首页> 外文期刊>Tree Physiology >Growth of mature boreal Norway spruce was not affected by elevated [CO2] and/or air temperature unless nutrient availability was improved. (Special Section: The Flakaliden experiments: climate, nutritional and CO2 effects on boreal forests.)
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Growth of mature boreal Norway spruce was not affected by elevated [CO2] and/or air temperature unless nutrient availability was improved. (Special Section: The Flakaliden experiments: climate, nutritional and CO2 effects on boreal forests.)

机译:除非养分利用率提高,否则成熟的北方挪威云杉的生长不会受到[CO 2 ]和/或气温升高的影响。 (特别部分:Flakaliden实验:气候,营养和二氧化碳对北方森林的影响。)

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摘要

The growth responses of mature Norway spruce (Picea abies (L.) Karst.) trees exposed to elevated [CO2] (CE; 670-700 ppm) and long-term optimized nutrient availability or elevated air temperature (TE; +or-3.9 degrees C) were studied in situ in northern Sweden in two 3 year field experiments using 12 whole-tree chambers in ca. 40-year-old forest. The first experiment (Exp. I) studied the interactions between CE and nutrient availability and the second (Exp. II) between CE and TE. It should be noted that only air temperature was elevated in Exp. II, while soil temperature was maintained close to ambient. In Exp. I, CE significantly increased the mean annual height increment, stem volume and biomass increment during the treatment period (25, 28, and 22%, respectively) when nutrients were supplied. There was, however, no significant positive CE effect found at the low natural nutrient availability. In Exp. II, which was conducted at the natural site fertility, neither CE nor TE significantly affected height or stem increment. It is concluded that the low nutrient availability (mainly nitrogen) in the boreal forests is likely to restrict their response to the continuous rise in [CO2] and/or TE.
机译:暴露于升高的[CO 2 ](C E ; 670-700 ppm)和长距离的挪威成熟云杉(Picea abies(L.)喀斯特)树的生长响应在瑞典北部进行了为期3年的两次为期三年的田间试验,使用了大约12个全树房,对长期优化的养分利用率或气温升高(T ; +或-3.9摄氏度)进行了研究。 40岁的森林。第一个实验(实验I)研究了C E 和养分有效性之间的相互作用,第二个实验(实验II)在C E 和T E 。应该注意的是,只有空气温度在Exp中升高。 II,同时保持土壤温度接近环境温度。在实验中I,C E 在提供养分的处理期间显着增加了年平均身高增加,茎体积和生物量增加(分别为25%,28%和22%)。然而,在自然营养素利用率低的情况下,没有发现显着的正C E 正效应。在实验中II是在自然部位的肥力条件下进行的,C E 和T E 均未显着影响身高或茎粗。结论是,北方森林的养分利用率低(主要是氮)可能会限制其对[CO 2 ]和/或T E 持续升高的响应。 。

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