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Evaluation of carbon accrual in afforested agricultural soils

机译:绿化农业土壤中碳积累的评估

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Afforestation of agricultural lands can provide economically and environmentally realistic C storage to mitigate for elevated CO2 until other actions such as reduced fossil fuel use can be taken. Soil carbon sequestration following afforestation of agricultural land ranges from losses to substantial annual gains. The present understanding of the controlling factors is inadequate for understanding ecosystem dynamics, modeling global change and for policy decision-makers. Our study found that planting agricultural soils to deciduous forests resulted in ecosystem C accumulations of 2.4 Mg C ha(-1) yr(-1) and soil accumulations of 0.35 Mg C ha(-1) yr(-1). Planting to conifers showed an average ecosystem sequestration of 2.5 and 0.26 Mg C ha(-1) yr(-1) in the soils but showed greater field to field variability than when planted to deciduous forest. Path analysis showed that Ca was positively related to soil C accumulations for both conifers and deciduous afforested sites and played a significant role in soil C accumulations in these sites. Soil N increases were closely related to C accumulation and were two times greater than could be explained by system N inputs from atmospheric deposition and natural sources. Our results suggest that the addition of Ca to afforested sites, especially conifers, may be an economical means to enhance soil C sequestration even if it does not result in increasing C in aboveground pools. The mechanism of N accumulation in these aggrading stands needs further investigation.
机译:在采取其他措施(例如减少化石燃料的使用)之前,绿化农田可以在经济和环境上提供切实可行的碳储存,以减轻二氧化碳的排放。农田绿化后的土壤固碳范围从损失到可观的年收益。目前对控制因素的理解不足以理解生态系统动态,为全球变化建模和决策者。我们的研究发现,在落叶林中种植农业土壤导致生态系统碳累积量为2.4 Mg C ha(-1)yr(-1)和土壤累积量为0.35 Mg C ha(-1)yr(-1)。种植针叶树表明土壤中的平均生态系统隔离度为2.5和0.26 Mg C ha(-1)yr(-1),但与种植落叶林相比,其田间差异更大。路径分析表明,对于针叶树和落叶造林地,钙与土壤碳积累呈正相关,并且在这些地点的土壤碳积累中起着重要作用。土壤氮的增加与碳的积累密切相关,并且比大气沉积和自然来源的系统氮输入所解释的要大两倍。我们的结果表明,向植树造林的地点(特别是针叶树)添加Ca可能是增加土壤固碳的经济手段,即使它不会导致地上池中C的增加。这些凝结林中氮素积累的机理有待进一步研究。

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