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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Interaction of ice storms and management practices on current carbon sequestration in forests with potential mitigation under future CO2 atmosphere
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Interaction of ice storms and management practices on current carbon sequestration in forests with potential mitigation under future CO2 atmosphere

机译:交互的冰风暴和管理实践在当前在森林固碳潜在的缓解未来的二氧化碳气氛下

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摘要

Ice storms are disturbance events with potential impacts on carbon sequestration. Common forest management practices, such as fertilization and thinning, can change wood and stand properties and thus may change vulnerability to ice storm damage. At the same time, increasing atmospheric CO2 levels may also influence ice storm vulnerability. Here we show that a nonintensively managed pine plantation experienced a ~250 g C m?2 reduction in living biomass during a single storm, equivalent to ~30% of the annual net ecosystem carbon exchange of this ecosystem. Drawing on weather and damage survey data from the entire storm cell, the amount of C transferred from the living to the dead biomass pool (26.5 ± 3.3 Tg C), 85% of which will decompose within 25 years, was equivalent to ~10% of the estimated annual sequestration in conterminous U.S. forests. Conifer trees were more than twice as likely to be killed as leafless deciduous broadleaf trees. In the Duke Forest case study, nitrogen fertilization had no effect on storm-induced carbon transfer from the living to detrital pool while thinning increased carbon transfer threefold. Elevated CO2 (administered with the free-air CO2 enrichment (FACE) system) reduced the storm-induced carbon transfer to a third. Because of the lesser leaf area reduction, plots growing under elevated CO2 also exhibited a smaller reduction in biomass production the following year. These results suggest that forests may suffer less damage during each ice storm event of similar severity in a future with higher atmospheric CO2.
机译:冰雪风暴与潜在的干扰事件对固碳的影响。管理实践,如受精变薄,可以改变木头和属性因此可能会改变对冰暴的脆弱性损害。二氧化碳水平也可能影响冰风暴脆弱性。松树种植园管理经历了一个~ 250 g Cm ?风暴,相当于~ 30%的年度净生态系统碳交换的生态系统。利用天气和损害调查的数据整个风暴细胞,C转移从生活到死生物量池(26.5±3.3 Tg C),其中85%分解在25年内,相当于~ 10%估计年封存美国森林相接的。被杀的两倍多无叶的落叶阔叶树木。森林案例研究,氮肥的没有影响storm-induced碳转移的生活碎屑池而稀疏的增加碳转移的三倍。(管理自由二氧化碳富集(脸)系统)减少了storm-induced碳转移到三分之一。下面积减少,土地日益升高的二氧化碳也表现出了一个更小的生物量减少生产第二年。表明,森林可能遭受损害较少在每个冰风暴事件类似的严重性在未来更高的大气中的二氧化碳。

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