Preparation of Nanoporous Carbon from Rice Husk with Improved Textural Characteristics for Hydrogen Sorption

Author:

Lesbayev Bakhytzhan12,Rakhymzhan Nurgali2,Ustayeva Gaukhar12,Maral Yerkebulan12,Atamanov Meiram12ORCID,Auyelkhankyzy Moldir12,Zhamash Ayazhan2ORCID

Affiliation:

1. Faculty of Chemistry and Chemical Technology, al-Farabi Kazakh National University, Almaty 050040, Kazakhstan

2. Institute of Combustion Problems, 172 Bogenbay Batyr Str., Almaty 050012, Kazakhstan

Abstract

This study proposes a method to control the pore-forming process by performing preliminary mechanical activation of the initial rice husk before carbonization. Preliminary mechanical activation of the initial rice husk leads to the loosening of the intercellular substance and its partial depolymerization, thereby increasing the availability of its internal structure for pore formation during carbonization and chemical activation. Using the method described above, nanoporous carbon was obtained with a Brunauer–Emmett–Teller (BET)-calculated specific surface area of 2713 m2/g, a micropore specific surface area calculated by using the Dubinina–Radushkevich (D-R) method of 3099 m2/g, and a total pore volume calculated by using the Barett–Joyner–Halenda (BJH) method of 1.625 cm3/g. Due to these characteristics, the adsorption capacity in the obtained sample was for hydrogen 3.7 wt.% at a temperature of −190 °C and a pressure of 9 kgf/cm2, which is 29.7% higher than the adsorption capacity of nanoporous carbon obtained based on rice husk without mechanical activation. The composite “carbon–platinum” NC-2/Pt10%, at a temperature of 20 °C and a pressure of 9 kgf/cm2, showed an increase in sorption capacity of 27% compared to pure nanoporous carbon NC-2, which is explained by the emergence of the spillover effect.

Funder

Science Committee of the Ministry of Education and Science of the Republic of Kazakhstan

Publisher

MDPI AG

Reference30 articles.

1. (2016, March 16). The Paris Agreement. Available online: https://unfccc.int/files/essential_background/convention/application/pdf/english_paris_agreement.pdf.

2. Hydrogen storage in porous materials: Status, milestones, and challenges;Chem. Rec.,2018

3. Hierarchically porous carbon derived from polymers and biomass: Effect of interconnected pores on energy applications;Dutta;Energy Environ. Sci.,2014

4. High hydrogen release by cryo-adsorption and compression on porous materials;Sdanghi;Int. J. Hydrogen Energy,2022

5. Hydrogen storage by adsorption in porous materials: Is it possible?;Roszak;Colloids Surf. A Physicochem. Eng. Asp.,2016

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