不同土地利用方式下施加硅肥对土壤N2O排放的影响

Effects of Silicon Fertilizer Application on Soil N2O Emissions Across Different Land-Use Patterns

  • 摘要:
    目的 旨在探讨施加硅肥对氧化亚氮(N2O)排放的影响,明确不同土地利用方式下施用硅肥对N2O排放的影响其机制,为控制N2O排放提供理论依据。
    方法 试验采用双因素完全随机设计的培养试验,共设置6个处理,包括3种土地利用方式为草地(G)、阔叶林(F)和竹林(B),2种硅肥水平为不施硅(S0)和施硅(S1)。在培养的第0、1、3、7、15、30 d分别测定土壤N2O排放速率、铵态氮和硝态氮含量及3种酶(硝酸还原酶、亚硝酸还原酶和脲酶)活性。
    结果 无论土地利用类型如何,施用硅肥均显著降低了土壤N2O排放速率,草地、阔叶林和竹林土壤N2O排放总量分别减少了11.6%、16.03%和11.9%;硅肥施用显著降低了土壤铵态氮和硝态氮含量及3种酶(硝酸还原酶、亚硝酸还原酶和脲酶)活性。相关性分析表明,土壤N2O排放速率与土壤铵态氮和硝态氮含量及亚硝酸还原酶活性均显著相关。
    结论 不同土地利用方式下,施用硅肥对土壤N2O排放的影响在方向上具有一致性,表明硅肥在减少林草地土壤N2O排放方面具有广泛的适用性。

     

    Abstract:
    Objective The aim was to explore the impact of applying silicon fertilizer on the emission of nitrous oxide (N2O), and to clarify the mechanism of the effect of applying silicon fertilizer on N2O emissions under different land use conditions, in order to provide a theoretical basis for controlling N2O emissions.
    Method A two-factor completely randomized incubation experiment was conducted, comprising six treatments: three land-use types (grassland (G), broadleaf forest (F), and bamboo forest (B)) and two silicon fertilizer levels (no silicon application (S0) and silicon application (S1)). On the days of 0, 1, 3, 7, 15, and 30 of the incubation, the soil N2O emission rates, ammonium nitrogen and nitrate nitrogen contents, and the activities of three enzymes (nitrate reductase, nitrite reductase, and urease) were measured.
    Result Regardless of land-use type, silicon fertilizer application significantly reduced the soil N2O emission rate. The total N2O emissions from grassland, broadleaf forest and bamboo forest soils were reduced by 11.6%, 16.03% and 11.9%, respectively. Silicon fertilizer application also significantly decreased the soil ammonium nitrogen and nitrate nitrogen contents and the activities of the three enzymes (nitrate reductase, nitrite reductase, and urease). Correlation analysis indicated that the soil N2O emission rate was significantly correlated with soil ammonium nitrogen content, nitrate nitrogen content, and nitrite reductase activities.
    Conclusion The effect of silicon fertilizer application on soil N2O emissions was consistent in direction across the different land-use types, indicating that silicon fertilizer has broad applicability in reducing N2O emissions from forest and grassland soils.

     

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