Ryan Bright
Ryan Bright
Norwegian Institute for Bioeconomy Research
Verified email at - Homepage
Cited by
Cited by
Bioenergy and climate change mitigation: an assessment
F Creutzig, NH Ravindranath, G Berndes, S Bolwig, R Bright, F Cherubini, ...
Gcb Bioenergy 7 (5), 916-944, 2015
Local temperature response to land cover and management change driven by non-radiative processes
RM Bright, E Davin, T O’Halloran, J Pongratz, K Zhao, A Cescatti
Nature Climate Change 7 (4), 296-302, 2017
Detecting change-point, trend, and seasonality in satellite time series data to track abrupt changes and nonlinear dynamics: A Bayesian ensemble algorithm
K Zhao, MA Wulder, T Hu, R Bright, Q Wu, H Qin, Y Li, E Toman, B Mallick, ...
Remote sensing of Environment 232, 111181, 2019
Climate impacts of bioenergy: Inclusion of carbon cycle and albedo dynamics in life cycle impact assessment
RM Bright, F Cherubini, AH StrÝmman
Environmental Impact Assessment Review 37, 2-11, 2012
Quantifying surface albedo and other direct biogeophysical climate forcings of forestry activities
RM Bright, K Zhao, RB Jackson, F Cherubini
Global Change Biology 21 (9), 3246-3266, 2015
Site-specific global warming potentials of biogenic CO2 for bioenergy: contributions from carbon fluxes and albedo dynamics
F Cherubini, RM Bright, AH StrÝmman
Environmental Research Letters 7 (4), 045902, 2012
Albedo impact on the suitability of biochar systems to mitigate global warming
S Meyer, RM Bright, D Fischer, H Schulz, B Glaser
Environmental Science & Technology 46 (22), 12726-12734, 2012
Economic savings linked to future Arctic shipping trade are at odds with climate change mitigation
H Lindstad, RM Bright, AH StrÝmman
Transport Policy 45, 24-30, 2016
Life cycle assessment of biomass‐based combined heat and power plants: centralized versus decentralized deployment strategies
G Guest, RM Bright, F Cherubini, O Michelsen, AH StrÝmman
Journal of Industrial Ecology 15 (6), 908-921, 2011
Consistent quantification of climate impacts due to biogenic carbon storage across a range of bio-product systems
G Guest, RM Bright, F Cherubini, AH StrÝmman
Environmental Impact Assessment Review 43, 21-30, 2013
Considering only first-order effects? How simplifications lead to unrealistic technology optimism in climate change mitigation
A Arvesen, RM Bright, EG Hertwich
Energy Policy 39 (11), 7448-7454, 2011
A sensible climate solution for the boreal forest
R Astrup, PY Bernier, H Genet, DA Lutz, RM Bright
Nature Climate Change 8 (1), 11-12, 2018
Life cycle assessment of second generation bioethanols produced from Scandinavian boreal forest resources: A regional analysis for middle Norway
RM Bright, AH StrÝmman
Journal of Industrial Ecology 13 (4), 514-531, 2009
Radiative forcing impacts of boreal forest biofuels: a scenario study for Norway in light of albedo
RM Bright, AH StrÝmman, GP Peters
Environmental Science & Technology 45 (17), 7570-7580, 2011
Global climate impacts of forest bioenergy: what, when and how to measure?
F Cherubini, RM Bright, AH StrÝmman
Environmental Research Letters 8 (1), 014049, 2013
Climate change implications of shifting forest management strategy in a boreal forest ecosystem of Norway
RM Bright, C Antůn‐FernŠndez, R Astrup, F Cherubini, M KvalevŚg, ...
Global Change Biology 20 (2), 607-621, 2014
Metrics for biogeophysical climate forcings from land use and land cover changes and their inclusion in life cycle assessment: a critical review
RM Bright
Environmental science & technology 49 (6), 3291-3303, 2015
Carbon‐equivalent metrics for albedo changes in land management contexts: relevance of the time dimension
RM Bright, W Bogren, P Bernier, R Astrup
Ecological Applications 26 (6), 1868-1880, 2016
Linearity between temperature peak and bioenergy CO2 emission rates
F Cherubini, T Gasser, RM Bright, P Ciais, AH StrÝmman
Nature Climate Change 4 (11), 983-987, 2014
Environmental assessment of wood‐based biofuel production and consumption scenarios in Norway
RM Bright, AH StrÝmman, TR Hawkins
Journal of Industrial Ecology 14 (3), 422-439, 2010
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