Modelling forest‐growth response to increasing CO2concentration in relation to various factors affecting nutrient supply

Author:

Kirschbaum M. U. F.1,Medlyn B. E.23,King D. A.24,Pongracic S.125,Murty D.2,Keith H.1,Khanna P. K.1,Snowdon P.1,Raison R. J.1

Affiliation:

1. CSIRO Forestry and Forest Products, PO Box E4008 Kingston ACT 2604, Australia,

2. School of Biological Science, University of New South Wales, Sydney NSW 2052, Australia,

3. Present address: Institute of Ecology and Resource Management, University of Edinburgh King’s Building, Mayfield Rd. Edinburgh EH9 3JU, UK,

4. Present address: Research School of Biological Sciences, Australian National University, Canberra ACT 0200, Australia,

5. Present address: Amcor Plantations, PO Box 220, Morwell Vic 3840, Australia

Publisher

Wiley

Subject

General Environmental Science,Ecology,Environmental Chemistry,Global and Planetary Change

Reference65 articles.

1. Effect of nodulation, nitrogen fixation and CO2 enrichment on the physiology, growth and dry mass allocation of seedlings of Alnus rubra Bong.

2. Dead bole mass and nutrients remaining 23 years after clear‐felling of a northern hardwood forest.;Arthur MA;Canadian Journal of Forest Research,1993

3. Proceedings of the Australian Forest Nutrition Workshop: Productivity in Perpetuity 1981 CSIRO NJ Barrow Reactions that regulate the supply of ions to plant roots 57 64

4. Plant Life in a CO2-Rich World

5. Above‐ground dry matter and nutrient content of Pinus radiata as affected by lupin, fertilizer, thinning, and stand age.;Beets PN;New Zealand Journal of Forestry Science,1988

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