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Energy impact assessment for the reduction of carbon dioxide and formaldehyde exposure risk in air-conditioned offices

机译:能源影响评估,以减少空调办公室中的二氧化碳和甲醛暴露风险

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Treatment of fresh air in ventilation systems for air-conditioning consumes a considerable amount of energy and affects the indoor air quality (IAQ). In this study, energy impact on ventilation systems was examined against certain IAQ objectives for indoor formaldehyde exposure risk in air-conditioned offices of Hong Kong. Thermal energy consumptions for ventilation systems and indoor formaldehyde exposure concentrations based on some regional surveys of typical offices in Hong Kong were reviewed. The thermal energy consumptions of ventilation systems operating for CO_2 exposure concentrations between 800 ppmv and 1200 ppmv for typical office buildings and the corresponding formaldehyde exposure risks were evaluated. The results showed that, for a reference indoor environment at a CO_2 exposure concentration of 1000 ppmv, the average thermal energy saving of ventilation system for a unit increment of the acceptable formaldehyde exposure limit of 1 h (loss of life expectancy of 0.0417 day) was 280 MJ m~(-2) yr~(-1); and for a unit decrement of the exposure limit of 1 h, an additional average thermal energy consumption of 480 MJ m~(-2) yr~(-1) was expected. This study would be a useful source of reference in evaluation of the energy performance of ventilation strategies in air-conditioned offices at a quantified exposure risk of formaldehyde.
机译:在空调通风系统中处理新鲜空气会消耗大量能量,并影响室内空气质量(IAQ)。在这项研究中,针对室内空调办公室室内甲醛暴露风险的某些室内空气质量指标,研究了对通风系统的能量影响。根据对香港典型办事处的一些区域调查,对通风系统的热能消耗和室内甲醛暴露浓度进行了审查。评估了典型办公楼中CO_2暴露浓度在800 ppmv和1200 ppmv之间的通风系统的热能消耗以及相应的甲醛暴露风险。结果表明,对于CO_2暴露浓度为1000 ppmv的参考室内环境,可接受的甲醛暴露极限每增加1 h(预期寿命损失0.0417天),通风系统的平均热能节省为280 MJ m〜(-2)yr〜(-1);对于单位暴露量1 h的降低,预期平均额外热能消耗为480 MJ m〜(-2)yr〜(-1)。这项研究将为评估空调办公室在量化的甲醛暴露风险下的通风策略的能源绩效提供有用的参考。

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