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Simulated effects of dryland cropping intensification on soil organic matter and greenhouse gas exchanges using the DAYCENT ecosystem model

机译:使用DAYCENT生态系统模型模拟旱地集约化对土壤有机质和温室气体交换的影响

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摘要

We present evidence to show that DAYCENT can reliably simulate soil C levels, crop yields, and annual trace gas fluxes for various soils. DAYCENT was applied to compare the net greenhouse gas fluxes for soils under different land uses. To calculate net greenhouse gas flux we accounted for changes in soil organic C, the C equivalents of N_2O emissions and CH_4 uptake, and the CO_2 costs of N fertilizer production. Model results and data show that dryland soils that are depleted of C due to conventional till winter wheat/fallow cropping can store C upon conversion to no till, by reducing the fallow period, or by reversion to native vegetation. However, model results suggest that dryland agricultural soils will still be net sources of greenhouse gases although the magnitude of the source can be significantly reduced and yields can be increased upon conversion to no till annual cropping.
机译:我们提供的证据表明,DAYCENT可以可靠地模拟土壤C含量,农作物产量以及各种土壤的年度痕量气体通量。 DAYCENT用于比较不同土地利用下土壤的温室气体净排放量。为了计算温室气​​体净排放量,我们考虑了土壤有机碳的变化,N_2O排放的碳当量和CH_4的吸收以及氮肥生产的CO_2成本。模型结果和数据表明,由于常规耕作冬小麦/小休作而使缺碳的旱地土壤在转化为免耕,减少休耕期或恢复为原生植被后可以储存碳。然而,模型结果表明,旱地农业土壤仍将是温室气体的净来源,尽管在转化为不播种后每年可大幅减少源的数量,并可增加产量。

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