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Bioactive Nano-Filters to Control Legionella on Indoor Air

机译:生物活性纳米过滤器控制室内空气的军团菌

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Several factors affect the indoor air quality, among which ventilation, human occupancy, cleaning products, equipment and material; they might induce the presence of aerosols (or bioaerosols in the presence of biological components) nitrogen oxides, ozone, carbon monoxide and dioxide, volatile organic compounds, radon and microorganisms. Microbiological pollution involves hundreds of bacteria and fungi species that grow indoors under specific conditions of temperature and humidity. Exposure to microbial contaminants is clinically associated with allergies, asthma, immune responses and respiratory infections, such as Legionnaire's Disease and Pontiac Feaver, which are due to contamination by Legionella pneumophila. Legionnaire's Disease has increased over the past decade, because of the use of central air conditioning. In places such as homes, kindergartens, nursing homes and hospitals, indoor air pollution affects population groups that are particularly vulnerable because of their health status or age, making indoor air pollution a public health issue of high importance. Therefore, the implementation of preventive measures, as the application of air filters, is fundamental. Currently, High Efficiency Particulate Air (HEPA) filters are the most used to capture microorganisms in ventilation, filtration and air conditioning systems; nevertheless, as they are not completely secure, new filters should be developed. This work aims to present how the efficiency of a textile nano-structure in a non-woven material based on synthetic textiles (high hydrophobic fibers) incorporating appropriate biocides to control Legionella pneumophila, is going to be measured. These bioactive structures, to be used in ventilation systems, as well as in respiratory protective equipment, will reduce the growth of microorganisms in the air through bactericidal or bacteriostatic action. The filter nano-structure should have good air permeability, since it has to guarantee minimum flows of fresh air for air exchange as well as acceptable indoor air quality.
机译:有几个因素影响室内空气质量,其中通风,人占用,清洁产品,设备和材料;它们可诱导(在生物组分的存在或生物气溶胶)氮氧化物,臭氧,一氧化碳和二氧化碳,挥发性有机化合物,氡和微生物气溶胶的存在。微生物污染涉及数百个温度和湿度的特定条件下生长室内细菌和真菌物种。暴露于微生物污染物是临床与变态反应,哮喘,免疫反应和呼吸道感染,如军团病和庞蒂亚克费韦尔,这是由于由嗜肺军团菌污染相关联。退伍军人病有所增加,在过去的十年中,因为使用中央空调的。在一些地方,如家庭,幼儿园,养老院,医院,室内空气污染的影响是因为其健康状况或年龄特别是弱势群体,使室内空气污染的重要度高的公共健康问题。因此,预防措施的实施,空气过滤器的应用,才是根本。目前,高效微粒空气(HEPA)过滤器,大多用来通风,过滤和空气调节系统采集的微生物;尽管如此,因为它们并不是完全安全的,新的过滤器应制定。这项工作旨在本基于合成纺织品(高的疏水性纤维)掺入适当的杀生物剂,以控制嗜肺军团菌,纺织品的纳米结构的在非织造材料中的效率将如何进行测量。这些生物活性的结构,在通风系统中使用,以及在呼吸防护设备,会降低微生物的在空气中的生长通过杀菌或抑菌作用。该过滤器的纳米结构应具有良好的透气性,因为它必须保证最小空气交换以及可接受的室内空气质量流的新鲜空气。

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