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DAYCENT Simulations to Test the Influence of Fire Regime and Fire Suppression on Trace Gas Fluxes and Nitrogen Biogeochemistry of Colorado Forests

机译:DAYCENT模拟,用于测试火灾状况和灭火方式对科罗拉多森林微量气体通量和氮生物地球化学的影响

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Biological activity and the physical environment regulate greenhouse gas fluxes (CH4, N2O and NO) from upland soils. Wildfires are known to alter these factors such that we collected daily weather records, fire return intervals, or specific fire years, and soil data of four specific sites along the Colorado Front Range. These data were used as primary inputs into DAYCENT. In this paper we test the ability of DAYCENT to simulate four forested sites in this area and to address two objectives: (1) to evaluate the short-term influence of fire on trace gas fluxes from burned landscapes; and (2) to compare trace gas fluxes among locations and between pre-/post- fire suppression. The model simulations indicate that CH4 oxidation is relatively unaffected by wildfire. In contrast, gross nitrification rates were reduced by 13.5–37.1% during the fire suppression period. At two of the sites, we calculated increases in gross nitrification rates (100%), and N2O and NO fluxes during the year of fire relative to the year before a fire. Simulated fire suppression exhibited decreased gross nitrification rates presumably as nitrogen is immobilized. This finding concurs with other studies that highlight the importance of forest fires to maintain soil nitrogen availability.
机译:生物活性和物理环境调节了陆地土壤温室气体通量(CH 4 ,N 2 O和NO)。众所周知,野火会改变这些因素,例如,我们收集了每日天气记录,回火间隔或特定的火灾年份,以及科罗拉多州前沿山脉沿线四个特定地点的土壤数据。这些数据被用作DAYCENT的主要输入。在本文中,我们测试了DAYCENT模拟该地区四个森林地点并解决两个目标的能力:(1)评估火灾对燃烧景观中微量气体通量的短期影响; (2)比较各个位置之间以及灭火前后的痕量气体通量。模型模拟表明,CH 4 的氧化相对不受野火的影响。相反,在灭火期间,总硝化率降低了13.5–37.1%。在两个地点,我们计算了火灾年份相对于火灾发生前的总硝化率(> 100%)以及N 2 O和NO通量的增加。模拟灭火显示出总的硝化速率下降,大概是因为固定了氮气。这一发现与其他研究一致,这些研究强调了森林大火对维持土壤氮素供应的重要性。

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