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Measuring the Impact of Selected Plants on Indoor CO2 Concentrations

机译:测量所选植物对室内CO2浓度的影响

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Nearly 90% of people's lives are lived indoors, and their health is affected by the concentrations of CO2 in these spaces. Carbon dioxide concentrations can rapidly change based on human activity in indoor living spaces. Indoor plants and the concentration of CO2 in the local environment are factors that influence most people. Plants, depending on the ambient light and temperature conditions, and which are necessary to perform photosynthesis or respiration, directly affect the concentration of CO2 in the local environment. Furthermore, indoor plants influence the level of CO2 in the local environment but have not been researched enough in recent years concerning their specific effects. This study attempts to determine the effects of indoor plants on the concentration of CO2 in an indoor environment under certain light conditions. Five indoor plants were placed in a glass-walled compartment in order to measure the amount of CO2. The glass compartment used in the study was positioned in a way to prevent direct sunlight yet provide an illuminated environment. The plants were placed into this airtight compartment with a glass wall, which had a volume of approximately 0.5 m(3) (0.7 m x 0.7 m x 1 m). The measurements of CO2 within the compartment were carried out via Extech Desktop Indoor Air Quality CO2 Datalogger, and the CO2 measuring device placed in the compartment was set to measure CO2 once every five minutes. The study found that all plants reduced the concentration of CO2 to a certain extent during the day.
机译:人们近90%的生活生活在室内,这些空间中的CO2浓度会影响他们的健康。二氧化碳浓度可以根据室内居住空间中的人类活动而迅速变化。室内植物和当地环境中的CO2浓度是影响大多数人的因素。根据环境光和温度条件以及进行光合作用或呼吸所必需的植物,会直接影响当地环境中CO2的浓度。此外,室内植物会影响当地环境中的CO2含量,但近年来对其特效的研究还不够深入。本研究试图确定室内植物在某些光照条件下对室内环境中CO2浓度的影响。为了测量CO2的量,将五种室内植物放置在玻璃墙的隔间中。研究中使用的玻璃隔间的放置方式可以防止阳光直射,但要提供照明环境。将植物放入带有玻璃墙的密闭隔室中,玻璃墙的体积约为0.5 m(3)(0.7 m x 0.7 m x 1 m)。通过Extech台式室内空气质量CO2数据记录仪对隔室内的CO2进行测量,并将放置在隔室内的CO2测量设备设置为每五分钟测量一次CO2。研究发现,所有植物在白天都会在一定程度上降低CO2浓度。

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