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首页> 外文期刊>Regulatory Mechanisms in Biosystems >The influence of carbon-containing greenhouse gases on the dynamics of radial increment of Pinus cembra and Picea abies in the conditions of the Gorgany Nature Reserve
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The influence of carbon-containing greenhouse gases on the dynamics of radial increment of Pinus cembra and Picea abies in the conditions of the Gorgany Nature Reserve

机译:含碳温室气体对松木自然保护区条件下松鼠CEMBRA和PICEA径向增量动态的影响

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摘要

Based on the tree-ring chronology, we studied the radial increment of Swiss stone pine (Pinus cembra L.) and common spruce, or Norway spruce (Picea abies L.) as indicators of dendrochronological studies and, based on tree-ring chronology, reconstructed the annual changes of stem biomass and the amount of carbon accumulated in it by P. cembra and P. abies in the Gorgany Nature Reserve. Swiss stone pine stands are of great zoological importance as biotopes of nutcracker (Nucifraga caryocatactes L.), crossbill (Loxia curvirostra L.), capercaillie (Tetrao urogallus L.) and other representatives of rare boreal fauna. Samples were taken from trees of the Playa forest district of the Brusturyan Forest Hunting Range State Enterprise of the Transcarpathian Regional Forestry Administration (P. cembra and P. abies) from trees that did not have visual signs of damage in the Gorgany Nature Reserve. By cross-dating the radial increments of two radii for each tree, individual chronological series were drawn up. Carbon sequestration in P. cembra and P. abies stem wood was evaluated on the basis of dendrochronological analysis of radial increment. The accuracy of cross-dating of dendrochronological series of individual trees, individual chronological series, and representativeness of the generalized series were verified by conventional methods. It was found that the average annual radial increment of the trees under study is 11.48 mm in P. cembra and 14.39 in P. abies, and varies in the range of 1.86–5.49 mm. The data obtained indicate an increase in the ability of P. cembra and P. abies to accumulate carbon with increasing age. The study of carbon sequestration in the stem wood of P. cembra and P. abies, based on dendrochronological analysis, made it possible to reconstruct the annual variation in stem biomass increment and accumulated carbon. The analysis of interdependence of the radial increment of P. cembra and P. abies in the Gorgany Nature Reserve and the value of carbon-containing greenhouse gases in the atmosphere, carried out by the augmented data sample, made it possible to specify the periods most significant for the formation of annual rings. The reaction in radial increment is most pronounced from June to September, with the annual values of carbon-containing greenhouse gases being maximally reflected in radial increment for the period from October to April.
机译:基于树圈年表,我们研究了瑞士石柱(Pinus Cembra L.)和普通云杉的径向增量,或挪威云杉(Picea Abies L.)作为树木学习的指标,并基于树木年纪,在Gorgany Nature Reserve中,重建了茎生物质的年度变化及其中积累的碳的量。瑞士石原柱的展台具有巨大的动物学重要性,作为胡桃夹子的生物缺陷(Nucifraga Caryocatactes L.),Capercaillie(Tetrao Urogallus L.)和罕见的北方动物群众的其他代表。来自跨喀尔巴阡山脉区域林业局(P.Cembra和P. Demies)的Brusturyan森林狩猎范围国家企业的Playa森林区树木的样品,从树木上没有瓦尔根自然保护区的视觉迹象。通过对每棵树的两个半径的径向增量进行交叉,绘制单个时间顺序系列。基于径向增量的树木分析评估P.Cembra和P. Demies Stem木材的碳封存。通过常规方法验证了单个树木,单独的时间序列系列,单独的时间顺序系列以及广义系列的代表性的交叉约会的准确性。结果发现,研究中的树木的平均年径向增量是11.48毫米的P.CEMBRA和14.39米,在1.86-5.49 mm的范围内变化。所获得的数据表明P.Cembra和P. Demies累积碳的能力增加了增加的年龄。基于树木分析的P.Cembra和P. Demies茎木材碳螯合研究使得可以重建茎生物质增量和累积碳的年度变化。通过增强数据样本进行的Gorgany Nature储备在Gorgany Nature储备中的径向增量的相互依存性分析,并通过增强数据样本进行的大气中的含碳温室气体的价值使得可以指定最多的期限对于年轮的形成重大。径向增量的反应从6月至9月最明显,含碳温室气体的年度值最大地反映在10月至4月的期间径向增量。

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