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Nanoparticle emissions from residential wood combustion: A critical literature review, characterization, and recommendations

机译:住宅木材燃烧产生的纳米粒子排放:重要文献综述,特征和建议

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摘要

The increased use of wood as a heating fuel in residential and small commercial buildings has increased concern about potential environmental and safety impacts, specifically particulate matter (PM) emissions in the nanometer range. Larger particles ( 2.5 mu m) can be effectively removed from exhaust streams by emission control devices. However, nanoparticles (NP), due to their size, are more difficult to capture in exhaust flue gases. In addition, NPs have a higher surface to volume ratio, allowing them to absorb organic compounds, causing them to be more reactive than their larger counterparts. This review focuses on the NPs produced from residential wood heating devices. Current emission regulations do not reflect the NP count or type produced from residential wood combustion, although most published studies show that a significant portion of the particles produced during combustion is in the nano-size range. Fuel type, device type and combustion periods have all shown to impact, at various degrees, the NPs produced. Contrary to common expectations, it appears that modern units may generate a higher count of NPs, although emitting less particulate mass than older units. This investigation supports arguments of needed particle type and count regulations in addition to the current mass based emission regulations. In addition to a critical review and analysis, recommendations are made regarding future testing, monitoring and environmental impact studies that address the significance of NP emissions.
机译:在住宅和小型商业建筑中越来越多地使用木材作为取暖燃料,这增加了人们对潜在的环境和安全影响的担忧,特别是纳米范围内的颗粒物(PM)排放。排放控制装置可以有效地将较大的颗粒(> 2.5微米)从废气流中清除。但是,由于纳米粒子(NP)的尺寸,更难以捕获到废气中。另外,NP具有更高的表面积与体积比,从而使它们能够吸收有机化合物,从而使其比较大的NP具有更高的反应活性。这篇评论集中于由住宅木材加热设备产生的NP。尽管大多数已发表的研究表明,燃烧过程中产生的很大一部分颗粒处于纳米级范围内,但现行的排放法规并未反映出住宅木材燃烧所产生的NP数量或类型。燃料类型,设备类型和燃烧时间都在不同程度上影响所产生的NP。与普遍的期望相反,现代的装置虽然产生的颗粒质量比旧的装置少,但可能会产生更多的NP。除当前基于质量的排放法规外,该研究还支持有关所需粒子类型和计数法规的论点。除了进行严格的审查和分析之外,还提出了有关未来测试,监测和环境影响研究的建议,以解决NP排放的重要性。

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