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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Dissolution behavior of fine-grained magnetite and maghemite in the citrate-bicarbonate-dithionite extraction method
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Dissolution behavior of fine-grained magnetite and maghemite in the citrate-bicarbonate-dithionite extraction method

机译:柠檬酸盐-碳酸氢盐-连二亚硫酸盐萃取法中细粒磁铁矿和磁赤铁矿的溶解行为

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摘要

Mineral magnetic properties of soils and sediments are increasingly used as proxy parameters for environmental and palaeoclimate analysis. To investigate which magnetic minerals contribute to the environmental signal is the samples, chemical techniques such as the citrate-bicarbonate-dithionite (CBD) extraction method have been introduced in environmental magnetism studies. This technique is assumed to distinguish lithogenic (magnetite) from pedogenic (maghemite) mineral content in soils and sediments. Unfortunately, interpretation of the CBD extractions is not straightforward because the procedure is sometimes more suitable for distinction between grain size than for distinction between minerals. The procedure of the CBD extraction technique was investigated to determine the influence of extraction temperature and iron oxide concentration on the dissolution behaviour of the samples. Synthetic samples were extracted at three different temperatures (60 deg, 70 deg, and 80 deg C) at similar iron oxide concentration (5 wt%), and for three different concentrations (0.1 wt%, 1 wt% and 5 wt%) at the same temperature (60 deg C). Our results show that a lower extraction temperature reduces the dissolution rate for all samples, while decrease in iron oxide concentration increases the dissolution rate. Thus, the parameters in the CBD procedure have a major influence on the dissolution behavior of the samples. In practice this means that when natural samples of differing iron oxide concentration are extracted with this technique, the results of the exreactions cannot be compared. Therefore, the outcome of this type of extraction experiment can only be accurately interpreted when the effect to the procedure on the dissolution behaviour
机译:土壤和沉积物的矿物磁特性越来越多地用作环境和古气候分析的替代参数。为了研究哪些磁性矿物对环境信号有贡献,在环境磁性研究中引入了化学技术,例如柠檬酸盐-碳酸氢盐-连二亚硫酸盐(CBD)提取方法。假定该技术可以区分土壤和沉积物中的岩性(磁铁矿)与成岩性(磁铁矿)矿物含量。不幸的是,对CBD提取物的解释并不简单,因为该程序有时更适合区分晶粒大小而不是区分矿物。研究了CBD提取技术的程序,以确定提取温度和氧化铁浓度对样品溶解行为的影响。在三个不同的温度(60摄氏度,70摄氏度和80摄氏度)下以相似的氧化铁浓度(5重量%)提取合成样品,并在三个不同的温度(0.1重量%,1重量%和5重量%)下提取合成样品。相同的温度(60摄氏度)。我们的结果表明,较低的萃取温度会降低所有样品的溶解速率,而氧化铁浓度的降低会提高溶解速率。因此,CBD程序中的参数对样品的溶解行为有重要影响。在实践中,这意味着当用这种技术提取不同铁氧化物浓度的天然样品时,无法比较萃取结果。因此,只有当萃取过程对溶解行为的影响时,才能正确解释这种萃取实验的结果。

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