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Effects of warming and nitrogen deposition on the coupling mechanism between soil nitrogen and phosphorus in Songnen Meadow Steppe, northeastern China

机译:暖和氮沉降对松嫩草原草原土壤氮磷耦合机理的影响

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摘要

Songnen Meadow Steppe, which is in northeast China, is increasingly affected by global warming and incremental increases in atmospheric nitrogen deposition. However, the responses of nitrogen (N) and phosphorus (P) in steppe soil, and of the coupling mechanism between them, to the dual effects of global warming and N deposition are still unknown. In this study, the effects of simulated atmospheric warming and N deposition on N and P in Songnen steppe soil, as well as on the coupling between N and P, were examined under in situ conditions. Infrared heaters were used to elevate soil temperature by approximately 1.7 degrees C since 2006. N additions were treated once a year with aqueous ammonium nitrate at a rate of 10 g m(-2) a(-1). During the four-year study, addition of N increased the amount of total N, and available N, as well as the rate of N mineralization in the soil. Moreover, the amounts of total P and available P in the soil were considerably reduced. Thus, the N:P ratio increased, and the coupling between N and P decreased. Similar values for the N:P ratio were obtained for the addition of N by itself and for the combination of warming and addition of N, which indicates that a small amount of soil warming in Songnen Meadow Steppe would not have a substantial effect on the ratio. With the growth of China's industrialization, N deposition continues to increase. The study area of Songnen Meadow Steppe, and northeast China in general, are characterized by widespread distribution of saline alkali soil. Therefore, the finding of increased P limitation in the soil of Songnen Meadow Steppe has major implications for ecosystems in northeast China. Reasonable regulation and management of meadow soil nutrients will be of great importance in increasing soil productivity and promoting sustainable use of grassland ecosystems.
机译:位于中国东北的松嫩草原草原正日益受到全球变暖和大气氮沉降增加的影响。然而,草原土壤中的氮(N)和磷(P)以及它们之间的耦合机制对全球变暖和氮沉降的双重影响的响应仍然未知。在本研究中,在原位条件下研究了模拟的气候变暖和N沉积对松嫩草原土壤N和P以及对N和P耦合的影响。自2006年以来,使用红外线加热器将土壤温度提高了约1.7摄氏度。每年用硝酸铵水溶液以10 g m(-2)a(-1)的速率处理N的添加量。在为期四年的研究中,添加氮增加了土壤中总氮,有效氮的含量以及氮矿化的速率。而且,土壤中的总磷和有效磷的含量大大减少了。因此,N:P比增加,而N和P之间的耦合减少。单独添加氮,加温和添加氮的组合,得到的N:P比值相似,这表明松嫩草原草原的少量土壤增温不会对该比例产生实质性影响。随着中国工业化的发展,氮的沉积持续增加。松嫩草原草原的研究区域和整个中国东北地区的特征是盐碱土的广泛分布。因此,发现松嫩草甸草原土壤中磷的含量增加对东北地区的生态系统具有重要意义。合理调节和管理草地土壤养分,对于提高土壤生产力和促进草地生态系统的可持续利用具有重要意义。

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