首页> 外文期刊>Canadian Journal of Forest Research >Rainfall pulse primarily drives litterfall respiration and itsTI Rainfall pulse primarily drives litterfall respiration and its contribution to soil respiration in a young exotic pine plantation in subtropical China
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Rainfall pulse primarily drives litterfall respiration and itsTI Rainfall pulse primarily drives litterfall respiration and its contribution to soil respiration in a young exotic pine plantation in subtropical China

机译:降雨脉冲主要驱动凋落物呼吸及其TI降雨脉冲主要驱动凋落物呼吸及其对中国亚热带的年轻奇异松树人工林的土壤呼吸作用

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Although litterfall respiration (R-L) is a key process of soil carbon dynamics in forests, factors that drive R-L and its contribution to soil respiration (R-S) have not been sufficiently studied. Using a litter removal method, we researched R-L and the ratio of R-L:R-S in a 20-year-old exotic slash pine (Pinus elliottii Englem.) plantation in subtropical China. Soil temperature explained 67%, 78%, and 25% of variation in R-S, mineral soil respiration (RS-L), and RL, respectively, but had little impact on R-L:R-S. To study influences besides temperature, measured R-S and RS-L were normalized using the Arrhenius equation. Even though this subtropical plantation was characterized by a humid climate with abundant precipitation, a rainfall pulse induced increase in soil moisture primarily drove R-L and its contribution to R-S but depressed RS-L. The response of R-L to rainfall and soil moisture was significantly more sensitive than that of RS-L. Furthermore, the effects of rainfall and soil moisture on R-S, R-L, and R-L:R-S were higher during the dry season (July-December) than during the wet season (January-June). In the context of climate change, R-L and its contribution to R-S are expected to decrease because of the predicted decrease in rainfall amount and frequency in subtropical regions.
机译:尽管凋落物呼吸(R-L)是森林中土壤碳动态的关键过程,但尚未充分研究驱动R-L及其对土壤呼吸(R-S)贡献的因素。我们使用清除凋落物的方法,研究了亚热带中国20年生异国阔叶松(Pinus elliottii Englem。)人工林中的R-L和R-L:R-S的比率。土壤温度分别解释了R-S,矿质土壤呼吸(RS-L)和RL的67%,78%和25%的变化,但对R-L:R-S的影响很小。为了研究温度以外的影响,使用Arrhenius方程对测量的R-S和RS-L进行了归一化。尽管该亚热带人工林的特点是气候潮湿,降水丰富,但降雨脉冲引起的土壤水分增加主要驱动了R-L及其对R-S的贡献,但压低了RS-L。 R-L对降雨和土壤湿度的响应比RS-L敏感得多。此外,在旱季(7月至12月),降雨和土壤水分对R-S,R-L和R-L:R-S的影响要高于雨季(1月至6月)。在气候变化的背景下,由于预计亚热带地区降雨量和频率的减少,R-L及其对R-S的贡献预计会降低。

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