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Inorganic chemical composition of PM_(2.5) emissions from the combustion of six main tree species in subtropical China

机译:亚热带六种主要树种燃烧产生的PM_(2.5)排放物的无机化学成分

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摘要

Branches and leaves of six prevalent tree species in sub-tropical China (Masson pine, Oleander, Chinese fir, Camphor, Eucalyptus and Phoebe bournei) were burned in a self-designed biomass combustion system to determine the emission characteristics and chemical composition of the particulate matter emitted. The carbonaceous content and water-soluble ions of PM2.5were analyzed by an Elementar elemental analyzer and ion chromatography in liquid. The results demonstrate that different combustion conditions have significant effects on emission factors, carbonaceous components and water-soluble ion emissions of PM2.5released from the combustion of branches and leaves. The average emission factor of PM2.5(EFPM2.5) of leaves in smoldering and flaming stages were 28.61 ± 4.90 g/kg and 10.91 ± 3.32 g/kg, respectively, while the average EFPM2.5of branches in these stages were 21.09 ± 2.86 g/kg and 9.74 ± 2.76 g/kg. Compared to flaming, more PM2.5was emitted during the smoldering stage from both branches and leaves for six different tree species, while leaves released greater PM2.5than branches, and conifer trees contributed more to PM2.5emissions than broad-leaved trees. In addition, findings demonstrate that the smoldering stage accelerates the release of OC (organic carbon), while the release of EC (elemental carbon) is promoted by the flaming stage. Findings also demonstrate that the ratio between OC, EC and PM2.5varies significantly under different combustion conditions. Both tree species and combustion conditions were identified as important influencing factors for the content and emission factors of water-soluble ions in PM2.5. Ten kinds of water-soluble ions were detected in PM2.5, with K+occupying the highest percentage of emissions content and highest emission factor, followed by Cl−, F−and SO42−. With these findings, this study contributes to further understanding of the impact of forest fires on the atmospheric environment and ecosystem in subtropical China, as well as provides reference for other regions of the world.
机译:在自行设计的生物质燃烧系统中燃烧了亚热带中国的六种流行树种(梅森松,夹竹桃,杉木,樟脑,桉树和楠木)的枝叶,以确定颗粒物的排放特征和化学组成排放的物质。通过元素分析仪和离子色谱法在液体中分析了PM2.5的碳含量和水溶性离子。结果表明,不同的燃烧条件对枝叶燃烧释放的PM2.5的排放因子,碳质成分和水溶性离子排放有显着影响。闷燃和燃烧阶段叶片的PM2.5(EFPM2.5)的平均排放因子分别为28.61±4.90μg/ kg和10.91±3.32kgg / kg,而这些阶段的枝条的平均EFPM2.5为21.09±。 2.86微克/千克和9.74微克±2.76微克/千克。与燃烧相比,在闷燃阶段,六种不同树种的树枝和树叶都释放出更多的PM2.5,而树叶释放的PM2.5高于树枝,针叶树比阔叶树对PM2.5排放的贡献更大。此外,研究结果表明,阴燃阶段加速了OC(有机碳)的释放,而EC(元素碳)的释放则由燃烧阶段促进。研究结果还表明,在不同的燃烧条件下,OC,EC和PM2.5之间的比率存在显着差异。树种和燃烧条件都被认为是影响PM2.5中水溶性离子含量和排放因子的重要因素。在PM2.5中检测到10种水溶性离子,其中K +占据最高的排放量百分比和最高的排放因子,其次为Cl-,F-和SO42-。有了这些发现,本研究有助于进一步了解森林火灾对亚热带中国大气环境和生态系统的影响,并为世界其他地区提供参考。

著录项

  • 来源
    《Atmospheric environment》 |2018年第9期|107-115|共9页
  • 作者单位

    College of Forestry, Fujian Agriculture and Forestry University,Collaborative Innovation Centre of Soil and Water Conservation in Red Soil Region of the Cross-Strait,School of Environmental and Forest Sciences, University of Washington;

    College of Forestry, Fujian Agriculture and Forestry University,Collaborative Innovation Centre of Soil and Water Conservation in Red Soil Region of the Cross-Strait;

    Asian Forest Research Centre, Faculty of Forestry, University of British Columbia;

    School of Environmental and Forest Sciences, University of Washington;

    College of Forestry, Fujian Agriculture and Forestry University,Collaborative Innovation Centre of Soil and Water Conservation in Red Soil Region of the Cross-Strait;

    College of Forestry, Fujian Agriculture and Forestry University,Collaborative Innovation Centre of Soil and Water Conservation in Red Soil Region of the Cross-Strait;

    College of Forestry, Fujian Agriculture and Forestry University,Collaborative Innovation Centre of Soil and Water Conservation in Red Soil Region of the Cross-Strait;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biomass burning; Particulate matter; Emission factor; Forest fire; Water-soluble ions;

    机译:生物质燃烧;颗粒物;排放因子;森林火灾;水溶性离子;

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