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Effects of considering greenhouse gas consequences on fertilizer use in loblolly pine plantations

机译:考虑温室气体后果对火炬松人工林肥料使用的影响

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Fertilizer use, widely practiced in forest plantation management to stimulate tree growth, contributes to greenhouse gas (GHG) emissions. We explore how accounting for GHG consequences affects optimal fertilizer application rates of commercial forest plantations. A generic model that maximizes the equivalent annual net benefit of timber production and GHG balance is developed and applied to loblolly pine (Pinus taeda L.) plantations in the southern United States. We find that fertilizer use still is a viable practice for managing loblolly pine plantations in the region although fertilizer application rate should be reduced when GHG consequences are valued. A greater reduction in fertilizer application rate is recommended where wood is used for paper production because life cycle GHG emissions of paper products are much higher than those of solid wood or bioenergy products. A higher fertilizer rate should be applied when forest residues are used for the production of bioenergy that offsets GHG emissions from consuming fossil fuels.
机译:在人工林管理中广泛使用肥料以刺激树木生长,这会导致温室气体(GHG)排放。我们探讨了考虑温室气体后果的方法如何影响商品林的最佳化肥施用量。开发了一种通用模型,该模型可以使木材生产和温室气体平衡的等效年净收益最大化,并将其应用于美国南部的火炬松(Pinus taeda L.)人工林。我们发现,尽管应重视温室气体的影响,但应减少肥料的施用量,但肥料的使用仍然是管理该地区火炬松人工林的可行做法。建议在将木材用于造纸的情况下更大程度地减少肥料的施用量,因为纸产品的生命周期温室气体排放量远高于实木或生物能源产品。当森林残留物用于生产生物能源时,应使用较高的肥料比率,以抵消消耗化石燃料所产生的温室气体排放。

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