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Quantitative characterization of pore structure of several biochars with 3D imaging

机译:3D成像若干生物脉孔结构的定量表征

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摘要

Pore space characteristics of biochars may vary depending on the used raw material and processing technology. Pore structure has significant effects on the water retention properties of biochar amended soils. In this work, several biochars were characterized with three-dimensional imaging and image analysis. X-ray computed microtomography was used to image biochars at resolution of 1.14 m and the obtained images were analysed for porosity, pore size distribution, specific surface area and structural anisotropy. In addition, random walk simulations were used to relate structural anisotropy to diffusive transport. Image analysis showed that considerable part of the biochar volume consist of pores in size range relevant to hydrological processes and storage of plant available water. Porosity and pore size distribution were found to depend on the biochar type and the structural anisotopy analysis showed that used raw material considerably affects the pore characteristics at micrometre scale. Therefore, attention should be paid to raw material selection and quality in applications requiring optimized pore structure.
机译:BOECHAR的孔隙空间特性可能因使用的原料和加工技术而异。孔隙结构对Biochar修正的土壤的水保持性质具有显着影响。在这项工作中,具有三维成像和图像分析的几个生物脉。 X射线计算的显微映射用于以1.14μm分辨率的分辨率进行图像生物谱,并分析所得图像的孔隙率,孔径分布,比表面积和结构各向异性。此外,随机步行模拟用于将结构各向异性与扩散运输相关。图像分析表明,生物炭体积的相当大部分由尺寸范围内的毛孔组成,与水文过程和植物可用水的储存相关。发现孔隙率和孔径分布依赖于生物炭类型,结构各向异性分析表明,使用的原料显着影响微米尺度的孔隙特性。因此,应注意需要优化孔隙结构的应用中的原料选择和质量。

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