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Reports

3 result(s) found

Polyurethane insulation and household products – A systematic review of their impact on indoor environmental quality

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English
Authors:
Dzhordzhio Naldzhiev, Dejan Mumovic, Matija Strlic

We systematically review the impact of polyurethane insulation and polyurethane household products on the indoor environmental quality of buildings. The review breaks down polyurethane products into constituent compounds (isocyanate, polyol, flame retardant, blowing agent and catalyst) as well as secondary emissions, and discusses their implications on human health. Concentrations of compounds emitted from insulation, and household materials, measured in laboratory experiments and case studies are presented in the context of the built environment.

Indoor environmental quality related risk factors with energy-efficient retrofitting of housing: A literature review

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English
Authors:
Marco Ortiz ∗, Laure Itard , Philomena M. Bluyssen

There are indications that energy-retrofitted buildings can create risks for indoor environmental quality (IEQ) and therefore for health and comfort of occupants. A review was conducted to identify and verify those risks, within three themes: building envelope, heating, ventilating and air conditioning (HVAC)-systems, and occupants. Publications from the last five years in major peer-reviewed journals from different fields (energy, buildings, indoor air, social sciences) were found by using a variety of keywords (health effects, occupant behaviours, energy-efficient retrofitting, etc.).

The Operating Expense Puzzle of U.S. Green Office Buildings

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English
Authors:
Nikodem Szumil,
Franz Fuerst

Cost savings from efficiency gains are at the core of the green building business case. Significantly lower energy bills are said to be a major factor in the green rent premium observed in earlier studies. Our study tests this relationship by inferring energy costs from operating expenses for a large dataset of U.S. office buildings and relating them to rental rates. We find that eco-certification is associated with a higher than anticipated total energy expenditure, which is the opposite of its expected effect.

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