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Experimental study on variations of CO2 concentration in the presence of indoor plants and respiration of experimental animals

机译:室内植物存在和实验动物呼吸作用下CO2 浓度变化的实验研究

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摘要

This study aims to suggest an improved experimental method to reveal the ability of indoor plants to reduce CO2 concentrations, as well as to display the individual CO2 reduction characteristics of various indoor plants in accordance with this improved method. In previous studies, experiments were conducted under the condition in which the CO2 concentration in the experimental chamber is set only once to a high initial level of 1,000 ppm. However, in real conditions, CO2 concentration gradually increases in a room after the occupants enter. Hence, the existing experimental method can be improved in view of “light saturation and CO2 compensation”. Accordingly, in this study, the CO2 reduction characteristics of indoor plants under 2 conditions used in the existing method of measurement (Case 1) and the condition in the new method, which considers that CO2 concentration gradually increases through the respiration of experimental animals (Case 2)-were measured and compared against each other. For all plant samples, the level of CO2 reduction was higher in Case 2 than in Case 1, and the rate of CO2 reduction increases with time. The inflection point of CO2 concentration appeared at leaf areas of 9,000 cm2 in peace lily and areca palm, and 6,000 cm2 in weeping fig.
机译:本研究旨在提出一种改进的实验方法,以揭示室内植物降低CO2浓度的能力,并根据该改良方法展示各种室内植物的CO2降低特征。在以前的研究中,实验是在以下条件下进行的:将实验室内的CO2浓度仅设置为一次高的1,000 ppm初始水平。然而,在实际条件下,乘员进入房间后,室内的二氧化碳浓度逐渐升高。因此,鉴于“光饱和度和CO 2补偿”,可以改进现有的实验方法。因此,在这项研究中,室内植物在现有测量方法(案例1)和新方法中使用的2种条件下的CO2消减特性均认为CO2浓度逐渐增加通过实验动物的呼吸(案例2)进行了测量并进行了比较。对于所有植物样品,案例2中的CO2减少水平均高于案例1,并且二氧化碳的减少率随时间增加。和平百合和槟榔的叶片面积为9,000 cm2 ,而垂枝无花果为6,000 cm2 ,CO2浓度的拐点出现在叶片面积上。

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