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Reports

3 result(s) found

Association of residential energy efficiency retrofits with indoor environmental quality, comfort, and health: A review of empirical data

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English
Authors:
William J. Fisk, Brett C. Singer, Wanyu R. Chan

This paper reviews empirical data from evaluations of the influence of residential energy efficiency retrofits on indoor environmental quality conditions and self-reported thermal comfort and health. Data were extracted from 36 studies described in 44 papers plus two reports. Nearly all reviewed studies were performed in Europe or United States. Most studies evaluated retrofits of homes with low-income occupants. Indoor radon and formaldehyde concentrations tended to increase after retrofits that did not add whole-house mechanical ventilation.

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.).

A policy toolkit for global mass heat pump deployment

Report
Authors:
Dr Richard Lowes,
Duncan Gibb,
Dr Jan Rosenow,
Samuel Thomas,
Matt Malinowski,
Alexia Ross,
Peter Graham

Heat pumps are relatively simple appliances. They share similar components to refrigerators and air conditioners and effectively move an external source of heat to where it is needed, such as in buildings for heating or the production of hot water. Their key value is efficiency; for each unit of electricity consumed to operate them, they produce multiple units of usable heat. Because of this, they require much less energy input for a similar heating outcome compared to combustion technologies, making them naturally cleaner and generally cost effective to run.

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