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首页> 外文期刊>Journal of environmental sciences >Physicochemical characterization of forest and sugarcane leaf combustion's particulate matters using electron microscopy, EDS, XRD and TGA
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Physicochemical characterization of forest and sugarcane leaf combustion's particulate matters using electron microscopy, EDS, XRD and TGA

机译:使用电子显微镜,EDS,XRD和TGA的森林和甘蔗叶燃烧颗粒物的物理化学特征

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Physical characteristics and quantitative elemental composition of PM and residual ash produced from sugarcane leaves (SCL) combustion were investigated using TEM-EDS compared with forest leaves (FRL). SEM-EDS was used to analyze the microstructure and chemical composition of biomass raw leaves and PM. XRD analysis was also performed to investigate the characterization of the crystalline nanostructure, structure of PM, and residual ash compared to the TEM image processing method. The oxidation kinetics of biomass raw ma-terials, PM, and residual ash were investigated by TGA. The morphology of fine and ultrafine agglomerate structure of SCL soot and residual ash are not significantly different from the FRL soot and residual ash. The average diameter sizes of single primary nanoparticles of SCL and FRL soot are approximately 37 nm and 35 nm, while the sizes of residual ash are about 18 nm and 22 nm, respectively. The single primary nanoparticles of soot are mainly com-posed of curve line crystallites of carbon fringes, while residual ash is composed of straightline lattice fringes. The average fringe lengths of SCL and FRL soot are about 1.25 nm and 1.04 nm from the outer shell and 0.89 nm and 0.74 nm from the inner core. The interlayer spacing of curve line carbon fringes of SCL and FRL soot is approximately 0.359 nm and 0.362 nm by the TEM image analysis and it was matched with XRD analysis. The biomass PMs are mainly composed of soot, Si, Ca, and K compounds: SiO2, CaCO3, and KCl. (C) 2020 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:利用TEM-EDS研究了甘蔗叶片(SCL)燃烧产生的PM和残余灰分的物理特性和定量元素组成,并与森林叶片(FRL)进行了比较。利用SEM-EDS分析了生物质原料叶和PM的微观结构和化学成分。与TEM图像处理方法相比,还进行了XRD分析,以研究结晶纳米结构、PM结构和残余灰分的表征。用TGA研究了生物质原料、PM和残余灰分的氧化动力学。SCL烟灰和残灰的细颗粒和超细团聚体结构形态与FRL烟灰和残灰没有显著差异。SCL和FRL烟尘的单个初级纳米颗粒的平均直径分别约为37 nm和35 nm,而残余灰的尺寸分别约为18 nm和22 nm。碳烟的单初生纳米颗粒主要由碳条纹的曲线微晶组成,而残余灰则由直线晶格条纹组成。SCL和FRL烟灰的平均条纹长度距离外壳约为1.25 nm和1.04 nm,距离内核约为0.89 nm和0.74 nm。通过TEM图像分析,SCL和FRL烟灰的曲线碳条纹的层间距约为0.359 nm和0.362 nm,并与XRD分析相匹配。生物质颗粒物主要由煤烟、硅、钙和钾化合物组成:SiO2、CaCO3和KCl。(C) 2020中国科学院生态环境科学研究中心。由Elsevier B.V.出版。

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