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Effects of elevated atmospheric CO2 on root decomposition in a scrub oakecosystem

机译:大气CO2浓度升高对灌木栎生态系统根系分解的影响

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The effects of elevated atmospheric CO2 on fine root decomposition over a 828-day period were investigated using open top chambers with both ambient and elevated (700 ppm) CO2 treatments in an oak-palmetto scrub ecosystem at Kennedy Space Center, Florida. Carbon dioxide enrichment of the chambers began 15 May 1996. The experiment included roots grown in ambient and elevated carbon dioxide. Vertical litterbags installed in September 1996 in each elevated and ambient chamber incubated from December 1996 to December 1998 showed no significant treatment effect on fine root or rhizome mass loss. Initial fine root percentage mass loss varied from 10.3% to 13.5% after three months; 55.5% to 38.3% of original mass had been lost after 828 days. A period of nitrogen immobilization occurred in both fine roots and rhizomes' in the elevated CO2 incubation, which is a potential mechanism for nitrogen conservation for this system in an elevated CO2 world.
机译:在佛罗里达州肯尼迪航天中心的橡树—帕尔默托灌木丛生态系统中,使用开放式顶棚进行了大气和高浓度(700 ppm)CO2处理的828天的大气CO2浓度升高对细根分解的影响。室的二氧化碳富集开始于1996年5月15日。实验包括在环境中生长的根和升高的二氧化碳。 1996年9月在1996年12月至1998年12月培养的每个高架和周围环境室内安装的立式垃圾袋对细根或根茎质量损失没有明显的处理效果。三个月后,最初的细根质量损失百分比从10.3%到13.5%不等; 828天后损失了原始质量的55.5%至38.3%。在较高的CO2孵化条件下,细根和根茎都发生了一个固氮期,这是在较高的CO2环境中该系统保氮的潜在机制。

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