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Simulation of Biomass Yield and Soil Organic Carbon under Bioenergy Sorghum Production

机译:生物能源高粱生产下生物量产量和土壤有机碳的模拟

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摘要

Developing sustainable management practices including appropriate residue removal and nitrogen (N) fertilization for bioenergy sorghum is critical. However, the effects of residue removal and N fertilization associated with bioenergy sorghum production on soil organic carbon (SOC) are less studied compared to other crops. The objective of our research was to assess the impacts of residue removal and N fertilization on biomass yield and SOC under biomass sorghum production. Field measurements were used to calibrate the DNDC model, then verified the model by comparing simulated results with measured results using the field management practices as agronomic inputs. Both residue removal and N fertilization affected bioenergy sorghum yields in some years. The average measured SOC at 0–50 cm across the treatments and the time-frame ranged from 47.5 to 78.7 Mg C ha−1, while the simulated SOC was from 56.3 to 67.3 Mg C ha−1. The high correlation coefficients (0.65 to 0.99) and low root mean square error (3 to 18) between measured and simulated values indicate the DNDC model accurately simulated the effects of residue removal with N fertilization on bioenergy sorghum production and SOC. The model predictions revealed that there is, in the long term, a trend for higher SOC under bioenergy sorghum production regardless of residue management.
机译:开发可持续管理方法,包括适当去除生物能源高粱的残留物和施肥氮至关重要。但是,与其他农作物相比,与生物能源高粱生产相关的残留物去除和氮肥对土壤有机碳(SOC)的影响研究较少。我们研究的目的是评估在生物质高粱生产下,去除残留物和施氮对生物量产量和SOC的影响。田间测量用于校准DNDC模型,然后使用田间管理实践作为农艺输入,通过将模拟结果与测量结果进行比较来验证模型。残留物的去除和氮肥的施肥都影响了生物能源高粱的产量。整个处理过程中,在0–50 cm处测得的平均SOC为47.5至78.7 Mg C ha -1 ,而模拟SOC为56.3至67.3 Mg C ha -1 。测量值和模拟值之间的高相关系数(0.65至0.99)和低均方根误差(3至18)表明DNDC模型准确地模拟了氮肥去除残留物对生物能源高粱产量和SOC的影响。该模型预测表明,从长远来看,无论残留管理如何,在生物能源高粱生产下SOC都有较高的趋势。

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