首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Effects of stand age on soil respiration in Pinus massoniana plantations in the hilly red soil region of Southern China
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Effects of stand age on soil respiration in Pinus massoniana plantations in the hilly red soil region of Southern China

机译:南方丘陵红土地区Pinus massoniana种植园疗效对土壤呼吸的影响

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It is of great importance to assess the effect of stand age on soil respiration (SR) to understand the potential carbon sequestration capacity of afforestation. In this study, we investigated the changes in SR and microclimate variables in a chronosequence of four different aged stands (8-, 17-, 27-, and 36-year-old) in a Pinus massoniana plantation in the soil erosion area of southern China. SR was found to have obvious seasonal dynamics among the four aged stands, and the highest and lowest value in summer and winter, respectively. We also found that SR increased with increasing stand age, and the mean SRs for the 8-, 17-, 27-, and 36-year-old stands were 1.45, 1.83, 2.03, and 2.32 pmol CO2 m(-2) s(-1), respectively. Furthermore, all stands showed that SR increased exponentially with increasing soil temperature and that the temperature sensitivity of SR (Q(10)) was 2.08, 2.09, 2.23, and 2.19 for 8-, 17-, 27-, and 36-year-old stands, respectively. Moreover, the Q(10) values for the 27- and 36-year-old stands were significantly higher than those of the other two stands (p 0.05). Stepwise multiple regression analysis indicated that soil temperature had a greater effect on SR than soil organic carbon. This study provides insights for estimating SR in P. massoniana plantations in the eroded area of southern China and highlights the need to consider the effect of stand age and seasonal patterns when predicting the carbon budget under different future climate change scenarios.
机译:评估待机时间对土壤呼吸(SR)的效果非常重要,以了解造林的潜在碳封存能力。在这项研究中,我们调查了在南部土壤侵蚀地区的锡妥尼亚地区的四个不同老年人(8-,17岁,27-,36岁)的四分之一不同老年人(8-,17岁,27-,36岁)中的SR和微气候变量的变化中国。 SR分别在四个老年人的立场中具有明显的季节性动态,以及夏季和冬季的最高和最低价值。我们还发现SR随着站立年龄的增加而增加,8-,17-,27-和36岁的级别的平均SRS为1.45,1.83,2.03和2.32 PMOL CO2 M(-2)S (-1)分别。此外,所有立体都显示SR随着土壤温度的增加,SR的温度敏感性(Q(10))为2.08,2.09,2.23和2.19,为8-,17-,27-和36岁 - 老站点分别。此外,27-岁和36岁的支架的Q(10)值显着高于其他两个支架(P <0.05)。逐步多元回归分析表明土壤温度对Sr的影响比土壤有机碳更大。本研究提供了估计中国南方侵蚀地区的P. Massoniana种植园中SR的见解,并突出了在预测不同未来的气候变化情景下预测碳预算时需要考虑立场和季节性模式的效果。

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