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首页> 外文期刊>Geoderma: An International Journal of Soil Science >The role of soil organic matter and short-range ordered aluminosilicates in controlling the activity of aluminum in soil solutions of volcanic ash soils.
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The role of soil organic matter and short-range ordered aluminosilicates in controlling the activity of aluminum in soil solutions of volcanic ash soils.

机译:土壤有机质和短程有序硅铝酸盐在控制火山灰土壤溶液中铝活性方面的作用。

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摘要

Mechanisms controlling the activity of free aluminium (Al) in soil solutions and their implications for pedogenesis in two Japanese volcanic ash soils were investigated by means of acid-base titrations and kinetic studies of mineral dissolution. The A and AB horizons of both soils are rich in soil organic matter (SOM) and organically bound Al. In addition, short-range ordered aluminosilicates such as imogolite and proto-imogolite are abundant. Despite their abundance, the A horizons are undersaturated with respect to short-range ordered aluminosilicates, such as imogolite and proto-imogolite. This suggests low dissolution rate of these minerals, possibly due to alteration of the physico-chemical characteristics of their surfaces, caused by complexation with SOM. The AB horizons in both soils are close to equilibrium with short-range ordered aluminosilicates. The fast release of Al upon addition of strong acid to A horizons, combined with the reaction stoichiometry, observed in acid-base titrations suggests that the activity of Al3+ and H+ are controlled by complexation reactions with SOM. Furthermore, our data support previous studies indicating that SOM input in A horizon of volcanic ash soils dissolves short-range ordered aluminosilicates. Thus, simultaneous accumulation of SOM and depletion of short-range ordered aluminosilicates, due to leaching, are important long-term processes of the pedogenesis in soils developed from volcanic ash deposits..
机译:通过酸碱滴定和矿物溶解动力学研究,研究了控制土壤溶液中游离铝(Al)活性的机制及其对日本火山灰土壤成岩作用的影响。两种土壤的A和AB层均富含土壤有机质(SOM)和有机结合的Al。另外,短程有序的铝硅酸盐如伊莫高石和原伊莫高石是丰富的。尽管有很多,但对于短程有序硅铝酸盐(如伊莫石和原伊莫石),A层的饱和度不高。这表明这些矿物质的溶解速率较低,可能是由于与SOM络合导致其表面物理化学特性的改变。两种土壤中的AB层与短程有序硅铝酸盐接近平衡。在酸碱滴定法中观察到,将强酸添加到A层中后,Al的快速释放与反应化学计量相结合,表明Al3 +和H +的活性受与SOM的络合反应控制。此外,我们的数据支持以前的研究,表明在火​​山灰土壤地平线中的SOM输入可溶解短程有序硅铝酸盐。因此,由于浸出,SOM的同时积累和短程有序硅铝酸盐的消耗是从火山灰沉积物发育的土壤中成岩作用的重要长期过程。

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