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Temporal changes of soil physic-chemical properties at different soil depths during larch afforestation by multivariate analysis of covariance

机译:落叶松造林过程中不同土壤深度土壤理化性质的时空变化

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摘要

Soil physic-chemical properties differ at different depths; however, differences in afforestation-induced temporal changes at different soil depths are seldom reported. By examining 19 parameters, the temporal changes and their interactions with soil depth in a large chronosequence dataset (159 plots; 636 profiles; 2544 samples) of larch plantations were checked by multivariate analysis of covariance (MANCOVA). No linear temporal changes were found in 9 parameters (N, K, N:P, available forms of N, P, K and ratios of N: available N, P: available P and K: available K), while marked linear changes were found in the rest 10 parameters. Four of them showed divergent temporal changes between surface and deep soils. At surface soils, changing rates were 262.1 g·kg−1·year−1 for SOM, 438.9 mg·g−1·year−1 for C:P, 5.3 mg·g−1·year−1 for C:K, and −3.23 mg·cm−3·year−1 for bulk density, while contrary tendencies were found in deeper soils. These divergences resulted in much moderated or no changes in the overall 80-cm soil profile. The other six parameters showed significant temporal changes for overall 0–80-cm soil profile (P: −4.10 mg·kg−1·year−1; pH: −0.0061 unit·year−1; C:N: 167.1 mg·g−1·year−1; K:P: 371.5 mg·g−1 year−1; N:K: −0.242 mg·g−1·year−1; EC: 0.169 μS·cm−1·year−1), but without significant differences at different soil depths (P > 0.05). Our findings highlight the importance of deep soils in studying physic-chemical changes of soil properties, and the temporal changes occurred in both surface and deep soils should be fully considered for forest management and soil nutrient balance.
机译:不同深度的土壤理化性质不同。然而,很少有报道说在不同土壤深度的造林活动引起的时间变化差异。通过检查19个参数,通过协方差多变量分析(MANCOVA)来检查大型人工林数据序列(159个图; 636个剖面; 2544个样本)中的时间变化及其与土壤深度的相互作用。在9个参数(N,K,N:P,N,P,K的可用形式以及N:可用N,P:可用P和K:可用K)的比率中未发现线性时间变化,而明显的线性变化为在其余10个参数中找到。其中四个显示出表层土壤与深层土壤之间的时空变化。在表层土壤中,SOM的变化速率为262.1 g·kg -1 ·年 -1 ,为438.9 mg·g -1 ·年< C:P为sup> -1 ,C:K为5.3mg·g -1 ·year -1 ,− 3.23 mg·cm -3 ·年 -1 ,而在较深的土壤中发现相反的趋势。这些差异导致整个80厘米土壤剖面的变化很小或没有变化。其他六个参数显示了整个0-80-cm土壤剖面的显着时间变化(P:−4.10 mg·kg -1 ·year -1 ; pH:−0.0061单位·年 −1 ; C:N:167.1毫克·克 -1 ·年 -1 ; K:P:371.5毫克·克 -1 year -1 ; N:K:−0.242 mg·g -1 ·year -1 ; EC:0.169μS·cm -1 ·年 -1 ),但在不同土壤深度下无显着差异(P> 0.05)。我们的发现凸显了深层土壤在研究土壤性质的物理化学变化中的重要性,对于森林管理和土壤养分平衡,应充分考虑表层和深层土壤中发生的时间变化。

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