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COVID-19: antivirus materials and virus-detection device for aircraft cabin

COVID-19: antivirus materials and virus-detection device for aircraft cabin
COVID-19:机舱防病毒材料和病毒检测装置
批准号:
554502-2020
负责人:
Tan, Bo
金额:
$3.57万
依托单位:
依托单位国家:
加拿大
项目类别:
Alliance Grants
财政年份:
2020
资助国家:
加拿大
项目状态:
已结题
起止时间:
2020-01-01 至 2021-12-31

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中文摘要
翻译
新冠肺炎疫情使全球航空业陷入前所未有的危机。这场危机带来了一些技术挑战,特别是在保护消费者健康方面。抗菌涂层和病毒监测设备提供了解决方案。这一伙伴关系的目标是找到有效的方法来改善飞机机舱内的卫生条件。提出了两种方法。首先,将对硬表面和纺织品的抗菌涂层进行评估。最近的研究表明,新冠肺炎可以在表面保持几个小时到几天的传染性,无论表面看起来是脏还是干净。由于在飞行服务期间对表面进行消毒是不可行的,更实际的解决方案是安装一种表面来驱赶病原体,从而消除传播到人体和随后病毒传播的可能性。虽然有很多抗菌涂层可供选择,但这些涂层都没有经过新冠肺炎的测试。利用动物冠状病毒,我们将评估现有涂层产品的抗病毒效果,并确定推荐应用于飞机内饰的最佳涂层产品。这项评估的结果将使现有飞机尽快重新投入使用。其次,我们提出了一种用于飞机舱内病毒检测的高灵敏度拉曼分析仪。这种手持设备可以在几秒钟内获得结果,实现频繁的在役检查,以便在污染扩散到乘客和机组人员之前进行清理。这些技术降低了污染和疾病传播的风险,有助于恢复消费者对旅游的信心,从而支持航空业从新冠肺炎造成的衰退中复苏。
英文摘要
The COVID-19 pandemic has plunged the global airline industry into an unprecedented crisis. This crisis raises a number of technical challenges, particularly in terms of safeguarding consumer health. Antimicrobial coating and virus monitoring devices provide a solution. The goal of this partnership is to find effective methods to improve hygiene conditions inside aircraft cabins. Two approaches are proposed. First, antimicrobial coatings for hard surfaces as well as textiles will be evaluated. Recent studies show COVID-19 can remain infectious on surfaces for several hours to days, irrespective of the surface looking dirty or clean. Since sanitizing surfaces during flight service is not feasible, a more practical solution is installing a surface that repels the pathogens, thus eliminating the possibilities of transfer to the human body and subsequent viral spread. Although many antimicrobial coatings are available, none of these have been test for COVID-19. Using animal coronavirus virus, we will assess the antiviral effect of existing coating products and identify the best one to be recommended to be applied to aircraft interiors. The outcome of this assessment will allow for existing aircraft to re-enter service as soon as possible. Secondly, we propose a highly sensitive Raman analyzer for virus inspection inside the aircraft cabin. This handheld device can obtain results in a couple of seconds, enabling frequent in-service inspection so that contamination can be cleaned before it spreads to passengers and crew. These techniques reduce the risk of contamination and disease spread, helps to restore consumer confidence in travel, and thus, supports the aviation industry to recover from the recession caused by COVID-19.
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Femtosecond pulsed laser synthesis of functional nanomaterials and their applications
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Femtosecond pulsed laser synthesis of functional nanomaterials and their applications
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  • 项目类别:
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Quantum probe enabled Raman spectroscopy for HIV test
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  • 项目类别:
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Femtosecond pulsed laser synthesis of functional nanomaterials and their applications
  • 批准号:
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  • 项目类别:
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  • 财政年份:
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