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Cation exchange capacity of loess and overlying soil in the non-carbonate loess sections, North-Western Croatia

机译:克罗地亚西北部非碳酸盐性黄土中黄土及其上层土壤的阳离子交换能力

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The adsorption properties in terms of cation exchange capacity and their relation to the soil and sediment constituents (clay minerals, Fe-, Mn-, and Al-oxyhydroxides, organic matter) were investigated in loess, soil-loess transition zone, and soil at four loess-soil sections in North-Western Croatia. Cation exchange capacity of the bulk samples, the samples after oxalate extraction of Fe, Mn and Al, and after removal of organic matter, as well as of the separated clay fraction, was determined using copper ethylenediamine. Cation exchange capacity (pH~7) of the bulk samples ranges from 5 to 12 cmolc/kg in soil, from 7 to 15 cmolc/kg in the soil-loess transition zone, and from 12 to 20 cmolc/kg in loess. Generally, CEC values increase with depth. Oxalate extraction of Fe, Mn, and Al, and removal of organic matter cause a CEC decrease of 3–38% and 8–55%, respectively, proving a considerable influence of these constituents to the bulk CEC values. In the separated clay fraction (2 μm) CEC values are up to several times higher relative to those in the bulk samples. The measured CEC values of the bulk samples generally correspond to the clay mineral content identified. Also, a slight increase in muscovite/illite content with depth and the vermiculite occurrence in the loess horizon are concomitant with the CEC increase in deeper horizons, irrespective of the sample pretreatment.
机译:在黄土,黄土过渡带和土壤中研究了阳离子交换能力及其与土壤和沉积物成分(粘土矿物,Fe,Mn和Al-羟基氧化物,有机物)之间的吸附特性。克罗地亚西北部的四个黄土区。使用乙二胺铜测定大块样品,草酸萃取后的样品中的铁,锰和铝以及除去有机物以及分离出的粘土馏分后的阳离子交换容量。散装样品的阳离子交换容量(pH〜7)在土壤中为5至12 cmolc / kg,在黄土过渡带中为7至15 cmolc / kg,在黄土中为12至20 cmolc / kg。通常,CEC值随深度增加。草酸盐提取铁,锰和铝以及去除有机物会导致CEC分别降低3-38%和8-55%,这证明这些成分对总体CEC值有很大影响。在分离的粘土分数(<2μm)中,CEC值比散装样品的CEC值高出几倍。散装样品的测得的CEC值通常对应于确定的粘土矿物含量。而且,无论样品预处理如何,白云母/伊利石含量随深度的略微增加以及在黄土层中the石的出现与深层中CEC的增加相伴而生。

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