4.6 Article

Computer Analysis of the Porous Structure of Activated Carbons Derived from Various Biomass Materials by Chemical Activation

期刊

MATERIALS
卷 14, 期 15, 页码 -

出版社

MDPI
DOI: 10.3390/ma14154121

关键词

biomass; adsorption; porous structure; chemical activation; activated carbons

资金

  1. Polish Ministry of Science and Higher Education [16.16.210.476]
  2. Polish Ministry of Science and Higher Education
  3. AGH University of Science and Technology in Krakow

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This study focused on the preparation of activated carbons from various biomass materials and analyzed the influence of activation conditions on their porous structure and adsorption properties. The results showed that activated carbon derived from ebony wood at a specific mass ratio exhibited optimal adsorption capacity and surface uniformity, highlighting the effectiveness of the LBET method for analyzing porous structure.
In this study, the preparation of activated carbons from various materials of biomass origin by activation with potassium hydroxide and a comprehensive computer analysis of their porous structure and adsorption properties based on benzene (C6H6) adsorption isotherms were carried out. In particular, the influence of the mass ratio of the activator's dry mass to the char mass on the formation of the microporous structure of the obtained activated carbons was analysed. The summary of the analyses carried out based on benzene adsorption isotherms begged the conclusion that activated carbon with a maximum adsorption volume in the first adsorbed layer and homogeneous surface can be obtained from ebony wood at a mass ratio of the activator to the char of R = 3. The obtained results confirmed the superiority of the new numerical-clustering-based adsorption analysis (LBET) method over simple methods of porous structure analysis, such as the Brunauer-Emmett-Teller (BET) and Dubinin-Raduskevich (DR) methods. The LBET method is particularly useful in the evaluation of the influence of the methods and conditions of production of activated carbons on the formation of their porous structure. This method, together with an appropriate economic analysis, can help in the precise selection of methods and conditions for the process of obtaining activated carbons at specific manufacturing costs, and thus makes it possible to obtain materials that can successfully compete with those of other technologies used in industrial practice and everyday life.

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