Fractionation of Inorganic Phosphorus in Cold Temperate Forest Soils: Associating Mechanisms of Soil Aggregate Protection and Recovery Periods after Forest Fire Disturbance

IF 2.4 2区 农林科学 Q1 FORESTRY Forests Pub Date : 2024-05-17 DOI:10.3390/f15050875
Bing Wang, Ruihua Li, Zihao Wang, Rula Sa
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Abstract

The soil aggregate is the fundamental unit of soil structure. The fractionation characteristics and influencing factors of phosphorus (P) in soil aggregates inherently link its geochemical characteristics and recycling mechanism. This work investigated the fractionation characteristics of inorganic P in cold temperate forest soils and studied the impacts of recovery periods after forest fires and soil aggregate protection mechanisms on P fractionation. Our results showed that the TP, active P, stable P, and total organic carbon (TOC) contents varied with increasing recovery years after forest fire disturbance. The TP content in the coarse particulate organic matter fraction (cPOM) exhibited an increasing trend with the number of recovery years. Redundancy analysis (RDA) and correlation analysis indicated that TOC played a crucial role in influencing the dynamics of P fractionation during the recovery process. The order of TP levels in different soil aggregate fractions was as follows: μClay > dClay > LF > cPOM > dSilt > μSilt > iPOM, with significant contributions from the cPOM and dSilt fractions. The ranking of P fractions in bulk soils was as follows: ACa-P > Fe-P > Oc-P > Or-P > De-P > Al-P > Ex-P. The protective mechanism of soil aggregates had a more significant effect on TOC than TP, with the order of protective abilities being: Phy×biochem-protected > Biochem-protected > Phy-protected > Non-protected mechanism. TOC and recovery years emerged as critical factors influencing the dynamics of different P fractions during post-fire recovery. Soil aggregate protection mechanisms demonstrated significantly higher effects on TOC than on TP. This study provides insights into the fractionation mechanisms of P in the soil–forest ecosystem of the Greater Khingan Mountains, contributing to the sustainable development and utilization of cold temperate forest ecosystems.
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寒温带森林土壤中无机磷的分馏:森林火灾扰动后土壤团聚体保护和恢复期的关联机制
土壤团聚体是土壤结构的基本单位。磷(P)在土壤团聚体中的分馏特征和影响因素与其地球化学特征和循环机制有着内在联系。本研究调查了寒温带森林土壤中无机磷的分馏特征,并研究了森林火灾后的恢复期和土壤团聚体保护机制对磷分馏的影响。结果表明,随着森林火灾扰动后恢复年限的增加,土壤中 TP、活性 P、稳定 P 和总有机碳 (TOC) 的含量也随之变化。粗颗粒有机物(cPOM)中的 TP 含量随着恢复年数的增加呈上升趋势。冗余分析(RDA)和相关分析表明,TOC 在恢复过程中对 P 分馏的动态变化起着至关重要的影响作用。不同土壤团聚组分中 TP 含量的顺序如下μClay > dClay > LF > cPOM > dSilt > μSilt > iPOM,其中 cPOM 和 dSilt 部分的贡献较大。块状土壤中 P 组分的排序如下ACa-P > Fe-P > Oc-P > Or-P > De-P > Al-P > Ex-P。土壤团聚体的保护机制对总有机碳(TOC)的影响比对总氮(TP)的影响更显著,保护能力的排序为植物×生化保护机制 > 生化保护机制 > 植物保护机制 > 非保护机制。总有机碳和恢复年限是影响火灾后恢复期间不同磷组分动态变化的关键因素。土壤集聚保护机制对总有机碳的影响明显高于对总氮的影响。该研究有助于深入了解大兴安岭土壤-森林生态系统中磷的分馏机制,为寒温带森林生态系统的可持续发展和利用做出贡献。
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来源期刊
Forests
Forests FORESTRY-
CiteScore
4.40
自引率
17.20%
发文量
1823
审稿时长
19.02 days
期刊介绍: Forests (ISSN 1999-4907) is an international and cross-disciplinary scholarly journal of forestry and forest ecology. It publishes research papers, short communications and review papers. There is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental and/or methodical details must be provided for research articles.
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