1 |
An overview of second generation biofuel technologies Sims REH, Mabee W, Saddler JN, Taylor M Bioresource Technology, 101(6), 1570, 2010 |
2 |
Recognising the potential for renewable energy heating and cooling Seyboth K, Beurskens L, Langniss O, Sims REH Energy Policy, 36(7), 2460, 2008 |
3 |
Biomass production and nutrient cycling in Eucalyptus short rotation energy forests in New Zealand: II. Litter fall and nutrient return Guo LB, Sims REH, Horne DJ Biomass & Bioenergy, 30(5), 393, 2006 |
4 |
Renewable energy: a response to climate change Sims REH Solar Energy, 76(1-3), 9, 2004 |
5 |
All-year-round harvesting of short rotation coppice eucalyptus compared with the delivered costs of biomass from more conventional short season, harvesting systems Sims REH, Venturi P Biomass & Bioenergy, 26(1), 27, 2003 |
6 |
Soil response to eucalypt tree planting and meatworks effluent irrigation in a short rotation forest regime in New Zealand Guo LB, Sims REH Bioresource Technology, 87(3), 341, 2003 |
7 |
Carbon emission and mitigation cost comparisons between fossil fuel, nuclear and renewable energy resources for electricity generation Sims REH, Rogner HH, Gregory K Energy Policy, 31(13), 1315, 2003 |
8 |
The root growth of Salix viminalis and Eucalyptus nitens in response to dairy farm pond effluent irrigation Heaton RJ, Sims REH, Tungcul RO Bioresource Technology, 81(1), 1, 2002 |
9 |
Biomass production and nutrient cycling in Eucalyptus short rotation energy forests in New Zealand. I: biomass and nutrient accumulation Guo LB, Sims REH, Horne DJ Bioresource Technology, 85(3), 273, 2002 |
10 |
Short rotation coppice tree species selection for woody biomass production in New Zealand Sims REH, Maiava TG, Bullock BT Biomass & Bioenergy, 20(5), 329, 2001 |