Wooden construction elements often exhibit lower life cycle greenhouse gas (GHG) emissions than conventional counterparts (‘material substitution effect’). Moreover, the building stock represents a carbon (C) sink if timber inflows (construction) surpass outflows (demolition) (‘Cstock effect’). A dynamic stock model incorporating these effects is applied to quantify potential climate benefits of wood construction in Austria’s residential building sector. If present trends are maintained, culminating in a wood construction share (WCS) of 50% during 2050-2100, building shells could contain three times as much C in 2100 as today. Annual timber demand for residential construction could double, but would remain well below Austria’s current net e...
Forest biomass can be used in two different ways to limit the growth of the atmospheric greenhouse g...
Greenhouse gas (GHG) impact of wood and paper products, in the following referred as harvested wood ...
Harvested wood products (HWP) can play an important role in climate-smart bioeconomic transformation...
Wooden construction elements often exhibit lower life cycle greenhouse gas (GHG) emissions than conv...
Keeping global temperature increases to below 2 ℃ will require reducing emissions and enhancing sink...
<p>Anthropogenic GHG emissions add a fast reinforcing feedback cycle to global carbon dynamics which...
Using wood as a building material affects the carbon balance through several mechanisms. This paper ...
Using wood as a building material affects the carbon balance through several mechanisms. This paper ...
Wood use is expanding to new markets, driven by the need to substitute fossil-intensive products and...
Wood use is expanding to new markets, driven by the need to substitute fossil-intensive products and...
This study adds to the scientific literature dealing with the climate change mitigation implications...
This study adds to the scientific literature dealing with the climate change mitigation implications...
Harvested wood products (HWP) can play an important role in climate-smart bioeconomic transformation...
Some Parties (Countries) to the UNFCCC decided to include the carbon uptake by harvested wood produc...
Highlights • Wood-based substitution benefits are likely to decrease over time • Carbon reside...
Forest biomass can be used in two different ways to limit the growth of the atmospheric greenhouse g...
Greenhouse gas (GHG) impact of wood and paper products, in the following referred as harvested wood ...
Harvested wood products (HWP) can play an important role in climate-smart bioeconomic transformation...
Wooden construction elements often exhibit lower life cycle greenhouse gas (GHG) emissions than conv...
Keeping global temperature increases to below 2 ℃ will require reducing emissions and enhancing sink...
<p>Anthropogenic GHG emissions add a fast reinforcing feedback cycle to global carbon dynamics which...
Using wood as a building material affects the carbon balance through several mechanisms. This paper ...
Using wood as a building material affects the carbon balance through several mechanisms. This paper ...
Wood use is expanding to new markets, driven by the need to substitute fossil-intensive products and...
Wood use is expanding to new markets, driven by the need to substitute fossil-intensive products and...
This study adds to the scientific literature dealing with the climate change mitigation implications...
This study adds to the scientific literature dealing with the climate change mitigation implications...
Harvested wood products (HWP) can play an important role in climate-smart bioeconomic transformation...
Some Parties (Countries) to the UNFCCC decided to include the carbon uptake by harvested wood produc...
Highlights • Wood-based substitution benefits are likely to decrease over time • Carbon reside...
Forest biomass can be used in two different ways to limit the growth of the atmospheric greenhouse g...
Greenhouse gas (GHG) impact of wood and paper products, in the following referred as harvested wood ...
Harvested wood products (HWP) can play an important role in climate-smart bioeconomic transformation...