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

Astronauts experiment on lithium-ion batteries

By JIANG CHENGLONG | China Daily | Updated: 2026-01-08 09:24
Share
Share - WeChat

Astronauts aboard China's Tiangong space station have completed an experiment to study how microgravity affects the internal performance of lithium-ion batteries, according to the Chinese Academy of Sciences'Dalian Institute of Chemical Physics.

The institute announced on Wednesday that the Shenzhou XXI crew conducted the on-orbit operations together. Payload specialist Zhang Hongzhang utilized his professional expertise to lead the experiment's technical execution.

The project seeks to analyze the mechanisms through which microgravity influences key processes inside lithium-ion batteries. The institute said the research aims to provide "solid scientific evidence" to improve the efficiency of energy systems used in spacecraft.

Lithium-ion batteries are a critical power source for modern space missions due to their high energy density, long life cycle, and safety. Research has increasingly focused on microscopic mechanisms, specifically how the distribution of chemicals within the electrolyte affects battery power and service life.

In ground-based experiments, the gravitational field is constantly intertwined with the electric field.

This makes it difficult for researchers to isolate gravity's specific impact on internal battery processes. The microgravity environment of space allows scientists to study more "purely" processes such as ion transport, insertion, and extraction.

However, microgravity also presents challenges. The institute noted that liquid behavior inside batteries can differ significantly from that on Earth, leading to potential performance degradation and higher safety risks.

During the mission, Zhang conducted in situ optical observations and captured full-process images of lithium dendrite growth — microscopic, needlelike structures that can cause batteries to short-circuit. His tasks included monitoring the experiment in real time and recording key scientific phenomena.

The institute expects the experiment to help break the understanding bottleneck regarding coupled gravity and electric field effects, and provide a basis for optimizing current on-orbit systems and designing next-generation space batteries with increased energy capacity and safety.

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
 
五华县| 开阳县| 湛江市| 万山特区| 共和县| 临潭县| 芦山县| 隆回县| 齐河县| 霍林郭勒市| 永城市| 齐齐哈尔市| 平定县| 弥勒县| 会昌县| 南投县| 陆丰市| 朝阳县| 丽江市| 江西省| 乌鲁木齐县| 色达县| 逊克县| 昭觉县| 托克托县| 千阳县| 吉林省| 渝北区| 土默特左旗| 墨玉县| 怀远县| 海口市| 宝坻区| 崇仁县| 汉源县| 凉山| 六安市| 宣汉县| 奎屯市| 辽宁省| 霍山县|