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Combating the 'Sick Building Syndrome' by Improving Indoor Air Quality

机译:通过改善室内空气质量来对抗“病态建筑综合症”

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摘要

Research indicates that many of symptoms attributed to the Sick Building Syndrome in air-conditioned office buildings are a result of considerably reduced negative ions in the internal atmosphere and that replacing the depleted negative ions can improve indoor air quality. This paper describes a method used to develop a formula (DOF-NIL formula) for calculating the amount of negative ions to be added to air-conditioned buildings, to improve air quality. The formula enables estimates to be made based on how negative ions in the air are reduced by three main factors namely, Video Display Terminals (VDT); heating, ventilation and air conditioning (HVAC) and Building Contents (BC). Calculations for a typical air-conditioned office, are compared with an Air Ion Counter instrument. The results show that the formula, when applied to a typical air-conditioned office, provides an accurate estimate for design purposes. The typical rate of additional negative-ions (ion-generating) for a negative ion condition is found to be approximately 12.0 billion ions/hr for at least 4 hour ion-generating.
机译:研究表明,空调办公楼中病态建筑综合症引起的许多症状是内部大气中负离子显着减少的结果,而替换耗尽的负离子可以改善室内空气质量。本文介绍了一种用于开发公式(DOF-NIL公式)的方法,该公式用于计算要添加到空调建筑物中的负离子的数量,以改善空气质量。该公式使得能够基于空气中的负离子如何通过三个主要因素(即视频显示终端(VDT))减少来进行估算。供暖,通风和空调(HVAC)和建筑物内容(BC)。将典型空调办公室的计算结果与“空气离子计数器”仪器进行比较。结果表明,该公式应用于典型的空调办公室时,可为设计目的提供准确的估算。对于负离子条件,典型的附加负离子(产生离子)的速率在至少产生4小时的离子时约为120亿个离子/小时。

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