NARA Discovery
Article Details
← Back to Search Results
Journal Article

Net ecosystem productivity of boreal jack pine stands regenerating from clearcutting under current and future climates

R. F. GRANT; A. G. BARR; T. A. BLACK; D. GAUMONT‐GUAY; H. IWASHITA; J. KIDSON; H. McCAUGHEY; K. MORGENSTERN; S. MURAYAMA; Z. NESIC; N. SAIGUSA; A. SHASHKOV; T. ZHA
Global Change Biology · Vol. 13, Issue 7 · pp. 1423-1440 · 2007

Abstract

Life cycle analysis of climate and disturbance effects on forest net ecosystem productivity (NEP) is necessary to assess changes in forest carbon (C) stocks under current or future climates. Ecosystem models used in such assessments need to undergo well‐constrained tests of their hypotheses for climate and disturbance effects on the processes that determine CO 2 exchange between forests and the atmosphere. We tested the ability of the model ecosys to simulate diurnal changes in CO 2 fluxes under changing air temperatures ( T a ) and soil water contents during forest regeneration with eddy covariance measurements over boreal jack pine ( Pinus banksiana ) stands along a postclearcut chronosequence. Model hypotheses for hydraulic and nutrient constraints on CO 2 fixation allowed ecosys to simulate the recovery of C cycling during the transition of boreal jack pine stands from C sources following clearcutting (NEP from −150 to −200 g C m −2 yr −1 ) to C sinks at maturity (NEP from 20 to 80 g C m −2 yr −1 ) with large interannual variability. Over a 126‐year logging cycle, annualized NEP, C harvest, and net biome productivity (NBP = NEP–harvest removals) of boreal jack pine averaged 47, 33 and 14 g C m −2 yr −1 . Under an IPCC SRES climate change scenario, rising T a exacerbated hydraulic constraints that adversely affected NEP of boreal jack pine after 75 years. These adverse effects were avoided in the model by replacing the boreal jack pine ecotype with one adapted to warmer T a . This replacement raised annualized NEP, C harvest, and NBP to 81, 56 and 25 g C m −2 yr −1 during a 126‐year logging cycle under the same climate change scenario.

Bibliographic Information

JournalGlobal Change Biology
PublisherWiley
Publication Date2007-07-01
Publication Year2007
Volume13
Issue7
Pages1423-1440
Document TypeJournal Article
Print ISSN1354-1013
eISSN1365-2486
DOI10.1111/j.1365-2486.2007.01363.x
SubjectConservation Science

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652486
Publisher PageOpen Publisher Page
Full-text access depends on NARA's subscribed coverage and institutional access.