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Effects of Increased Nitrogen Availability on C and N Cycles in Tropical Forests: A Meta-Analysis

机译:氮素利用量增加对热带森林碳氮循环的影响:荟萃分析

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摘要

Atmospheric N deposition is predicted to increase four times over its current status in tropical forests by 2030. Our ability to understand the effects of N enrichment on C and N cycles is being challenged by the large heterogeneity of the tropical forest biome. The specific response will depend on the forest’s nutrient status; however, few studies of N addition appear to incorporate the nutrient status in tropical forests, possibly due to difficulties in explaining how this status is maintained. We used a meta-analysis to explore the consequences of the N enrichment on C and N cycles in tropical montane and lowland forests. We tracked changes in aboveground and belowground plant C and N and in mineral soil in response to N addition. We found an increasing trend of plant biomass in montane forests, but not in lowland forests, as well as a greater increase in NO emission in montane forest compared with lowland forest. The N2O and NO emission increase in both forest; however, the N2O increase in lowland forest was significantly even at first time N addition. The NO emission increase showed be greater at first term compared with long term N addition. Moreover, the increase in total soil N, ammonium, microbial N, and dissolved N concentration under N enrichment indicates a rich N status of lowland forests. The available evidence of N addition experiments shows that the lowland forest is richer in N than montane forests. Finally, the greater increase in N leaching and N gas emission highlights the importance of study the N deposition effect on the global climate change.
机译:到2030年,预计大气N沉积量将比目前热带森林中的现状增加四倍。热带森林生物群落的巨大异质性正挑战着我们了解N富集对C和N循环的影响的能力。具体反应将取决于森林的养分状况。但是,关于添加氮的研究似乎很少纳入热带森林的养分状况,这可能是由于难以解释如何维持这种状况。我们使用荟萃分析来探讨氮富集对热带山地和低地森林中碳和氮循环的影响。我们跟踪了地上和地下植物碳和氮以及矿质土壤中响应氮添加的变化。我们发现山地森林中植物生物量呈上升趋势,而低地森林中则没有,与低地森林相比,山地森林中NO排放量增加幅度更大。两种森林中N2O和NO的排放均增加;然而,即使在首次添加氮的情况下,低地森林的N2O含量仍显着增加。与长期添加氮相比,第一学期的NO排放量增加更大。此外,在氮富集下土壤总氮,铵态氮,微生物氮和溶解氮浓度的增加表明低地森林的氮含量很高。氮素添加实验的现有证据表明,低地森林的氮素含量高于山地森林。最后,氮淋失和氮气体排放量的更大增长凸显了研究氮沉降对全球气候变化的重要性。

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