Anthropogenic nitrogen deposition in boreal forests has a minor impact on the global carbon cycle

Антропогенное осаждение азота в бореальных лесах оказывает несущественное влияние на глобальный углеродный цикл
Michael J. Gundale, Annika Nordin, Fredrik From, Lisbet Holm Bach
2013-10-11

anthropogenic reactive nitrogen (Nr) depositionboreal forestscarbon sequestration response (16 kg C kg⁻¹ N)feather moss N uptakelong-term N addition experiment
It is proposed that increases in anthropogenic reactive nitrogen (Nr ) deposition may cause temperate and boreal forests to sequester a globally significant quantity of carbon (C); however, long-term data from boreal forests describing how C sequestration responds to realistic levels of chronic Nr deposition are scarce. Using a long-term (14-year) stand-scale (0.1 ha) N addition experiment (three levels: 0, 12.5, and 50 kg N ha(-1) yr(-1) ) in the boreal zone of northern Sweden, we evaluated how chronic N additions altered N uptake and biomass of understory communities, and whether changes in understory communities explained N uptake and C sequestration by trees. We hypothesized that understory communities (i.e. mosses and shrubs) serve as important sinks for low-level N additions, with the strength of these sinks weakening as chronic N addition rates increase, due to shifts in species composition. We further hypothesized that trees would exhibit nonlinear increases in N acquisition, and subsequent C sequestration as N addition rates increased, due to a weakening understory N sink. Our data showed that understory biomass was reduced by 50% in response to the high N addition treatment, mainly due to reduced moss biomass. A (15) N labeling experiment showed that feather mosses acquired the largest fraction of applied label, with this fraction decreasing as the chronic N addition level increased. Contrary to our hypothesis, the proportion of label taken up by trees was equal (ca. 8%) across all three N addition treatments. The relationship between N addition and C sequestration in all vegetation pools combined was linear, and had a slope of 16 kg C kg(-1) N. While canopy retention of Nr deposition may cause C sequestration rates to be slightly different than this estimate, our data suggest that a minor quantity of annual anthropogenic CO2 emissions are sequestered into boreal forests as a result of Nr deposition.
1
15N labeling showed feather mosses acquired the largest fraction of applied N label, but their share declined as chronic N addition increased.
2
Combined C sequestration across all vegetation pools increased linearly with N addition, with a slope of 16 kg C per kg N.
3
In a 14-year boreal N addition experiment (0, 12.5, 50 kg N ha⁻¹ yr⁻¹), understory biomass decreased by 50% under the high N treatment, mainly from moss loss.
4
Overall, anthropogenic reactive N deposition likely sequesters only a minor fraction of annual anthropogenic CO2 in boreal forests.
5
Trees took up a constant proportion of applied 15N (≈8%) across all N addition rates, contrary to expectation of nonlinear increases with higher N.

Boreal forest stand under chronic anthropogenic reactive nitrogen (Nr) deposition (0, 12.5, 50 kg N ha^-1 yr^-1) including trees and understory communities in northern Sweden

Effects of chronic Nr addition on nitrogen uptake distribution (trees vs. understory), understory biomass and composition, and consequent carbon sequestration rates across vegetation pools (kg C per kg N)

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2013-10-11
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Michael J. Gundale
Annika Nordin
Fredrik From
Lisbet Holm Bach
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