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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Which 2:1 clay minerals are involved in the soil potassium reservoir? Insights from potassium addition or removal experiments on three temperate grassland soil clay assemblages.
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Which 2:1 clay minerals are involved in the soil potassium reservoir? Insights from potassium addition or removal experiments on three temperate grassland soil clay assemblages.

机译:土壤钾储层中涉及哪种2:1粘土矿物?从钾的添加或去除实验中对三种温带草原土壤黏土组合的见解。

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Field and laboratory observations based on X-ray diffraction techniques suggest that 2:1 clay minerals behave as a K reservoir. However, 2:1 soil clay assemblages are most often composed of a mixture of different 2:1 clay mineral populations and the role of these different clay mineral populations in K absorption or K release are not fully understood. This present work addressed this question, through laboratory experiments, by using an X-ray pattern decomposition program to quantify peak area modifications of different clay mineral populations induced by K addition and K removal through plant action. This study was performed on three typical temperate grassland soil clay assemblages containing illite, interstratified illite/smectite and soil vermiculite. Our results revealed that the quantities of well crystallized illite increased at the expense of soil vermiculite as a result of K absorption whereas the opposite trend was observed following K depletion. This particular relationship between well crystallized illite and soil vermiculite suggests that they constitute a subgroup among 2:1 clay minerals. Poorly crystallized illite and interstratified clay minerals were also significantly affected by K absorption or removal indicating that they are also involved in soil K dynamics. Moreover, we observed that these short term clay mineral modifications (occurring at the day scale) induced by root K extraction are reversible. We also observed that the linear relationship between clay K content and the centre of gravity position of X-ray diffraction patterns in the 2:1 clay mineral range seem to be a general property for soil clay assemblages dominated by illite and interstratified illite/smectite materials. Our results support the view of 2:1 clay minerals as a K reservoir and specify the role of each of the 2:1 clay mineral populations in K absorption and release. All the 2:1 clay minerals commonly found in temperate grassland soil clay assemblages take part in the soil K reservoir.
机译:基于X射线衍射技术的现场和实验室观察表明,2:1粘土矿物表现为钾储集层。然而,2:1的土壤黏土组合通常是由不同的2:1黏土矿物种群的混合物组成,这些不同的黏土矿物种群在钾吸收或钾释放中的作用尚不完全清楚。本工作通过实验室实验,通过使用X射线图分解程序来量化由于添加K和通过植物作用去除K引起的不同粘土矿物种群的峰面积修饰,从而解决了这个问题。这项研究是在三种典型的温带草原土壤黏土组合物上进行的,这些组合物包含伊利石,层状伊利石/蒙脱石和soil石。我们的结果表明,由于钾的吸收,结晶良好的伊利石的数量增加,但以土壤ver石为代价,而在钾耗竭后观察到相反的趋势。充分结晶的伊利石与土壤ver石之间的特殊关系表明,它们构成了2:1粘土矿物中的一个子类。结晶性差的伊利石和层状粘土矿物也受到钾素吸收或去除的显着影响,表明它们也与土壤钾素动力学有关。此外,我们观察到,由根K提取引起的这些短期粘土矿物变质(在日尺度上发生)是可逆的。我们还观察到,粘土K含量与X射线衍射图在2:1粘土矿物范围内的重心之间的线性关系似乎是由伊利石和层状伊利石/蒙脱石材料为主的土壤粘土组合的一般属性。我们的研究结果支持将2:1黏土矿物作为钾储集层,并说明了每个2:1黏土矿物种群在钾吸收和释放中的作用。温带草原土壤粘土组合中通常发现的所有2:1粘土矿物都参与了土壤K储层。

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