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原文連結
論文資訊
- 類型:已發表論文
- 日期:2008
摘要
Through its effect on individual 代謝, temperature drives 生物ly controlled fluxes and transformations of energy and materials in ecological systems. Because primary succession involves feedbacks among multiple 生物 and abiotic processes, we expected it to exhibit complex dynamics and unusual temperature dependence. We present a model based on first principles of chemical kinetics to explain how 生物ly mediated temperature dependence of "reactant" concentrations can inflate the effective temperature dependence of such processes. We then apply this model to test the hypothesis that the temperature dependence of early primary succession is amplified due to more rapid accumulation of reactants at higher temperatures. Using previously published data from the lava flows of Mauna Loa, HI, we show that r
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