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Building-integrated agriculture: A first assessment of aerobiological air quality in rooftop greenhouses (i-RTGs)

机译:建筑综合农业:首先评估屋顶温室(I-RTG)的健美气体质量

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摘要

Building-integrated rooftop greenhouse (i-RTG) agriculture has intensified in recent years, due to the growing interest in the development of new agricultural spaces and in the promotion of food self-sufficiency in urban areas. This paper provides a first assessment of the indoor dynamics of bioaerosols in an i-RTG, with the aim of evaluating biological air quality in a tomato greenhouse near Barcelona. It evaluates the greenhouse workers' exposure to airborne pollen and fungal spores in order to prevent allergy problems associated with occupational tasks. Moreover, it evaluates whether the quality of the hot air accumulated in the i-RTG is adequate for recirculation to heat the building. Daily airborne pollen and fungal spore concentrations were measured simultaneously in the indoor and outdoor environments during the warm season. A total of 4,924 pollen grains/m3 were observed in the i-RTG, with a peak of 334 pollen grains/m3day, and a total of 295,038 fungal spores were observed, reaching a maximum concentration of 26,185 spores/m3day. In general, the results showed that the most important source of pollen grains and fungal spores observed indoors was the outdoor environment. However, Solanaceae pollen and several fungal spore taxa, such as the allergenic Aspergillus/Penicillium, largely originated inside the greenhouses or were able to colonize the indoor environment under favourable growing conditions. Specific meteorological conditions and agricultural management tasks are related to the highest observed indoor concentrations of pollen grains and fungal spores. Therefore, preventive measures have been suggested in order to reduce or control the levels of bioaerosols indoors (to install a system to interrupt the recirculation of air to the building during critical periods or to implement appropriate air filters in ventilation air ducts). This first evaluation could help in making decisions to prevent the development of fungal diseases, specifically those due to Oidium and Torula.
机译:近年来,建筑综合屋顶温室(I-RTG)农业增长,由于对新农业空间的发展和促进城市地区粮食自给自足的兴趣日益越来越兴趣。本文提供了对I-RTG中生物溶胶的室内动态的第一次评估,目的是评估在巴塞罗那附近的番茄温室中的生物空气质量。它评估温室工作人员暴露于空中花粉和真菌孢子,以防止与职业任务相关的过敏问题。此外,它评估了I-RTG中积累的热空气的质量是否足以进行再循环以加热建筑物。在温暖的季节,在室内和室外环境中同时测量日常空气载花粉和真菌孢子浓度。在I-RT中观察到总共4,924种花粉晶粒/ M3,峰值为334个花粉晶粒/ m3天,并且观察到总共295,038个真菌孢子,最大浓度为26,185孢子/ m30。一般来说,结果表明,在室内观察到的花粉颗粒和真菌孢子最重要的来源是户外环境。然而,Solanaceae Pollen和几种真菌孢子毒素,如过敏性曲霉/青霉素,大部分都源于温室内,或者能够在良好的生长条件下定植室内环境。具体的气象条件和农业管理任务与最高观察到的花粉颗粒和真菌孢子的室内浓度有关。因此,已经提出了预防措施,以减少或控制室内生物溶胶水平(安装系统以在关键时期中打断空气再循环到建筑物,或者在通风风管中实施适当的空气过滤器)。第一次评价可以有助于制定决定,以防止真菌疾病的发展,特别是由于Oidium和orcula而产生的真菌疾病。

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