Atmospheric CO 2 Enrichment and Reactive Nitrogen Inputs Interactively Stimulate Soil Cation Losses and Acidification
Reactive N inputs (Nr) may alleviate N-limitation of plant growth and are assumed to help sustain plant responses to the rising atmospheric CO (eCO ). However, Nr and eCO may elicit a cascade reaction that alters soil chemistry and nutrient availability, shifting the limiting factors of plant growth...
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Veröffentlicht in: | Environmental science & technology 2018-06, Vol.52 (12), p.6895-6902 |
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Sprache: | eng |
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Zusammenfassung: | Reactive N inputs (Nr) may alleviate N-limitation of plant growth and are assumed to help sustain plant responses to the rising atmospheric CO
(eCO
). However, Nr and eCO
may elicit a cascade reaction that alters soil chemistry and nutrient availability, shifting the limiting factors of plant growth, particularly in acidic tropical and subtropical croplands with low organic matter and low nutrient cations. Yet, few have so far examined the interactive effects of Nr and eCO
on the dynamics of soil cation nutrients and soil acidity. We investigated the cation dynamics in the plant-soil system with exposure to eCO
and different N sources in a subtropical, acidic agricultural soil. eCO
and Nr, alone and interactively, increased Ca
and Mg
in soil solutions or leachates in aerobic agroecosystems. eCO
significantly reduced soil pH, and NH
-N inputs amplified this effect, suggesting that eCO
-induced plant preference of NH
-N and plant growth may facilitate soil acidification. This is, to our knowledge, the first direct demonstration of eCO
enhancement of soil acidity, although other studies have previously shown that eCO
can increase cation release into soil solutions. Together, these findings provide new insights into the dynamics of cation nutrients and soil acidity under future climatic scenarios, highlighting the urgency for more studies on plant-soil responses to climate change in acidic tropical and subtropical ecosystems. |
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ISSN: | 0013-936X 1520-5851 |
DOI: | 10.1021/acs.est.8b00495 |