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增加教室通风率(以降低二氧化碳浓度表示)对儿童学业表现的影响。

The effect of increased classroom ventilation rate indicated by reduced CO2 concentration on the performance of schoolwork by children.

机构信息

Department of Engineering, Aarhus University, Aarhus N, Denmark.

Danish Technological Institute, Aarhus C, Denmark.

出版信息

Indoor Air. 2016 Jun;26(3):366-79. doi: 10.1111/ina.12210. Epub 2015 Apr 27.

Abstract

The article reports on an experiment which investigated the effect of increased classroom ventilation rate on the performance of children aged 10-12 years. The experiment was executed at two different schools (two classrooms at each school) as a double-blind 2 × 2 crossover intervention where four different performance tests were used as surrogates for short-term concentration and logical thinking. Only complete pairs of test responses were included in the within-subject comparisons of performance, and data were not corrected for learning and fatigue effects. Analysis of the total sample suggested the number of correct answers was improved significantly in four of four performance test, addition (6.3%), number comparison (4.8%), grammatical reasoning (3.2%), and reading and comprehension (7.4%), when the outdoor air supply rate was increased from an average of 1.7 (1.4-2.0) to 6.6 l/s per person. The increased outdoor air supply rate did not have any significant effect on the number of errors in any of the performance tests. Results from questionnaires regarding pupil perception of the indoor environment, reported Sick Building Syndrome symptoms, and motivation suggested that the study classroom air was perceived more still and pupil were experiencing less pain in the eyes in the recirculation condition compared to the fresh air condition.

摘要

本文报道了一项实验,该实验调查了增加教室通风率对 10-12 岁儿童表现的影响。该实验在两所不同的学校(每所学校两个教室)进行,采用双盲 2×2 交叉干预,使用四项不同的绩效测试作为短期注意力和逻辑思维的替代指标。只有完整的配对测试反应才被纳入性能的个体内比较,并且数据未针对学习和疲劳效应进行校正。对总样本的分析表明,在四项绩效测试中的四项中,正确答案的数量显著提高,分别是加法(6.3%)、数字比较(4.8%)、语法推理(3.2%)和阅读与理解(7.4%),当室外空气供应量从每人平均 1.7(1.4-2.0)增加到 6.6 l/s 时。增加的室外空气供应量对任何一项绩效测试中的错误数量均无显著影响。关于学生对室内环境感知、报告的病态建筑综合征症状和动机的问卷调查结果表明,与新鲜空气条件相比,在再循环条件下,研究教室的空气被感知为更加静止,学生眼睛疼痛的感觉也更少。

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