外源有机物添加对黄绵土团聚体形成和稳定性的影响

Effects of Exogenous Organic Matter Addition on Aggregate Formation and Stability in Loessal Soil

  • 摘要:
    目的 为探究外源有机物添加对黄绵土团聚体稳定性的改良效果。
    方法 采用田间原位埋袋试验,以黄绵土为研究对象,设置六种不同类型(果木枝条生物炭FB;小麦秸秆生物炭WB;小麦秸秆WS;油菜秸秆RS;鸡粪CM;牛粪CD)和不同添加量(1%、3%、5%)外源有机物添加,原位培养210 d后测定土壤基础理化性质、各粒级团聚体含量和团聚体稳定性。
    结果 各处理均能提高土壤有机质、全氮、电导率,且随着有机物添加量的增加而增加。与外源有机物添加量1%和3%相比,添加量为5%的处理使土壤中 > 0.25 mm粒径团聚体含量显著增加(P < 0.05)。秸秆处理促进土壤颗粒团聚,增加了水稳性团聚体含量(> 0.5 mm)。不同有机物料添加后土壤团聚体平均重量直径(MWD)表现为秸秆 > 畜禽粪便 > 生物炭,各处理MWD的数值范围为0.18 ~ 0.52 mm。就添加量而言,小麦秸秆、油菜秸秆和鸡粪添加的几何平均直径(GMD)随着添加量的增加而增加,而果木枝条生物炭则是随着添加量的增加而减少。WS5(5%小麦秸秆)、CM5(5%鸡粪)和CD5(5%牛粪)使黄绵土的不稳定性团粒指数(ELT)显著降低(P < 0.05),分别降低了29.91%、28.17%和23.33%,表明团聚体稳定性增强。
    结论 5%秸秆添加能有效增加 > 0.25 mm粒径团聚体含量,提高团聚体稳定性;且高添加量的外源有机物有利于增强土壤团聚体稳定性。

     

    Abstract:
    Objective This study aimed to investigate the ameliorative effects of exogenous organic additions on the aggregate stability of Loessal soil.
    Method A field-based in-situ bag incubation experiment was conducted. Six types of exogenous organic additions—fruit tree branch biochar (FB), wheat straw biochar (WB), wheat straw (WS), rapeseed straw (RS), chicken manure (CM), and cow manure (CD)—were applied at three rates (1%, 3% and 5%). Soil basic physicochemical properties, the contents of water-stable aggregates in different size classes and aggregate stability indices were determined.
    Result All treatments increased soil organic matter, total nitrogen, and electrical conductivity, with the values increasing alongside the application rates. Compared to the 1% and 3% application rates, the 5% rate significantly increased the content of > 0.25 mm aggregates (P < 0.05). Straw amendments (WS, RS) significantly promoted soil particle aggregation and increased the content of water-stable macroaggregates (> 0.5 mm). The mean weight diameter (MWD) of aggregates following different amendments decreased in the order: straws > manures > biochars, with values ranging from 0.18 to 0.52 mm. Regarding application rate, the geometric mean diameter (GMD) increased with higher application rates for wheat straw, rapeseed straw and chicken manure, but decreased for fruit tree branch biochar. Treatments of WS5, CM5 and CD5 significantly decreased the erodibility indices (ELT) by 29.91%, 28.17% and 23.33%, respectively (P < 0.05), which indicates to enhance aggregate stability.
    Conclusion The application of straws at a 5% rate was most effective in increasing the content of > 0.25 mm aggregates and improving aggregate stability. Overall, a higher application rate (5%) of exogenous organic amendments was beneficial for enhancing the stability of soil aggregates in Loessal soil.

     

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