生物炭显微图像图集

A. Drobniak, Maria Mastalerz, William Knauth, Omid Adarkani, Telma Dos Santos, Valdeci De Faria, Tara Congo, Paul Hackley, J. Hatcherian, James Hower, Henrik Petersen, Julito Reyes, Hamed Sanei
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引用次数: 0

摘要

生物炭通过生物质的热化学转化而产生,是一种富碳物质,在环境应用和可持续农业方面具有重要意义。随着人们对生物炭利用的兴趣不断增加,了解源材料和热解参数如何影响生物炭的特性,进而研究各种分析方法是否适用于表征生物炭的特性变得至关重要。虽然最近的一些研究表明生物炭的某些显微特征与选定的物理和化学性质之间存在相关性,但数据有限且难以比较。这主要是由于所使用的原始生物质类型不同,以及缺乏有关热解条件的信息。此外,由于迄今为止公开的在反射光显微镜下拍摄的照片数量有限,因此很难评估各种生物炭与其他有机材料(如煤的惰性石、木炭等)之间的形态差异。为了解决公开数据有限的问题,这本《生物炭显微图像图集》收集了来自波兰、美国、加拿大、澳大利亚、巴西和丹麦的研究人员提供的 300 多张图像。这些显微照片捕捉了各种生物炭的光学特征,展示了其独特的形态和结构特征。对于有兴趣研究生物炭复杂形态的研究人员、行业专业人士、教育工作者和爱好者来说,这些可视化文档可以作为宝贵的资源。
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Atlas of Microscopic Images of Biochar
Derived through the thermochemical conversion of biomass, biochar is a carbon-rich substance recognized for its significance in environmental applications and sustainable agriculture. As interest in its utilization continues to rise, it becomes crucial to comprehend how the source material and pyrolysis parameters influence the properties of biochar and, consequently, to research the suitability of various analytical methods for characterizing it. Despite the current utilization of numerous physical and chemical methods, the untapped potential of reflected light microscopy warrants further exploration. While a few recent studies suggest a correlation between certain microscopic characteristics and selected physical and chemical properties of biochar, the data are limited and difficult to compare. This is primarily due to variations in the types of original biomass used and lack of information about pyrolysis conditions. Moreover, because only a limited number of photographs taken under a reflected light microscope are publicly available to-date, it is difficult to evaluate morphological differences between various biochars and other organic materials such as inertinites from coal, charcoal, etc. To address limited availability of publicly available data, this “Atlas of Microscopic Images of Biochar” presents a collection of more than 300 images contributed by researchers from Poland, the United States, Canada, Australia, Brazil, and Denmark. These photomicrographs capture optical characteristics of a diverse array of biochar, demonstrating its unique morphological and structural features. This visual documentation can serve as a valuable resource for researchers, industry professionals, educators, and enthusiasts interested in investigating the complexities of biochar forms.
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Atlas of Microscopic Images of Biochar Quaternary Geology of the Washington-Jasper Area
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