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AN INTEGRATED MODEL APPROACH FOR QUANTIFYING CARBON EMISSIONS FROM RESIDUE-BASED BIOFUEL PRODUCTION

机译:一种基于残渣的生物燃料生产中的碳排放量量化的综合模型方法

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This paper presents an agricultural residue removal decision framework that couples the environmental process models WEPS, RUSLE2, SCI, and DAYCENT. One of the goals of this integrated model is to quantify the impacts of land management strategies on soil organic carbon and CO_2 emissions. Soil, climate, and land management practices are considered in determining sustainable residue removal rates using wind- and water-induced soil erosion and qualitative soil organic carbon constraints and to quantify the long-term impacts of sustainable residue removal on soil organic carbon and greenhouse gas emissions. Using this integrated model sustainable residue removal for four crop rotations, three tillage regimes, and four soil types representing nearly 70% of the arable acres in Boone County, Iowa are examined. Each scenario was performed for a twenty-year period. Soil organic carbon and CO_2 emission results are aggregated by soil type using crop rotation and tillage statistics. The soil type results are aggregated using a normalized percentage area to provide a county level estimate of soil organic carbon changes and CO_2 emissions. Results show that for the largest sustainable residue removal rate that soil organic carbon increased 3.53 - 6.63 Mg/ha over the 20 year simulation and that CO_2 emissions ranged from 3.50 -4.23 Mg/ha across the four soil types resulting in an average increase of soil organic carbon of 4.85 Mg/ha and CO_2 emission of 3.77 Mg/ha at the county level.
机译:本文提出了一个农业残留物去除决策框架,该框架结合了环境过程模型WEPS,RUSLE2,SCI和DAYCENT。该集成模型的目标之一是量化土地管理策略对土壤有机碳和CO_2排放的影响。在使用风和水引起的土壤侵蚀和定性的土壤有机碳约束条件来确定可持续的残留物清除率时,考虑土壤,气候和土地管理实践,并量化可持续残留物清除对土壤有机碳和温室气体的长期影响排放。使用该集成模型,对衣阿华州布恩县的四种作物轮作,三种耕作制度和四种土壤类型(约占可耕地的近70%)的可持续残留物进行了研究。每个方案执行了二十年。利用作物轮作和耕作统计数据,按土壤类型汇总土壤有机碳和CO_2排放结果。使用归一化的百分比面积汇总土壤类型结果,以提供县级土壤有机碳变化和CO_2排放量的估计值。结果表明,对于最大的可持续残留物去除率,在20年的模拟中,土壤有机碳增加3.53-6.63 Mg / ha,并且四种土壤类型的CO_2排放量在3.50 -4.23 Mg / ha范围内,导致土壤平均增加县级有机碳为4.85 Mg / ha,CO_2排放为3.77 Mg / ha。

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