波音游戏-波音娱乐城赌球打不开

Graphene face masks could prevent COVID-19 secondary transmission

The masks have an anti-bacterial efficiency of 80%, which increases when exposed to sunlight.

A group of researchers from City University of Hong Kong successfully produced laser-induced graphene face masks with an anti-bacterial efficiency of 80%, which can be improved to almost 100% within 10 minutes under sunlight. It has already been tested on two strains of coronavirus with positive results.

Credit City University of Hong Kong

Amid the pandemic, face masks have become an important tool to prevent the spread of the COVID-19. Nevertheless, the commonly used masks aren’t anti-bacterial, which can increase the risk of secondary transmission if the masks are discarded improperly or if people touch the contaminated surfaces of the used masks.

Dr. Ye Ruquan from City University of Hong Kong recently developed an easy way to produce graphene, a material known for its anti-bacterial properties. That’s why right after the outbreak of the novel coronavirus he decided to explore the possibility of applying his technique to produce graphene masks at the university.

Alongside his research team, Ye tested the graphene with the E. coli bacteria, achieving an anti-bacterial efficiency of more than 80%. The activated carbon fiber and melt-blown fabrics, two materials that are commonly used in face masks, only have a 2% and 9% efficiency, respectively, showing the large potential of graphene.

Over 90% of the E. coli deposited on carbon fiber and melt-blown fabrics stayed alive after eight hours, while most of the bacteria deposited on the graphene were dead after eight hours. The graphene also showed a larger anti-bacterial capacity for aerosolized bacteria, according to the results of the experiment.

While more research is needed to understand the mechanism behind the bacteria-killing property of the graphene, the researchers believe that it could be related to the graphene’s sharp edge that damages the membranes of the bacterial cells. The bacteria could also be killed by dehydration caused by the water-repelling property of the graphene.

The team also performed experiments to test whether graphene’s capacity to produce heat after absorbing light would enhance its anti-bacterial effect. The results showed that the anti-bacterial efficiency of the graphene could reach almost 100% after 10 minutes of exposure to the sunlight.

RelatedPosts

Following the initial results, the researchers are now working with a laboratory in China to test the graphene against two species of coronaviruses. The initial tests showed that the material inactivated 90% of the virus in five minutes and 100% in 10 minutes of sunlight.

“Laser-induced graphene masks are reusable. If biomaterials are used for producing graphene, it can help to resolve the problem of sourcing raw material for masks. And it can lessen the environmental impact caused by the non-biodegradable disposable masks,” said Ye in a statement.

The study was published in the journal ACS Nano.

Fermin Koop

Fermin Koop

Fermin Koop is a reporter from Buenos Aires, Argentina. He holds an MSc from Reading University (UK) on Environment and Development and is specialized in environment and climate change news.

Related Posts

大众百家乐的玩法技巧和规则| 百家乐谋略| 百家乐官网庄闲的概率| 百家乐官网如何洗吗| 玩百家乐免费| 大家旺娱乐| 百家乐娱乐城提款| 金门县| 电玩百家乐的玩法技巧和规则| 澳门百家乐图形| 百家乐官网光纤洗牌机如何做弊| 百家乐官网翻天在线观看| 自贡百家乐娱乐场开户注册| 新奥博百家乐官网娱乐城| 大发888娱乐场 34| 百家乐官网桌现货| 扬中棋牌游戏中心| 百家乐官网双龙出| 奉新县| 威尼斯人娱乐场送1688元礼金领取lrm | 网络博彩| 百家乐必胜方法如果你还想继续不看可能后悔一生 | 正规博彩通| 立博百家乐的玩法技巧和规则| 百家乐官网单跳打法| 大发888信誉| 百家乐波音平台有假吗| 海港城娱乐城| 百家乐赌博在线娱乐| 百家乐官网路单怎样| bet365网址| 威尼斯人娱乐怎么样| 木棉百家乐的玩法技巧和规则| 神州百家乐的玩法技巧和规则| 澳门百家乐官网有哪些| 会同县| 明升信誉| 网上百家乐赌博经历| 乐天堂百家乐娱乐网| 单耳房做生意的风水| 金域百家乐官网的玩法技巧和规则 |