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Rock-magnetic proxies of climate change in the loess-palaeosol sequences of the western Loess Plateau of China

黄土 地质学 剩磁 古土壤 岩石磁学 磁化率 粒度 环境磁学 饱和(图论) 代理(统计) 矿物学 地球化学 土壤科学 地貌学 磁铁矿 古生物学 磁化 化学 组合数学 磁场 机器学习 物理 量子力学 计算机科学 数学 结晶学
作者
Christopher Hunt,Subir K. Banerjee,Jiamao Han,P. Sølheid,Eric A. Oches,Weiwei Sun,Tungsheng Liu
出处
期刊:Geophysical Journal International [Oxford University Press]
卷期号:123 (1): 232-244 被引量:204
标识
DOI:10.1111/j.1365-246x.1995.tb06672.x
摘要

Results of the first detailed study of the climate proxy record in the loess-palaeosol sequence at Xining—one of the few palaeoclimate sites in the currently arid western Loess Plateau of China—illustrate the importance of making many types of rock-magnetic measurements other than susceptibility. A multiparameter approach yielded confirmation that here, as elsewhere in the Loess Plateau, the susceptibility enhancement in palaeosols was caused primarily by ultrafine magnetite and maghaemite. Nevertheless, magnetic enhancement was caused not exclusively by changes in relative grain size, but also by variations in concentration and mineralogy of the magnetic fraction. The effects of concentration variations were removed through normalization of susceptibility and anhysteretic remanence with saturation magnetization and saturation remanence, respectively. The resulting signal was ascribed more confidently to variation in magnetic grain size, which in turn was interpreted as a better proxy of pedogenesis than simple susceptibility. Variations in magnetic mineralogy were also determined to constrain interpretations further. The data were then used to discuss climate history at Xining. Finally, results from Xining were compared with other western sites and contrasted with eastern sites. In summary: (1) data is presented from a new Loess Plateau site which also appears to yield a global climate signal; (2) a demonstration is made of a more rock-magnetically robust way to separate concentration, composition and grain-size controls on susceptibility and other magnetic parameters; and (3) models are provided for inter-regional comparisons of palaeoclimate proxy records.

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