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Use of Temperature Sensors to Determine Exclusivity of Improved Stove Use and Associated Household Air Pollution Reductions in Kenya

机译:使用温度传感器确定改进的火炉使用和相关的家庭空气污染减少的专有性

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摘要

Household air pollution (HAP) contributes to 3.5–4 million annual deaths globally. Recent interventions using improved cookstoves (ICS) to reduce HAP have incorporated temperature sensors as stove use monitors (SUMs) to assess stove use. We deployed SUMs in an effectiveness study of 6 ICSs in 45 Kenyan rural homes. Stove were installed sequentially for 2 weeks and kitchen air monitoring was conducted for 48 hours during each 2-week period. We placed SUMs on the ICSs and traditional cookstoves (TCS) and the continuous temperature data were analyzed using an algorithm to examine the number of cooking events, days of exclusive use of ICS, and how stove use patterns affect HAP. Stacking, defined as using both a TCS and an ICS in the same day, occurred on 40% of the study days, and exclusive use of the ICS occurred on 25% of study days. When researchers were not present, ICS use declined, which can have implications for long-term stove adoption in these communities. Continued use of TCSs was also associated with higher HAP levels. SUMs are a valuable tool for characterizing stove use and provide additional information to interpret HAP levels measured during ICS intervention studies.
机译:家庭空气污染(HAP)导致全球每年3.5到400万死亡。最近使用改进的炉灶(ICS)减少HAP的干预措施已将温度传感器纳入炉灶使用监视器(SUM),以评估炉灶使用情况。我们在45个肯尼亚农村家庭的6个ICS的有效性研究中部署了SUM。炉子依次安装2周,每2周进行一次厨房空气监测48小时。我们将SUM放在ICS和传统炊具(TCS)上,并使用一种算法分析连续温度数据,以检查烹饪事件的数量,ICS的专有使用天数以及炉灶使用方式如何影响HAP。堆叠(定义为在同一天同时使用TCS和ICS)在40%的研究日内发生,而ICS的独占使用在25%的研究日内发生。当研究人员不在场时,ICS的使用量将下降,这可能对这些社区的长期火炉使用产生影响。继续使用TCS也与更高的HAP水平相关。 SUM是表征炉具使用的有价值的工具,并提供附加信息来解释ICS干预研究期间测得的HAP水平。

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