Published November 2018 | Version v1
Journal article

Nitrogen-induced new net primary production and carbon sequestration in global forests

  • 1. School of Natural Resources, Faculty of Geographical Science, Beijing Normal University, Beijing, 100875 (China)
  • 2. State Key Laboratory of Earth Surface Processes and Resource Ecology, Faculty of Geographical Science, Beijing Normal University, Beijing, 100875 (China)
  • 3. Alterra, Wageningen University and Research Center, PO Box 47, 6700 AA, Wageningen, the (Netherlands)
  • 4. Environmental Systems Analysis Group, Wageningen University, PO Box 47, 6700 AA, Wageningen, the (Netherlands)

Description

Highlights: • Nitrogen-induced new NPP and C sequestration is estimated in global forests. • N deposition and BNF contributed 3.48 Pg C yr−1 to NPP of global forests. • N deposition and BNF contributed 1.83 Pg C yr−1 to the C sink of global forests. • BNF dominates nitrogen-induced new NPP and C sinks in global forests. • New N inputs are key drivers of C sinks in global forests. Nitrogen (N) deposition and biological N fixation (BNF) are main external N inputs into terrestrial ecosystems. However, few studies have simultaneously quantified the contribution of these two external N inputs to global NPP and consequent C sequestration. Based on literature analysis, we estimated new net primary production (NPP) due to external N inputs from BNF and N deposition and the consequent C sinks in global boreal, temperate and tropical forest biomes via a stoichiometric scaling approach. Nitrogen-induced new NPP is estimated to be 3.48 Pg C yr−1 in global established forests and contributes to a C sink of 1.83 Pg C yr−1. More specifically, the aboveground and belowground new NPP are estimated to be 2.36 and 1.12 Pg C yr−1, while the external N-induced C sinks in wood and soil are estimated to be 1.51 and 0.32 Pg C yr−1, respectively. BNF contributes to a major proportion of N-induced new NPP (3.07 Pg C yr−1) in global forest, and accounts for a C sink of 1.58 Pg C yr−1. Compared with BNF, N deposition only makes a minor contribution to new NPP (0.41 Pg C yr−1) and C sinks (0.25 Pg C yr−1) in global forests. At the biome scale, rates of N-induced new NPP and C sink show an increase from boreal forest towards tropical forest, as mainly driven by an increase of BNF. In contrast, N deposition leads to a larger C sink in temperate forest (0.11 Pg C yr−1) than boreal (0.06 Pg C yr−1) and tropical forest (0.08 Pg C yr−1). Our estimate of total C sink due to N-induced new NPP approximately matches an independent assessment of total C sink in global established forests, suggesting that external N inputs by BNF and atmospheric deposition are key drivers of C sinks in global forests.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.envpol.2018.08.041

Additional details

Identifiers

DOI
10.1016/j.envpol.2018.08.041;
PII
S0269749118325090;

Publishing Information

Journal Title
Environmental Pollution (1987)
Journal Volume
242
Journal Page Range
p. 1476-1487
ISSN
0269-7491
CODEN
ENPOEK

INIS

Country of Publication
United Kingdom
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
53005805
Subject category
S54: ENVIRONMENTAL SCIENCES;
Descriptors DEI
CARBON SEQUESTRATION; DEPOSITION; FORESTS; NITROGEN; NUCLEAR POWER PLANTS; SOILS; STOICHIOMETRY; TERRESTRIAL ECOSYSTEMS; WOOD
Descriptors DEC
AIR POLLUTION CONTROL; CONTROL; ECOSYSTEMS; ELEMENTS; NONMETALS; NUCLEAR FACILITIES; POLLUTION CONTROL; POWER PLANTS; SEPARATION PROCESSES; THERMAL POWER PLANTS

Optional Information

Copyright
Copyright (c) 2018 Elsevier Ltd. All rights reserved.