国产热热热精品,亚洲视频久久】日韩,三级婷婷在线久久,99人妻精品视频,精品九热人人肉肉在线,AV东京热一区二区,91po在线视频观看,久久激情宗合,青青草黄色手机视频

Global EditionASIA 中文雙語Fran?ais
China
Home / China / Innovation

Chinese researchers make breakthrough in green cooling technology

Xinhua | Updated: 2026-01-22 11:00
Share
Share - WeChat

BEIJING -- A group of Chinese researchers has achieved a breakthrough in refrigeration technology by discovering a new cooling effect that can help simultaneously realize low-carbon emission, high cooling capacity and high heat transfer efficiency, according to a study published on Thursday in the journal Nature.

Refrigeration technology is one of the cornerstones of modern society. Widely used vapor-compression cooling contributes to about 2 percent of China's GDP, but also consumes nearly 20 percent of its electricity and generates 7.8 percent of its carbon emissions.

To address the need for greater efficiency and emission reductions, researchers have in recent years developed solid-state caloric materials. These materials absorb and release heat via changes in pressure or magnetic fields, thus preventing emission concerns.

However, such materials have a fatal flaw, as solids don't transfer heat well, thereby making them inefficient when there is a need for large-scale use.

A research team led by Li Bing from the Institute of Metal Research, Chinese Academy of Sciences discovered the dissolution barocaloric effect in an NH?SCN salt solution. When pressure is applied to such a solution, solid NH?SCN precipitates and releases heat. In the event of depressurization, the salt rapidly dissolves in the solution while absorbing a large amount of heat.

At room temperature, the solution's temperature can drop by nearly 30 degrees Celsius within 20 seconds, with even greater cooling performance achieved at higher temperatures, far surpassing the capabilities of current solid-state caloric materials.

This new method unifies the refrigerant and heat-transfer mediums into a single fluid, achieving low carbon emissions, high cooling capacity and high heat transfer efficiency all at once, the study notes.

Based on this discovery, the team designed a four-step cyclic system including pressurization for heating, heat dissipation to the environment, depressurization for cooling, and delivery of cooling capacity.

Simulations show that a single cycle of this system can achieve 67 joules of heat absorption per gram of solution, with an energy efficiency as high as 77 percent, demonstrating significant potential for engineering and commercial applications.

The study not only provides a novel refrigeration principle, but also lays a critical scientific foundation for the development of efficient and environmentally friendly next-generation cooling technologies, such as cooling systems for large-scale data centers.

According to the Global Cooling Watch 2025 issued by UNEP, the cooling demand could more than triple by 2050 over 2022 level, which would almost double cooling-related greenhouse gas emissions.

Top
BACK TO THE TOP
English
Copyright 1994 - . All rights reserved. The content (including but not limited to text, photo, multimedia information, etc) published in this site belongs to China Daily Information Co (CDIC). Without written authorization from CDIC, such content shall not be republished or used in any form. Note: Browsers with 1024*768 or higher resolution are suggested for this site.
License for publishing multimedia online 0108263

Registration Number: 130349
FOLLOW US
 
西宁市| 高台县| 灵寿县| 南澳县| 从江县| 女性| 侯马市| 江山市| 巴南区| 天水市| 青田县| 罗田县| 成都市| 阳山县| 广汉市| 思茅市| 永兴县| 新密市| 孟州市| 钦州市| 西充县| 恩施市| 九江市| 勃利县| 永春县| 乌兰浩特市| 克拉玛依市| 盐池县| 北碚区| 东至县| 磴口县| 马鞍山市| 正蓝旗| 红河县| 东明县| 襄汾县| 祁连县| 永平县| 达拉特旗| 青岛市| 当涂县|