
Evaluating a sustainability index for nutrients in a short rotation energy cropping system
Author(s) -
Sochacki Stanley J.,
Harper Richard J.,
Smettem Keith R. J.,
Dell Bernard,
Wu Hongwei
Publication year - 2013
Publication title -
gcb bioenergy
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.378
H-Index - 63
eISSN - 1757-1707
pISSN - 1757-1693
DOI - 10.1111/j.1757-1707.2012.01202.x
Subject(s) - nutrient , environmental science , agronomy , biomass (ecology) , pinus radiata , eucalyptus , bioenergy , short rotation forestry , nutrient cycle , eucalyptus globulus , soil fertility , biology , biofuel , botany , soil water , ecology , soil science
In dryland environments 3–5 year rotations of tree crops and agriculture represent a major potential bioenergy feedstock and a means to restore landscape hydrologic balances and phytoremediate sites, while maintaining food production. In soils with low natural fertility, the long‐term viability of these systems will be critically affected by site nutrient status and subsequent cycling of nutrients. A nutrient assimilation index ( NAI ) was developed to allow comparison of species and tree component nutrient assimilation and to optimize nutrient management, by quantifying different strategies to manage site nutrients. Biomass, nutrient export and nutrient use efficiency were assessed for three short rotation tree crop species. Nutrient exports following harvest at 3 years of high density (4000 trees ha −1 ) were consistently higher in Pinus radiata , with values of 85 kg ha −1 of N, 11kg ha −1 of P, and 62 kg ha −1 of K, than Eucalyptus globulus and Eucalyptus occidentalis . Component NAI was generally in the order of leaf