temperature indicate that the crystal mineral siderite is basically stable. Finally , the paleomagnetic significance of CVRM is discussed. Studies have been done of the secondary chemico-viscous remanent magnetization (CVRM) produced in the oxidization and decomposition of high-purity crystal siderite specimens collected from Dalizi Deposit, Jilin Province. The CVRM intensity increases to a peak value at an annealing temperature of 490℃. The direction of CVRM is always parallel to the applied field, and no self-reversal behavior has been observed in the transformation of maghemite to hematite. It is suggested that the phase transition of magnetic minerals can make great contribution to secondary magnetization. Results of successive heating at low temperature indicate that the crystal mineral siderite is basically stable. Finally, the paleomagnetic significance of CVRM is discussed.
出处 《Science China Earth Sciences》 SCIE EI CAS 1999年第4期442-448,共7页 中国科学(地球科学英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant No. 49454005) the Ministry of Science and Technoloy Project.
关键词 CVRM phase transition of magnetic MINERALS SIDERITE paleomagnetism. CVRM, phase transition of magnetic minerals, siderite, paleomagnetism.
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