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Effects of harvesting regimes on carbon and nitrogen dynamics of boreal forests in central Canada: a process model simulation

机译:采伐方式对加拿大中部寒带森林碳氮动态的影响:过程模型模拟

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The effects of different harvesting intensities and rotation lengths on the long-term carbon (C) and nitrogen (N) dynamics of boreal forests in central Canada were simulated using the process-based ecosystem model CENTURY 4.0. Three harvesting intensities and four rotation lengths were investigated. Results suggest that intensive harvesting regimes (e.g. whole-tree harvesting (WTH)) would decrease total ecosystem C, soil C storage, and N availability, compared with conventional harvesting (CH). Harvested biomass would increase with increasing harvesting intensity. Net loss of forest productivity (indicated by above-ground biomass) would be higher in higher productivity stands in the low boreal ecoclimatic region. For a given harvesting intensity, total ecosystem C stock and N availability would be highest with long rotations (120 years) and reduced under shorter rotations (60 and 30 year). Extremely short rotations (i.e. 30 year) would reduce boreal forest productivity by as much as 65%. Longer rotations and less intensive harvesting could increase C sequestration about 36-40% in the boreal forest region of central Canada. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 62]
机译:使用基于过程的生态系统模型CENTURY 4.0,模拟了加拿大中部北方森林不同采伐强度和轮伐长度对长期碳(C)和氮(N)动态的影响。研究了三种收获强度和四种旋转长度。结果表明,与常规采伐(CH)相比,密集采伐制度(例如整棵树采伐(WTH))将减少生态系统的总碳,土壤碳储量和氮的有效性。收获的生物量将随着收获强度的增加而增加。在低寒带气候地区,较高生产力的林分中森林生产力的净损失(由地上生物量表示)会更高。对于给定的收获强度,长期轮作(120年)时,生态系统的总碳储量和氮素利用率最高,而轮换较短(60年和30年)时,生态系统的碳储量和氮素利用率最高。极短的轮作(即30年)会使北方森林的生产力降低多达65%。在加拿大中部的北方森林地区,更长的轮作和不那么密集的采伐可能会使碳固存增加约36-40%。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:62]

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