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- W2894881513 abstract "Abstract In China, as in other parts of the world, the emission and deposition of reactive nitrogen (N) have been reduced in recent years. Several decades of elevated N deposition in southwest China (40 to 60 kg ha −1 year −1 ) have resulted in extreme cases of N saturation, where N outputs are nearly equal to N inputs. Doubling N inputs using either NH 4 NO 3 or NaNO 3 fertilizer in a subtropical forest in Tieshanping, near Chongqing city in southwest China, caused an immediate doubling of N leaching (as NO 3 − ). Reducing N inputs to ambient atmospheric deposition levels after 10 years of fertilization led to a rapid decrease in soil water NO 3 − concentration to levels similar to those in the reference plots that had not receive N fertilizer application. NO 3 − leaching via the soil water in the NH 4 NO 3 plots was even lower than that in the NaNO 3 plots or the reference plots, confirming the finding of a previous N‐fertilizing experiment that found that NH 4 + deposition, in contrast to NO 3 − deposition, increased N retention in the forest ecosystem. The N sink remained for at least 2 years after the cessation of N addition. Even with reduced N inputs, ambient atmospheric N deposition caused significant acidification, buffered partly by SO 4 2− sorption. Therefore, further abatement of reactive N emissions is necessary in the future." @default.
- W2894881513 created "2018-10-12" @default.
- W2894881513 creator A5015283176 @default.
- W2894881513 creator A5031246359 @default.
- W2894881513 creator A5044355228 @default.
- W2894881513 creator A5045694659 @default.
- W2894881513 creator A5070836204 @default.
- W2894881513 creator A5088174174 @default.
- W2894881513 date "2018-10-01" @default.
- W2894881513 modified "2023-10-18" @default.
- W2894881513 title "A Sharp Decline in Nitrogen Input in a N-Saturated Subtropical Forest Causes an Instantaneous Reduction in Nitrogen Leaching" @default.
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