Zobrazeno 1 - 9
of 9
pro vyhledávání: '"Luizmar de Assis Barros"'
Autor:
Luizmar de Assis Barros, Ché Elkin
Publikováno v:
Ecological Indicators, Vol 121, Iss , Pp 107175- (2021)
Forests in their later stages of development attain attributes that support biodiversity and provide a variety of ecological benefits (e.g. clean water and carbon storage). Despite their values, old-growth forests are declining worldwide in part due
Externí odkaz:
https://doaj.org/article/1e6a25a2b98643edaeacada52b43205e
Autor:
Ché Elkin, Elpídio Inácio Fernandes Filho, Bruno Araujo Furtado de Mendonça, Luizmar de Assis Barros, Camile Sothe
Publikováno v:
Geocarto International. 37:4737-4761
The Atlantic Rainforest biome, where fire events were originally less frequent, is now increasingly at risk of burning due to anthropogenic influences on the climate and landscape. Identifying fire patterns and their leading causes in tropical forest
Autor:
Luizmar de Assis Barros, Michelle Venter, Juan Pablo Ramírez-Delgado, Marcondes G. Coelho-Junior, Oscar Venter
Publikováno v:
Biological Conservation. 273:109695
Autor:
Ché Elkin, Luizmar de Assis Barros
Publikováno v:
Ecological Indicators, Vol 121, Iss, Pp 107175-(2021)
Forests in their later stages of development attain attributes that support biodiversity and provide a variety of ecological benefits (e.g. clean water and carbon storage). Despite their values, old-growth forests are declining worldwide in part due
Publikováno v:
SSRN Electronic Journal.
Publikováno v:
Forest Ecology and Management. 511:120130
Publikováno v:
Carbohydrate Polymers. 177:249-257
Although there is a growing interest in utilizing nanocellulose fibres (NCFs) based composites for achieving a higher sustainability, mechanical performance of these composites is limited due to the poor compatibility between fibre reinforcement and
Publikováno v:
ACS Sustainable Chemistry & Engineering. 4:1016-1024
This study outlines the influence of a series of reaction conditions on the yield and reactivity of the glycidyl etherification reaction of the bark extractive-based bioepoxy monomer (E-epoxy). To maximize the yield and epoxy content, the glycidylati
Publikováno v:
Journal of Analytical and Applied Pyrolysis. 117:199-213
In order to broaden the applications of bio-epoxy resins in high performance sector, an understanding of thermal behavior of these environmentally-friendly biopolymers is essential. This study investigates the thermal degradation mechanism of a bio-e