Nanotechnology Now

Our NanoNews Digest Sponsors
Heifer International



Home > Press > Night-time radiative warming using the atmosphere

(a) Schematic diagram of the radiative heat exchange among the atmosphere, the outer space, and the surfaces. (b) Measured absorptivity / emissivity. (c) Real-time temperature in thermal test. (d) Calculated annual energy-saving for anti-condensation of 10 cities in various climate zones.

CREDIT
by Yining Zhu, Yiwei Zhou, Bing Qin, Rui Qin, Min Qiu, and Qiang Li
(a) Schematic diagram of the radiative heat exchange among the atmosphere, the outer space, and the surfaces. (b) Measured absorptivity / emissivity. (c) Real-time temperature in thermal test. (d) Calculated annual energy-saving for anti-condensation of 10 cities in various climate zones. CREDIT by Yining Zhu, Yiwei Zhou, Bing Qin, Rui Qin, Min Qiu, and Qiang Li

Abstract:
Warming has played a crucial role in various industrial and agricultural processes throughout history. Night-time warming, however, presents a distinct challenge due to the absence of solar radiation. During the night, direct radiative heat loss to outer space through the atmospheric transparent window (8-14 μm) can cause temperature to drop below freezing, posing significant threats to agriculture (crops), transportation (outdoor cables), and more.

Night-time radiative warming using the atmosphere

Changchun, China | Posted on November 17th, 2023

Traditionally, achieving night-time warming relied on active electric heaters, which contribute to significant energy consumption and increased carbon emissions. Passive warming methods, including insulating blankets (reducing heat conduction) and low-emissivity films (reducing heat radiation), come with limitations, such as suboptimal effectiveness and overall positive net heat loss.



Air, known for its high heat capacity, can maintain relatively higher temperatures compared to the ground during the night, potentially serving as an external heat source. To harness energy from the entire atmosphere above the Earth's surface, radiative methods are needed.



In a new paper published in Light Science & Application, a team of scientists, led by Professor Qiang Li from Zhejiang University, China, proposed a night-time radiative warming strategy based on nanophotonic control. This strategy passively suppresses the thermal radiation of objects in the atmospheric transparent window (8-14 μm) while actively utilizing energy in the atmospheric radiation bands (5-8 μm and 14-16 μm). Achieving this strategy involves covering the target surface with a selective reflective (SR) thin film that exhibits high reflectance in the atmospheric transparent band and high absorptivity in the atmospheric radiation bands, to control radiative energy flow and effectively raising the target temperature.



Researchers designed and fabricated the device using a broadband infrared-absorbing substrate combined with germanium and zinc sulfide one-dimensional photonic crystal films. The device achieved a reflectance of 0.91 in the atmospheric transparent window and an absorptivity of 0.7 in the atmospheric radiative bands. Then, outdoor thermal testing was conducted, revealing that by covering SR film, the target's temperature increased by 2.1°C/4.4°C compared to a broadband reflective (low-e) surface and a broadband absorptive surface, respectively.



The study also assessed the potential application of this night-time warming strategy in cities with different climates, demonstrating that the annual electricity savings could surpass 300 kWh m-2 across different climate zones.

####

For more information, please click here

Contacts:
Media Contact

Yaobiao Li
Light Publishing Center, Changchun Institute of Optics, Fine Mechanics And Physics, CAS

Office: 86-431-861-76851
Expert Contact

Qiang Li
Zhejiang University, China

Copyright © Light Publishing Center, Changchun Institute of Optics, Fine Mechanics And Physics, CAS

If you have a comment, please Contact us.

Issuers of news releases, not 7th Wave, Inc. or Nanotechnology Now, are solely responsible for the accuracy of the content.

Bookmark:
Delicious Digg Newsvine Google Yahoo Reddit Magnoliacom Furl Facebook

Related Links

Paper:

Related News Press

News and information

New class of protein misfolding simulated in high definition: Evidence for recently identified and long-lasting type of protein misfolding bolstered by atomic-scale simulations and new experiments August 8th, 2025

Sensors innovations for smart lithium-based batteries: advancements, opportunities, and potential challenges August 8th, 2025

Deciphering local microstrain-induced optimization of asymmetric Fe single atomic sites for efficient oxygen reduction August 8th, 2025

Lab to industry: InSe wafer-scale breakthrough for future electronics August 8th, 2025

Possible Futures

ICFO researchers overcome long-standing bottleneck in single photon detection with twisted 2D materials August 8th, 2025

New molecular technology targets tumors and simultaneously silences two ‘undruggable’ cancer genes August 8th, 2025

Simple algorithm paired with standard imaging tool could predict failure in lithium metal batteries August 8th, 2025

First real-time observation of two-dimensional melting process: Researchers at Mainz University unveil new insights into magnetic vortex structures August 8th, 2025

Discoveries

Deciphering local microstrain-induced optimization of asymmetric Fe single atomic sites for efficient oxygen reduction August 8th, 2025

ICFO researchers overcome long-standing bottleneck in single photon detection with twisted 2D materials August 8th, 2025

New molecular technology targets tumors and simultaneously silences two ‘undruggable’ cancer genes August 8th, 2025

Simple algorithm paired with standard imaging tool could predict failure in lithium metal batteries August 8th, 2025

Announcements

Sensors innovations for smart lithium-based batteries: advancements, opportunities, and potential challenges August 8th, 2025

Deciphering local microstrain-induced optimization of asymmetric Fe single atomic sites for efficient oxygen reduction August 8th, 2025

Japan launches fully domestically produced quantum computer: Expo visitors to experience quantum computing firsthand August 8th, 2025

ICFO researchers overcome long-standing bottleneck in single photon detection with twisted 2D materials August 8th, 2025

Interviews/Book Reviews/Essays/Reports/Podcasts/Journals/White papers/Posters

New molecular technology targets tumors and simultaneously silences two ‘undruggable’ cancer genes August 8th, 2025

Simple algorithm paired with standard imaging tool could predict failure in lithium metal batteries August 8th, 2025

First real-time observation of two-dimensional melting process: Researchers at Mainz University unveil new insights into magnetic vortex structures August 8th, 2025

Lab to industry: InSe wafer-scale breakthrough for future electronics August 8th, 2025

Food/Agriculture/Supplements

New imaging approach transforms study of bacterial biofilms August 8th, 2025

SMART researchers pioneer first-of-its-kind nanosensor for real-time iron detection in plants February 28th, 2025

$900,000 awarded to optimize graphene energy harvesting devices: The WoodNext Foundation's commitment to U of A physicist Paul Thibado will be used to develop sensor systems compatible with six different power sources January 12th, 2024

Silver nanoparticles: guaranteeing antimicrobial safe-tea November 17th, 2023

Photonics/Optics/Lasers

ICFO researchers overcome long-standing bottleneck in single photon detection with twisted 2D materials August 8th, 2025

INRS and ELI deepen strategic partnership to train the next generation in laser science:PhD students will benefit from international mobility and privileged access to cutting-edge infrastructure June 6th, 2025

Institute for Nanoscience hosts annual proposal planning meeting May 16th, 2025

Following the folds – with quantum technology: The connection between a crumpled sheet of paper and quantum technology: A research team at the EPFL in Lausanne (Switzerland) and the University of Konstanz (Germany) uses topology in microwave photonics to make improved systems of May 16th, 2025

NanoNews-Digest
The latest news from around the world, FREE




  Premium Products
NanoNews-Custom
Only the news you want to read!
 Learn More
NanoStrategies
Full-service, expert consulting
 Learn More











ASP
Nanotechnology Now Featured Books




NNN

The Hunger Project