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我国东部典型气候区土壤全磷及其活性组分含量特征

Characteristics of total phosphorus content and its active components in soils of typical climate zones in eastern China

  • 摘要: 土壤磷及其赋存形态对农田施肥管理和磷素利用效率优化具有重要意义。本文以我国东部四个气候区(中温带、暖温带、亚热带、热带)为研究对象,分析了不同土地利用方式(林地、旱地、水田)下土壤全磷(TP)、有效磷(Olsen P)和微生物量磷(MBP)的含量特征。结果表明,暖温带土壤TP含量较高,但Olsen P和MBP较低,可能与高pH条件下磷的固定作用有关。中温带和热带土壤TP含量较低,Olsen P较高,主要由中温带有机质含量高及热带高温湿润条件促进磷素转化引起。亚热带土壤TP和Olsen P最低,可能由于强降水和土壤铁铝氧化物的固定作用。不同土地利用方式中,农田土壤TP、Olsen P和MBP普遍高于林地土壤。中温带水田Olsen P高于旱地,但MBP低;暖温带水田和旱地土壤无显著差异;亚热带和热带旱地土壤Olsen P和MBP高于水田。总体上,旱地土壤磷素有效性较高,微生物同化磷素较强。环境因子分析表明,土壤TP、Olsen P和MBP的含量与土壤有机碳、年均温和年降水相关。研究为优化我国东部农田磷素管理策略提供了科学依据。

     

    Abstract: Soil phosphorus and its forms play a crucial role in farmland fertilization management and optimizing phosphorus utilization efficiency. This study focused on four climate regions in eastern China (mid-temperate, warmtemperate, subtropical, and tropical zones) to analyze the content characteristics of total phosphorus (TP), available phosphorus (Olsen P), and microbial biomass phosphorus (MBP) under different land use types (forest land, dry land, and paddy fields). The results revealed that soils in the warm-temperate zone had relatively high TP but lower Olsen P and MBP, likely due to phosphorus fixation under high pH conditions. In contrast, soils in the mid-temperate and tropical zones exhibited lower TP but higher Olsen P, attributed to high organic matter content in the mid-temperate zone and enhanced phosphorus transformation under high temperature and humidity in the tropical zone. Subtropical soils had the lowest TP and Olsen P levels, possibly due to heavy rainfall and fixation by soil iron and aluminum oxides. Across land use types, farmland soils generally had higher TP, Olsen P, and MBP compared to forest soils. In the midtemperate zone, paddy fields had higher Olsen P but lower MBP than dry lands; however, no significant differences were observed between paddy fields and dry lands in the warm-temperate zone. In the subtropical and tropical zones, dry lands showed higher Olsen P and MBP levels compared to paddy fields. Overall, dry land soils demonstrated greater phosphorus availability and microbial phosphorus assimilation. Environmental factor analysis indicated that soil TP, Olsen P, and MBP were significantly correlated with soil organic carbon, mean annual temperature, and annual precipitation. This study provides scientific insights for optimizing phosphorus management strategies for farmland in eastern China.

     

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