Won't we just end up worsening deforestation?
From a CO2 perspective, cutting down a tree and making a house of is excellent. The CO2 is bound in the timber and a new tree can be planted in its place.
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Won't we just end up worsening deforestation?
From a CO2 perspective, cutting down a tree and making a house of is excellent. The CO2 is bound in the timber and a new tree can be planted in its place.
Won't we just end up worsening deforestation?
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Timber at least can last a very long time. There are houses in the UK which dates from the time of Shakespeare which are still standing. I'm not sure what's worse: a cheap wooden structure which lasts 50-100 years or a strong brick structure which lasts hundreds. Here in Europe we have a large stock of houses from the 1950's which cost 300 EUR a month to heat and cannot be insulated. For a modern passive house costs…
Any building can be insulated, you just have to spend the money and sacrifice some internal space. Frame the inside of the walls and put in insulation.
I would like to know more about the long term stability of the glues involved and how the entire structure as a whole decays / fails over what timeframes under what exposures. Most other building materials in use today, the actual core structural elements, have withstood the test of centuries of use and are well proven and stable technologies.
Centuries? Reinforced concrete is 150 years old, steel frame construction a little less so.
Do you mean steal reinforced concrete lasts 150 years or that the technology is 150 years old? My understanding is that reinforced concrete has a service life of 50 years and 80 years if protected with a sacrificial anode of some sort.
Won't we just end up worsening deforestation?
Bigger question, how fire inspection ever cleared a wooden highrise?
Edit: In building applications. Steel softens and loses its strength in the presence of heat.
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Roman concrete doesn’t have the same chemistry as modern concrete.
What’s different? I’m aware of the modern mix with cement sand stone, but I’m guessing romans didn’t have the cement?
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Centuries? Reinforced concrete is 150 years old, steel frame construction a little less so.
>Reinforced concrete is 150 years old Do you mean steal reinforced concrete lasts 150 years or that the technology is 150 years old? My understanding is that reinforced concrete has a service life of 50 years and 80 years if protected with a sacrificial anode of some sort.
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What’s different? I’m aware of the modern mix with cement sand stone, but I’m guessing romans didn’t have the cement?
As far as I know, the romans had better cement. We're still trying to reverse engineer it.
but I wonder how much of that is that they just had more variable cement, and the stuff that wasn't incredibly great turned to dust long ago? Certainly, our modern processes are more repeatable and produce a narrower range of results. What if the existent buildings are outliers of the roman process?
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There's a great deal of land that could be covered with planted trees, which pull CO2 out of the air. When they are mature, then they can be used as building material, and a new tree planted.
> planted trees, which pull CO2 out of the air When an old building is torn down and the wood is burnt all the CO2 goes back into the environment. Unless we start burying old wood into sealed underground chambers (like depleted oil wells) all the CO2 stays around.