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Updated: May 20, 2025

Author Spotlight: Standardizing the Development of Amine-Based Silica Composites as CO2 Adsorbents for Direct Air Capture
Published on: September 29, 2023
Nitrogen Self-Doping Hierarchical Pore Biochar for Enhanced CO2 Capture: Modulation of Pore Structure and Surface
Wei Sun1, Xudong Zheng1, Biao Ji1
1School of Environmental Science and Engineering, Changzhou University, Changzhou 213164, PR China.
Abstract:
Negative emission technology aims to remove greenhouse gases such as CO2 from the atmosphere, which is an important way to achieve efficient carbon reduction. The use of biochar materials as adsorbents can significantly reduce the cost while effectively capturing CO2. In this work, carp fish scales were used as biomass raw materials, a small amount of KOH was used as an activator to provide ionic active sites, and the activation ion K+ was uniformly introduced into the material through a premixed hydrothermal reaction, followed by a single-step carbonization and activation process at a moderate temperature, along with an acid wash, to produce a N self-doping, layered-structured biochar with high porosity and uniform pore channels. A series of hierarchical biochars with dissimilar physicochemical properties were prepared by varying the carbonization temperature. Among them, the sample prepared at 700 °C (AF-700) has an ultrahigh specific surface area of 1371 m2 g-1, a pore volume of 0.85 cm3 g-1, and showed the highest adsorption performance of 3.34 mmol g-1 (0 °C, 1 bar). We also fitted the adsorption curves of the biochar using the Langmuir-Freundlich isotherm model and calculated the adsorption selectivity of the material for CO2 (N2 and Ar) with ideal adsorption solution theory. The results indicate that N self-doped hierarchical structure biochar exhibits high CO2 adsorption efficiency and is composited in an economical and simple way, thus holding great potential for the large-scale production of efficient CO2 adsorbents.
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