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Effect of soil-ph and organic-matter on labile aluminium in soils under permanent grass

机译:土壤酸碱度和有机质对永久性草下土壤不稳定铝的影响

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摘要

The rates of extraction of Na, K, Mg, Ca, and Al with 1M NH4 NO3 from the mineral-and organic-rich layers of some Park Grass (Rothamsted) soils were measured at the pH of the soil. Below pH 3.7 exchangeable Al, derived from the kinetics curve, increases with decreasing soil pH and is less in the organic-rich layer. The sum of the basic exchangeable cations, ¿(Na + K + Mg + Ca), increases with increasing soil pH and is more in the organic-rich layer. The extraction of exchangeable Al obeys first order kinetics, the rate constant being similar for all the soils (mean value 36 ± 7 × 10¿6|s¿1), which implies that exchangeable Al is released from surfaces with similar properties for the adsorption of Al, and that the rate is not affected by soil pH and organic matter. The rate of extraction of non-exchangeable Al is the same in the mineral-and organic-rich layers of each soil, and is maximal at about pH 3.7, decreasing sharply at more and less acid pH values.
机译:在土壤的pH值下,测量了从某些Park Grass(Rothamsted)土壤的富含矿物质和有机质的层中用1M NH4 NO3萃取Na,K,Mg,Ca和Al的速率。低于pH 3.7时,由动力学曲线得出的可交换Al随着土壤pH的降低而增加,而富含有机物的层中的Al则更少。碱性可交换阳离子的总和(Na + K + Mg + Ca)随着土壤pH值的增加而增加,而在富含有机物的层中则更多。可交换铝的提取遵循一阶动力学,速率常数在所有土壤中都相似(平均值为36±7×10×6 | s?1),这意味着可交换铝从具有相似吸附特性的表面释放出来铝,并且该速率不受土壤pH和有机物的影响。在每种土壤的富含矿物质和有机物的层中,不可交换的Al的萃取速率相同,并且在大约pH 3.7时最大,在越来越少的酸性pH值下急剧降低。

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