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If every home and personal vehicle went electric in the U.S., power outages could spike — unless key measures are taken

A new study by Purdue University engineers warns that a nationwide switch to electric homes and vehicles could overwhelm the power supply, leading to increased risk of outages. However, key measures such as home insulation, equipment efficiency, and coordinated device operation can reduce costs by up to 40%.

SourcePurdue University·JournalCell Reports Sustainability·DateSep 16, 2025

Physics reveals the optimal roof ratios for energy efficiency

Researchers found that roofs with shorter peak heights (less than three feet) should be wider to minimize heat loss, while taller peaks require equilateral triangles with a specific height-to-width ratio. These findings are similar to those seen in ancient architecture across the world.

SourceDuke University·JournalInternational Communications in Heat and Mass Transfer·TypeObservational study·DateApr 14, 2025

New study sheds light on risks from residential heat and energy burdens in Miami

A new study reveals that many residents in Miami-Dade County face dual challenges of dangerously hot homes and unaffordable cooling costs, driving health and well-being risks. The research identifies four pathways explaining which households are burdened by poor building or air conditioner quality, low income, or household factors.

New environmentally-friendly mortar reduces heat loss

Researchers at Newcastle University have developed a new environmentally-friendly mortar made from recycled plastic and silica aerogel, which improves insulation and reduces plastic waste. The new mortar mix reduced heat loss by up to 55% while maintaining the required strength for masonry construction.

SourceNewcastle University·JournalConstruction and Building Materials·TypeExperimental study·DateFeb 19, 2025

Innovative smart window technology balances heat and visibility control

A new smart window technology combines liquid crystals with nanoporous microparticles and a patterned vanadium dioxide layer to simultaneously control visible light and infrared radiation. The device offers fast, efficient heat and visibility management, marking a significant step forward in energy-efficient building design.

SourceSPIE--International Society for Optics and Photonics·JournalJournal of Photonics for Energy·DateJan 9, 2025

Milan under stress due to heat waves: study reveals districts most at risk of cardiovascular emergencies

A study by Politecnico di Milano reveals districts most at risk of cardiovascular emergencies during heat waves in Milan. The research found that 23% of the city's population in 18 vulnerable districts face a 22% increased risk, while 20 low-vulnerability districts show no significant increase.

SourcePolitecnico di Milano·JournalPopulation and Environment·TypeData/statistical analysis·DateDec 10, 2024

Energy inefficiency and inability to downsize pose even bigger threat to low-income pensioners than loss of Winter Fuel Payments, Cambridge study suggests

A new study by University of Cambridge researchers highlights the disproportionate impact of energy inefficiency on low-income pensioners in England. The study found that even small improvements in home energy efficiency can significantly reduce annual heating costs for households in energy poverty.

SourceUniversity of Cambridge·JournalEnergy Research & Social Science·DateSep 23, 2024

Demand-side actions could help construction sector deliver on net-zero targets

A new study suggests that using state-of-the-art energy efficiency technologies can enable Europe's construction sector to almost eliminate its carbon emissions by 2060. Employing technologies like solar energy and heat pumps can reduce total energy used for heating and cooling buildings by up to 97%.

SourceUniversity of Plymouth·JournalRenewable and Sustainable Energy Reviews·TypeComputational simulation/modeling·DateSep 20, 2024

Urban heating and cooling to play substantial role in future energy demand under climate change

A new study suggests that urban heating and cooling systems will significantly impact future energy demand due to climate change, with smaller-scale city-level waste heat contributing to local microclimates. The research emphasizes the need for comprehensive climate impact assessment and science-based policymaking to address this issue.

SourceUniversity of Illinois at Urbana-Champaign, News Bureau·JournalNature Climate Change·TypeComputational simulation/modeling·DateSep 13, 2024

Hot streets, historic bias: effects on neighborhood walking in older adults

A study by Florida Atlantic University found that neighborhoods with poorer redlining scores have higher peak summer temperatures and reduced neighborhood walking time for older adults. However, affluent neighborhoods with more favorable built environments showed reduced walking in extreme heat due to alternative transportation options.

