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Characterization of Emissions from Kerosene Heaters in an Unvented Tent

机译:排气孔中煤油加热器的排放特征

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A potential contribution to the Gulf War Syndrome is presented in this paper. The human exposure to aerosols from unvented heaters in tents was simulated so that the contribution of this exposure to the Gulf War Syndrome can be estimated. Exposures to particulate matter and combustion gases (CO, NO, and SO2) were estimated with 3 types of portable kerosene heaters and 3 fuels. The airborne concentration was also monitored continuously with a real-time monitor. The aerodynamic particle size distribution measured by a cascade impactor indicated a uni- or bi-modal size distribution with the major peak between 0.1—1 sum. The air exchange rate ranged from 1—3.5 hr1 when the tent doors were open and closed. The air exchange rate and the type of fuel and heater were very important factors in determining the pollutant concentrations inside the tent. The CO and particulate concentrations reached the maximum soon after the combustion started; however, NO and SO2 concentrations rose slowly. The particle concentration and distribution results were used in the NCRP model to calculate the particle generation rate from heaters and the dose deposited in human lungs. The results showed that the particles deposited in the lung ranged from 0.31 to 0.97 mg for a 10 h (8 h for sleeping and 2 h for rest) stay in the tent with various heaters and fuels.
机译:本文提出了对海湾战争综合症的潜在贡献。模拟了人类暴露于帐篷中未经通风的加热器的气溶胶的暴露,从而可以估算这种暴露对海湾战争综合症的影响。用3种便携式煤油加热器和3种燃料估算了颗粒物和燃烧气体(CO,NO和SO2)的暴露。空气中的浓度也用实时监测器连续监测。级联式冲击器测量的空气动力学粒度分布表明单峰或双峰粒度分布,主峰在0.1-1和之间。当帐篷门打开和关闭时,空气交换速率为1-3.5 hr1。空气交换率以及燃料和加热器的类型是确定帐篷内污染物浓度的重要因素。燃烧开始后不久,CO和颗粒物浓度达到最大值。但是,NO和SO2浓度上升缓慢。颗粒浓度和分布结果用于NCRP模型,以计算加热器产生的颗粒率和沉积在人肺中的剂量。结果表明,沉积在肺部的颗粒物在10小时内(睡眠8小时,休息2小时)的浓度在0.31至0.97 mg之间,并通过各种加热器和燃料停留在帐篷中。

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