spray foam insulation
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MINERAL WOOL
Mineral wool insulation: Made from rock, blast furnace slag, and other raw materials which are melted and spun into fibers to resemble the texture of wool. Mineral wool comes in batts, rolls or loose-fill forms.
Mineral wool insulation is non-combustible does not conduct heat and can resist temperatures above 1,000°C, making it an ideal fire-retardant product. It can sheath building supports and girders, be used as covering for ceilings as well as in fire-resistant doors and partition walls. Mineral wool can be used in critical, high-risk applications such as offshore oil rigs and in petrochemical refineries.
By building sensibly, using adequate fire protection technologies and materials, the risk of fire can be significantly reduced.
Mineral Wool saves energy and reduces emissions
Heating, cooling and building-use are responsible for over a third of the EU’s total CO2 emissions.
Mineral wool insulation provides a barrier to heat’s natural tendency to flow to colder surfaces. Properly installed, it will cost-effectively reduce heating and cooling demand, increase overall energy efficiency resulting in substantial energy savings and carbon emission reductions over the lifetime of buildings.
How well a material transmits heat through itself is known as thermal conductivity, measured by the lambda value a.k.a. watts per metre per degrees Kelvin (W/mK). The lower the value – the better the insulating material will be. For construction purposes, a material is defined as insulating if its thermal conductivity is less than 0.065 W/mK – and typical thermal conductivity values of mineral wool insulation are between 0.0031 and 0.0045 W/mK (ƛ-value)
Amazingly, up to 80% of all of the energy used by European buildings could be saved by using existing, well-proven technology such as mineral wool insulation. The most sustainable energy is saved energy!
Mineral Wool acts as a noise barrier
Unwanted sound or noise pollution inhibits privacy, increases agitation and is bad for human health, concentration and productivity. A 10dB reduction in sound levels is perceived by the human ear as a halving of the audible sound – a well-constructed wall using mineral wool insulation can reduce noise transmission by more than 50dB!
Investing in mineral wool insulation means investing in quieter buildings. It increases sound absorption and restricts sound transfer, providing a highly-effective noise barrier.
Manufacturers have developed a range of products providing protection against unwanted noise pollution, including acoustic ceiling tiles, partition cavity filings, wall linings, floor and roof level sound insulation – as well as absorption solutions.
Mineral Wool improves indoor climate and outdoor air quality
By saving energy and boosting thermal performance, mineral wool insulation enables a range of societal benefits, including improved outdoor air quality and health – due to less air pollution and a better indoor climate– which leads to reduced sickness and improved worker productivity.
At the same time, well-insulated, low-energy buildings have a better indoor climate compared to traditional buildings. Inorganic mineral wool insulation minimises moisture and nutrient conditions necessary for fungal growth protecting both the building and its occupants.
Mineral Wool increases fire safety
Fire causes incalculable social, financial and environmental damage – many lives are lost every year. Buildings and their contents contribute to the spread of fire. Mineral wool insulation contributes to safer buildings by delaying fire spread, acting as a fire barrier, slowing down fires and giving emergency services extra time to reach buildings – this helps to save lives, money, property and keeps pollution to a minimum.
Mineral wool insulation is non-combustible does not conduct heat and can resist temperatures above 1,000°C, making it an ideal fire-retardant product. It can sheath building supports and girders, be used as covering for ceilings as well as in fire-resistant doors and partition walls. Mineral wool can be used in critical, high-risk applications such as offshore oil rigs and in petrochemical refineries.
By building sensibly, using adequate fire protection technologies and materials, the risk of fire can be significantly reduced.