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Analysis of Porous Structure Parameters of Biomass Chars Versus Bituminous Coal and Lignite Carbonized at High Pressure and Temperature—A Chemometric Study

doi: 10.3390/en10101457
The characteristics of the porous structure of carbonized materials affect their physical properties, such as density or strength, their sorption capacity, and their reactivity in thermochemical processing, determining both their applicability as fuels or sorbents and their efficiency in various processes. The porous structure of chars is shaped by the combined effects of physical and chemical properties of a carbonaceous material and the operating parameters applied in the carbonization process. In the study presented, the experimental dataset covering parameters of various fuels, ranging from biomass through lignite to bituminous coal, and chars produced at 1273 K and under the pressure of 1, 2, 3, and 4 MPa was analyzed with the application of the advanced method of data exploration. The principal component analysis showed that the sample of the highest coal rank was characterized by lower values of parameters reflecting the development of the porous structure of chars. A negative correlation was also observed between the carbon content in a fuel and the evolution of the porous structure of chars at high pressure. The highest total pore volume of chars produced under 1 and 3 MPa and the highest micropore surface area under 3 MPa were reported for a carbonized fuel sample of the highest moisture content.
- Central Mining Institute Poland
- Central Mining Institute Poland
coal, porous structure, Technology, biomass, T, pyrolysis, coal; biomass; pyrolysis; pressure; porous structure; principal component analysis (PCA), pressure, principal component analysis (PCA)
coal, porous structure, Technology, biomass, T, pyrolysis, coal; biomass; pyrolysis; pressure; porous structure; principal component analysis (PCA), pressure, principal component analysis (PCA)
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