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Aboveground Biomass and Carbon Accumulation 19 Years Post-Windthrow and Salvage Logging

机译:地上生物量和碳积累19年后发后和打捞伐木

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摘要

Natural disturbances shape forest ecosystem characteristics, including carbon storage and structure. Often, natural disturbances are compounded with anthropogenic disturbances, which may alter the trajectory of forest carbon stock recovery. Heterogeneous levels of disturbance severity in compound disturbance events add an additional layer of complexity. This paper examines the effect of a moderate-severity wind disturbance and subsequent salvage logging on forest biomass and carbon stock recovery over 19 years. We investigate the recovery of aboveground tree biomass following a wind disturbance and salvage logging and examine the role of wind disturbance severity on biomass accumulation rates. We use pre-disturbance, 3 years post-wind disturbance and 19 years post-wind disturbance measurements of tree biomass across two adjacent sites at Natchez Trace State Forest for Site A and Site B in east central Tennessee. We found no significant difference in the carbon storage at Site A (pre = 92 MgC/ha; 19 years post-disturbance = 83 MgC/ha) or Site B (pre = 66 MgC/ha; 19 years post-disturbance = 67) when comparing the pre-disturbance level of aboveground tree carbon storage with the 19-years post-disturbance levels. Furthermore, we found no evidence that salvage logging reduced the rate of live tree carbon accumulation. The corresponding rates of mean annual carbon accumulation (MgC/ha) are as follows: Site A Unsalvaged (1.07), Site A Salvaged (1.25) and Site B Salvaged (2.02). Contrary to our prediction, greater wind damage severity was weakly associated with higher rates of biomass accumulation (R2 = 0.17). While we found no negative effect of salvage logging on the aboveground tree carbon accumulation rate, salvage logging alters other carbon pools, including coarse woody debris. Salvage logging did not reduce the rate of carbon stock recovery, and a higher wind disturbance severity was associated with a greater rate of carbon stock recovery.
机译:天然杂交造型森林生态系统特征,包括碳储存和结构。通常,具有人为紊乱的自然紊乱,可以改变森林碳储备的轨迹。复合障碍事件中的异质水平的扰动严重程度增加了另外的复杂性。本文研究了中等严重程度风扰,随后挽救了19年来对森林生物量和碳股回收的影响。我们调查风扰动和打捞伐木后地上树生物质的回收,并检查风扰动严重程度对生物质积累率的作用。我们使用预扰动,3年后风干扰,19年在东部中央田纳西州的Natchez轨道态森林中的两个相邻地点的树生物量的19年后风扰动测量。我们发现位点A的碳储存没有显着差异(pre = 92 mgc / ha; 19年后扰动= 83 mgc / ha)或网站b(pre = 66 mgc / ha; 19年后扰乱= 67)在与19年后扰动水平的与19年后碳储存的扰乱水平比较时比较。此外,我们发现没有证据表明抢救测量降低了活树碳积累速率。是平均年度碳积累的对应率(MGC /公顷)如下:站点A Unsalvaged(1.07),站点A报废(1.25)和站点B报废(2.02)。与我们的预测相反,更大的风损伤严重程度与较高的生物质积累速率弱相关(R2 = 0.17)。虽然我们发现救助测井没有负面影响地面树碳累积率,但打捞伐木改变了其他碳泳池,包括粗糙的木质碎片。打捞伐木没有降低碳储备率,并且较高的风扰动严重程度与碳储备率较高有关。

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