SourceFlorida Atlantic University·JournalJournal of Urban Health·TypeData/statistical analysis·DateSep 11, 2024

Why do you keep your house so cold? Science says: Ask your parents

A study published in PLOS Climate found that childhood home temperatures and community connectedness can help predict how U.S. residents set their thermostats. The researchers surveyed 2,128 participants and found that those who grew up in cold-winter locales tend to dial up their thermostats higher than those raised in warmer homes.

SourcePLOS·JournalPLOS Climate·TypeSurvey·DateJul 3, 2024

Diversifying China’s urban heating systems will reduce risk of carbon lock-in

A Princeton-led study suggests that diversifying China's urban heating systems will reduce the risk of carbon lock-in. The researchers examined three hypothetical investment scenarios and found that under a low-coal scenario, electric technologies can meet up to 34% of total district heating demand in 2030.

SourcePrinceton School of Public and International Affairs·JournalNature Energy·TypeComputational simulation/modeling·DateJul 1, 2024

Cool paint coatings help pedestrians feel up to 1.5 degrees Celsius cooler in urban setting, NTU Singapore field study finds

A study by NTU Singapore researchers found that cool paint coatings can reduce city heat by up to 2 degrees Celsius, improving pedestrian thermal comfort levels. The coatings reflected sunlight and absorbed less heat, resulting in cooler temperatures and reduced indoor air-conditioning energy consumption.

SourceNanyang Technological University·JournalSustainable Cities and Society·TypeExperimental study·DateMar 25, 2024

Reflective materials and irrigated trees: study shows how to cool one of the world’s hottest cities by 4.5°C

A new study published in Nature Cities suggests that a combination of cooling technologies and techniques can reduce the temperature of Riyadh, Saudi Arabia, by nearly 4.5°C during summer. The strategy involves using highly reflective 'super cool' building materials, irrigated greenery, and energy retrofitting measures.

SourceUniversity of New South Wales·JournalNature Cities·TypeComputational simulation/modeling·DateJan 11, 2024

New cooling ceramic can enhance energy efficiency for the construction sector and help combat global warming—City University of Hong Kong research

Researchers at City University of Hong Kong have developed a passive radiative cooling material that achieves high-performance optical properties. The cooling ceramic reduces thermal load, provides stable cooling performance, and can be used in various building applications.

SourceCity University of Hong Kong·JournalScience·TypeExperimental study·DateNov 10, 2023

Turning waste heat into energy

The team created a thermocell using a hydrogel that reacted to temperature changes, converting latent heat into electricity. This breakthrough supports the idea that various materials can be used for thermoelectric conversion, potentially reducing reliance on other energy sources and improving cooling systems.

SourceUniversity of Tokyo·JournalAdvanced Materials·TypeExperimental study·DateJul 18, 2023

The ground is deforming, and buildings aren’t ready

A Northwestern University study links underground climate change to shifting ground beneath urban areas, causing building foundations and surrounding ground to move excessively and crack. The researchers also found that past building damage may have been caused by rising temperatures, which will continue for years to come.

SourceNorthwestern University·JournalCommunications Engineering·TypeComputational simulation/modeling·DateJul 11, 2023

Study proposes simple low-cost solutions to improve thermal comfort in social housing

Researchers developed a pilot study to address the issue of thermal discomfort in social housing projects. They proposed replacing conventional windows with fully openable tilting windows, monolithic expanded polystyrene walls, and green-tinted tempered glass, which can reduce energy consumption and greenhouse gas emissions.

WVU lab’s game-changing high-performance semiconductor material could help slash heat emissions

A team led by Xueyan Song at West Virginia University has created an oxide ceramic material that solves a longstanding efficiency problem plaguing thermoelectric generators. The breakthrough achieved record-high performance, opening up new research directions to further increase performance and enabling large-scale waste heat recovery.

SourceWest Virginia University·JournalRenewable and Sustainable Energy Reviews·DateMar 14, 2023

Helping construction material manufacturers reduce the energy consumption, carbon footprint of heating and cooling homes

Researchers at Purdue University have created a new method for incorporating phase change materials (PCMs) into building envelope elements, which reduces energy consumption by moderating temperature fluctuations. The process increases the thermal inertia and compressive strength of construction materials while making them more resilien...

SourcePurdue University·JournalConstruction and Building Materials·DateMar 1, 2023