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Influence of Organic Matter on the Iron Oxide Mineralogy of Volcanic Soils

机译:有机物对火山土壤氧化铁矿物学的影响

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Samples of soils developing on volcanic materials that represent about 70% of the agriculture land area in Chile were studied by chemical methods, powder X-ray diffractometry (XRD) and Mossbauer spectroscopy. The soil samples were collected from native areas of Ultisols, Andisols, and Andisols presenting seasonal cycles of poor drainage, at depths between 0–15 cm and 15–30 cm from the top of the profile. The degree of crystallinity of iron oxides was evaluated from the ratio of amounts of Fe extracted with oxalate-oxalic acid (Fe_(OX)) and with bicarbonate-citrate-dithionite mixtures (Fe_(DBC)), Fe_(OX)/Fe_(DBC). Results show that the specific saturation magnetization of soils and crystallinity of iron-rich minerals increase with decreasing organic matter contents of soils. From XRD and M?ssbauer data, ferrihydrite (ideal formula, Fe_5HO_8 * 4H_2O) could be the precursor either of the soil magnetite (Fe_3O_4) or hematite (αFe_2O_3). Older soils were found to be in an intermediate stage regarding the transformation of magnetite to maghemite (γFe_2O_3).
机译:通过化学方法,粉末X射线衍射法(XRD)和Mossbauer光谱法研究了在占智利农业土地面积约70%的火山材料上发育的土壤样品。土壤样品是从Ultisols,Andisols和Andisols的原生地区采集的,这些地区的排水情况较差,季节性变化,距剖面顶部0-15厘米至15-30厘米之间。由草酸-草酸(Fe_(OX))和碳酸氢盐-柠檬酸盐-连二亚硫酸盐混合物(Fe_(DBC)),Fe_(OX)/ Fe_( DBC)。结果表明,随着土壤有机质含量的降低,土壤的比饱和磁化强度和富铁矿物的结晶度增加。根据XRD和Msssbauer数据,水铁矿(理想公式为Fe_5HO_8 * 4H_2O)可以是土壤磁铁矿(Fe_3O_4)或赤铁矿(αFe_2O_3)的前驱体。发现较旧的土壤处于磁铁矿向磁赤铁矿(γFe_2O_3)转变的中间阶段。

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