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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Aging effects on phosphorus transformation rate and fractionation in some calcareous soils
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Aging effects on phosphorus transformation rate and fractionation in some calcareous soils

机译:老化对某些石灰性土壤中磷转化速率和分馏的影响

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摘要

Rate of phosphorus (P) transformation in soils can significantly influence P fertility of soils. The transformation rate and fractionations of P in 20 calcareous soils of varying properties were investigated. Phosphorus was added to the samples at rates of 200 mg kg(-1) soil. The samples were incubated for 3, 24, 168, 336, 504, 720,1440, and 2160 h at 25 degrees C and Olsen-P was determined after each incubation period. The P release in the studied soils was initially rapid followed by a slower release that lasted up to 2160 h. The transformation rate of Olsen-P for soils was estimated by best fitted kinetic equation (parabolic) for above incubation periods. There were differences in the rates at which redistribution took place between soils and P. Phosphorus in control and amended soils were fractionated before and after 2160 h incubation by sequential extraction procedure, in which the P fractions were experimentally defined as exchangeable (KCl-P), Fe- and Al-bound (NaOH-P), Ca-bound (HCl-P), and residual P (Res-P) fractions. The results showed a sharp decrease in Olsen-P within 3 h after P addition. Relative NaOH-P in amended soils ranged from 6.6 to 13.5%. Relative HCl-P, Res-P and KCl-P ranged from 49.9 to 71.2, 13.5 to 26.7, and 7.4 to 13.3%, respectively. There were changes in the proportional distribution of P in all the soils during 2160 h of incubation with amended P. In general the proportions of P associated with the most weakly bound fraction (KCl-P) tended to decrease, with corresponding increases in the NaOH-P and HCl-P fractions during the incubation. The principal component analysis showed that the first four components explained 77.1% of the overall variation.
机译:土壤中磷(P)的转化率会显着影响土壤的磷肥力。研究了20种不同性质的石灰质土壤中磷的转化率和分馏情况。将磷以200 mg kg(-1)土壤的速率添加到样品中。将样品在25℃下孵育3、24、168、336、504、720、1440和2160 h,并在每个孵育期后确定Olsen-P。在研究的土壤中,磷的释放最初是快速的,随后是缓慢的释放,持续了长达2160小时。通过上述最佳潜伏期的最佳拟合动力学方程(抛物线)估算Olsen-P在土壤中的转化率。在土壤和磷之间发生重新分布的速率存在差异。在对照和改良土壤中,在2160 h之前和之后,通过顺序提取程序对磷进行了分级分离,实验中将P馏分定义为可交换的(KCl-P) ,Fe和Al结合(NaOH-P),Ca结合(HCl-P)和残留的P(Res-P)馏分。结果表明,添加P后3小时内Olsen-P急剧下降。改良土壤中的相对NaOH-P范围为6.6%至13.5%。相对HCl-P,Res-P和KCl-P的范围分别为49.9至71.2%,13.5至26.7和7.4至13.3%。在用改良的磷孵育2160小时后,所有土壤中磷的比例分布都有变化。通常,与最弱结合部分(KCl-P)相关的磷比例倾向于降低,而NaOH则相应增加孵育过程中的-P和HCl-P馏分。主成分分析表明,前四个成分占总体变化的77.1%。

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