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Effects of long-term nitrogen deposition on phosphorus leaching dynamics in a mature tropical forest

贯通 自行车 生态系统 浸出(土壤学) 土壤酸化 环境科学 环境化学 氮气 森林生态学 植物凋落物 化学 生物地球化学循环 垃圾箱 土壤水分 营养循环 农学 氮气循环 生态学 土壤pH值 土壤科学 生物 林业 有机化学 地理
作者
Kaijun Zhou,X. L. Lu,Taiki Mori,Qinggong Mao,Cong Wang,Mianhai Zheng,Hui Mo,Enqing Hou,Jiangming Mo
出处
期刊:Biogeochemistry [Springer Science+Business Media]
卷期号:138 (2): 215-224 被引量:60
标识
DOI:10.1007/s10533-018-0442-1
摘要

Elevated anthropogenic nitrogen (N) deposition is suggested to affect ecosystem phosphorus (P) cycling through altered biotic P demand and soil acidification. To date, however, there has been little information on how long-term N deposition regulates P fluxes in tropical forests, where P is often depleted. To address this question, we conducted a long-term N addition experiment in a mature tropical forest in southern China, using the following N treatments: 0, 50, 100, and 150 kg N ha−1 year−1. We hypothesized that (i) tropical forest ecosystems have conservative P cycling with low P output, and (ii) long-term N addition decreases total dissolved phosphorus (TDP) leaching losses due to reduced litter decomposition rates and stimulated P sorption deriving from accelerated soil acidification. As hypothesized, we demonstrated a closed P cycling with low leaching outputs in our forest. Under experimental N addition, TDP flux in throughfall was significantly reduced, suggesting that N addition may result in a less internal P recycling. Contrary to our hypothesis, N addition did not decrease TDP leaching, despite reduced litter decomposition and accelerated soil acidification. We find that N addition might have negative impacts on biological P uptake without affecting TDP leaching, and that the amount of TDP leaching from soil could be lower than a minimum concentration for TDP retention. Overall, we conclude that long-term N deposition does not necessarily decrease P effluxes from tropical forest ecosystems with conservative P cycling.
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