Allometric biomass equations for shrub and small tree species in subtropical China

Arshad Ali, Ming Shan Xu, Yan Tao Zhao, Qing Qing Zhang, Liu Li Zhou, Xiao Dong Yang, En Rong Yan

Research output: Contribution to journalReview articlepeer-review

91 Scopus citations

Abstract

Species-specific allometric equations for shrubs and small trees are relatively scarce, thus limiting the precise quantification of aboveground biomass (AGB) in both shrubby vegetation and forests. Fourteen shrub and small tree species in Eastern China were selected to develop species-specific and multispecies allometric biomass equations. Biometric variables, including the diameter of the longest stem (D), height (H), wet basic density (BD), and crown area and shape were measured for each individual plant. We measured the AGB through a non-destructive method, and validated these measurements using the dry mass of the sampled plant components. The AGB was related to biometric variables using regression analysis. The species-specific allometric models, with D and H as predictors (D-H models) accounted for 70% to 99% of the variation in the AGB of shrubs and small trees. A multispecies allometric D-H model accounted for 71% of the variation in the AGB. Although BD, as an additional predictor, improved the fit of most models, the D-H models were adequate for predicting the AGB for shrubs and small trees in subtropical China without BD data.

Original languageEnglish
Article number1275
JournalSilva Fennica
Volume49
Issue number4
DOIs
StatePublished - 27 Jun 2015

Keywords

  • Aboveground biomass
  • Allometric equations
  • Biometric variables
  • Carbon storage
  • Shrubs
  • Subtropical forests

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