|
|||
|
|
|||||||
|
|
|
|||||
|
![]() | Up a level |
Funda, Tomas and Fundova, Irena and Fries, Anders and Wu, Harry
(2020).
Genetic improvement of the chemical composition of Scots pine (Pinus sylvestrisL.) juvenile wood for bioenergy production.
GCB Bioenergy. 12
, 848-863
[Research article]
Lim, Hyungwoo and Olsson, Bengt and Lundmark, Tomas and Dahl, Jenny and Nordin, Annika
(2020).
Effects of whole-tree harvesting at thinning and subsequent compensatory nutrient additions on carbon sequestration and soil acidification in a boreal forest.
GCB Bioenergy. 12
, 992-1001
[Research article]
Sieber, Petra and Ericsson, Niclas and Hammar, Torun and Hansson, Per-Anders
(2020).
Including albedo in time-dependent LCA of bioenergy.
GCB Bioenergy. 12
, 410-425
[Research article]
Cowie, Annette L. and Berndes, Goran and Bentsen, Niclas Scott and Brandao, Miguel and Cherubini, Francesco and Egnell, Gustaf and George, Brendan and Gustavsson, Leif and Hanewinkel, Marc and Harris, Zoe M. and Johnsson, Filip and Junginger, Martin and Kline, Keith L. and Koponen, Kati and Koppejan, Jaap and Kraxner, Florian and Lamers, Patrick and Majer, Stefan and Marland, Eric and Nabuurs, Gert-Jan and Pelkmans, Luc and Sathre, Roger and Schaub, Marcus and Smith, Charles Tattersall and Soimakallio, Sampo and Van der Hilst, Floor and Woods, Jeremy and Ximenes, Fabiano A.
(2021).
Applying a science-based systems perspective to dispel misconceptions about climate effects of forest bioenergy.
GCB Bioenergy. 13
, 1210-1231
[Research article]
Grau-Andrés, Roger and Pingree, Melissa and Öquist, Mats and Wardle, David and Nilsson, Marie-Charlotte and Gundale, Michael
(2021).
Biochar increases tree biomass in a managed boreal forest, but does not alter N2O, CH4, and CO2 emissions.
GCB Bioenergy. 13
, 1329-1342
[Research article]
Schulte, Maximilian and Hammar, Torun and Stendahl, Johan and Seleborg, Mikaela and Hansson, Per-Anders
(2021).
Time dynamic climate impacts of a eucalyptus pulp product: Life cycle assessment including biogenic carbon and substitution effects.
GCB Bioenergy. 13
, 1831-1850
[Research article]
Schulte, Maximilian and Lewandowski, Iris and Pude, Ralf and Wagner, Moritz
(2021).
Comparative life cycle assessment of bio-based insulation materials: Environmental and economic performances.
GCB Bioenergy. 13
, 979-998
[Research article]
Xu, Wenhuan and Whitman, William B. and Gundale, Michael and Chien, Chuan-Chi and Chiu, Chih‐Yu
(2021).
Functional response of the soil microbial community to biochar applications.
GCB Bioenergy. 13
, 269-281
[Research article]
Rönnberg Wästljung, Ann-Christin and Dufour, Louis and Gao, Jie and Hansson, Per-Anders and Herrmann, Anke and Jebrane, Mohamed and Johansson, Ann-Christine and Kalita, Saurav and Molinder, Roger and Nordh, Nils-Erik and Ohlsson, Jonas and Passoth, Volkmar and Sandgren, Mats and Schnürer, Anna and Shi, Andong and Terziev, Nasko and Daniel, Geoffrey and Weih, Martin
(2022).
Optimized utilization of Salix-Perspectives for the genetic improvement toward sustainable biofuel value chains.
GCB Bioenergy. 14
:10
, 1128-1144
[Article Review/Survey]
Englund, Oskar and Mola-Yudego, Blas and Borjesson, Pal and Cederberg, Christel and Dimitriou, Ioannis and Scarlat, Nicolae and Berndes, Goran
(2023).
Large-scale deployment of grass in crop rotations as a multifunctional climate mitigation strategy.
GCB Bioenergy. 15
:2
, 166-184
[Research article]