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首页> 外文期刊>Forest Ecology and Management >Litterfall and leaf litter decomposition in a central African tropical mountain forest and Eucalyptus plantation
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Litterfall and leaf litter decomposition in a central African tropical mountain forest and Eucalyptus plantation

机译:非洲中部热带山区森林和桉树人工林的凋落物和凋落物分解

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摘要

Litterfall and leaf litter decomposition are important ecosystem processes that rarely have been quantified for African tropical forests. Litterfall was measured in the Nyungwe pristine forest (two years) (2 degrees 28' S, 29 degrees 06' E, 1915 m a.s.l.) and a nearby Eucalyptus plantation (one year) (2 degrees 26' S, 29 degrees 05 E, 1889 m a.s.l.) in southwest Rwanda. To test the species effect and home field advantage on litter decomposition a 361-days experiment with single- and mixed-species leaf litter was carried out. The single-species litterbags were only installed in the pristine forest while the mixed-species litterbags were installed in both forest stands.Total litterfall amounted to 4.1 +/- 0.9 and 2.2 +/- 0.5 ton ha(-1) year(-1) during the first year in the pristine forest and the Eucalyptus plantation, respectively; and 4.0 +/- 0.7 ton ha(-1) year(-1) during the second year in the pristine forest. The contribution of leaf litter in the pristine forest was 69% in the first year and 75% in the second year. In the Eucalyptus plantation leaves contributed 79%. Litterfall peaked in the major (July-August) and minor (December-January) dry seasons and at the onset of the rainy season (September-October).In the pristine forest, the initial decay rate was highest for Cleistanthus polystachyus (CP) leaf litter (0.0330 day(-1)), followed by the forest litter mixture (PE + CP + CG) (0.016 day(-1)), and was lowest for Parinari excelsa (PE) (0.0094 day(-1)). The final decay rate of CP, Carapa grandiflora (CG) and Eucalyptus litter mixture were similar (0.0014, 0.0013 and 0.0017 day(-1)) and lower than the final decay rate of forest litter mixture (PE + CP + CG) (0.0021 day(-1)). Decay rates could be related to litter properties such as nitrogen, lignin, Ca and polyphenol content. Mixing litter species caused a negative additive effect on the initial, while a positive additive effect was observed on the final decay rate in the pristine forest stand. Taken together, mixed-species litter showed increased mass loss compared to the expected weighed-based mass loss from the individual litter types in the mixture. Finally, stand type only affected the final decay rate of forest litter mixture (PE + CP + CG) that was lower in Eucalyptus than in pristine forest and is suggested to be caused by reduced forest floor humidity
机译:凋落物和凋落物分解是重要的生态系统过程,非洲热带森林很少对其进行量化。在Nyungwe原始森林(两年)(南纬2度28',东经29度06',1915 m asl)和附近的桉树人工林(一年)(南纬2度26',东纬29度29)下测量了凋落物1889 m asl)在西南卢旺达。为了测试物种效应和本田优势对凋落物分解的影响,我们进行了361天的单物种和混合物种叶凋落物实验。单物种的垃圾袋仅安装在原始森林中,而混合物种的垃圾袋则安装在两个林分中,凋落物总量分别为4.1 +/- 0.9和2.2 +/- 0.5吨公顷(-1)年(-1) )在第一年的原始森林和桉树人工林中;和在原始森林第二年的4.0 +/- 0.7吨ha(-1)年(-1)。第一年原始森林中凋落物的贡献为69%,第二年为75%。在桉树人工林中,叶片贡献了79%。在主要(7月至8月)和次要(12月至1月)的旱季以及雨季的开始(9月至10月),凋落物的峰值达到顶峰。在原始森林中,Cleistanthus polystachyus(CP)的初始衰减率最高。凋落物(0.0330天(-1)),其次是森林凋落物混合物(PE + CP + CG)(0.016天(-1)),而百里香(PEinari excelsa)(PE)最低(0.0094天(-1)) 。 CP,大花Car(CG)和桉树凋落物混合物的最终腐烂率相近(0.0014、0.0013和0.0017天(-1)),低于森林凋落物混合物的最终腐烂率(PE + CP + CG)(0.0021天(-1))。腐烂率可能与垫料特性(如氮,木质素,钙和多酚含量)有关。在原始森林林分中,混合凋落物物种对初始造成了负面的加性效应,而对最终衰变速率则产生了正的加性效应。综上所述,混合物种垃圾的质量损失与混合物中各个垃圾类型的基于重量的预期质量损失相比有所增加。最后,林分类型仅影响森林凋落物混合料(PE + CP + CG)的最终腐烂率,桉树的最终腐烂率低于原始森林,并且被认为是由林地湿度降低引起的

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