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Characterizing emissions from open burning of military food waste and ration packaging compositions

机译:表征军用食品垃圾和定量包装组合物露天燃烧产生的排放

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Emissions from open burning of military food waste and ration packaging compositions were characterized in response to health concerns from open burning disposal of waste, such as at military forward operating bases. Emissions from current and prototype Meals, Ready-to-Eat (MREs), and material options for their associated fiberboard packaging were quantified to assess contributions of the individual components. MREs account for 67-100% of the particulate matter (PM), volatile organic compounds (VOCs), polycyclic aromatic hydrocarbons (PAHs), and polychlorinated dibenzo-p-dioxins and -furans (PCDDs/PCDFs) emissions when burned in unison with the current fiberboard container and liner. The majority of the particles emitted from these burns are of median diameter 2.5 A mu m (PM2.5). Metal emission factors were similar regardless of waste composition. Measurements of VOCs and PAHs indicate that targeted replacement of MRE components may be more effective in reducing emissions than variation of fiberboard-packaging types. Despite MRE composition variation, equivalent emission factors for PM, PAH, VOC, and PCDD/PCDF were seen. Similarly, for fiberboard packaging, composition variations exhibited essentially equivalent PM, PAH, VOC, and PCDD/PCDF emission factors amongst themselves. This study demonstrated a composition-specific analysis of waste burn emissions, assessing the impact of waste component substitution using military rations.
机译:应对军用食品废物和定量包装组合物露天燃烧产生的排放进行了表征,以应对露天燃烧废物的健康问题,例如在军事前线作战基地。对当前餐食和原型餐,即食食品(MRE)以及相关纤维板包装的材料选择进行了量化,以评估各个组件的贡献。与以下物质一起燃烧时,MRE占颗粒物(PM),挥发性有机化合物(VOC),多环芳烃(PAH)以及多氯二苯并对二恶英和-呋喃(PCDD / PCDF)排放的67-100%当前的纤维板容器和衬板。从这些烧伤中散发的大多数颗粒的中位直径为2.5 Aμm(PM2.5)。无论废物成分如何,金属排放因子均相似。对VOC和PAH的测量表明,有针对性地更换MRE组件可能比改变纤维板包装类型更有效地减少排放。尽管MRE成分有所变化,但仍可以看到PM,PAH,VOC和PCDD / PCDF的等效排放因子。同样,对于纤维板包装,其成分变化在本质上表现出基本上相同的PM,PAH,VOC和PCDD / PCDF排放因子。这项研究证明了对废物燃烧排放物的特定成分分析,使用军事口粮评估了废物成分替代的影响。

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