Preparation of eco-friendly adsorbent for enhancing CO2 adsorption capacity

The aim of this study was to investigate the potential of adsorbent derived from agricultural by-product-based activated carbon (AC) functionalized by deep eutectic solvents (DESs) for CO2 capturing application. Three types of DES, namely Tetrabutylammonium Bromide (TBAB), Methyltriphenylphosphonium...

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Main Authors: Hussin, Farihahusnah, Aroua, Mohamed Kheireddine, Yusoff, Rozita, Szlachta, Malgorzata
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Published: Taylor & Francis 2022
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Online Access:http://eprints.um.edu.my/42411/
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spelling my.um.eprints.424112023-10-09T09:06:33Z http://eprints.um.edu.my/42411/ Preparation of eco-friendly adsorbent for enhancing CO2 adsorption capacity Hussin, Farihahusnah Aroua, Mohamed Kheireddine Yusoff, Rozita Szlachta, Malgorzata TP Chemical technology The aim of this study was to investigate the potential of adsorbent derived from agricultural by-product-based activated carbon (AC) functionalized by deep eutectic solvents (DESs) for CO2 capturing application. Three types of DES, namely Tetrabutylammonium Bromide (TBAB), Methyltriphenylphosphonium Bromide (MTPB), and Triethlyene Glycol (TEG) were synthesized and functionalized with AC using the impregnation method. The characteristics of the prepared adsorbents were analyzed, including the freezing/melting point, viscosity, surface morphology, elemental composition, and BET surface area. Following the characterization, the CO2 breakthrough adsorption analysis was performed in a packed-bed reactor. The results revealed that the modified AC with the combination of TBAB and TEG showed the maximum CO2 adsorption capacity of 16.5 mg/g compared to other adsorbents mixtures. The maximum adsorption capacity was achieved at a breakthrough time, temperature, gas flow rate and CO2 concentration of 11.5 minutes, 25(degrees)C, 200 mL/min, and 10%, respectively. Furthermore, the adsorption process was thermodynamically favorable and spontaneous under exothermic reaction as indicated by the negative values of both the Gibbs free energy ( increment G degrees) and enthalpy ( increment H degrees). The regeneration evaluation also demonstrated that the modified AC sample was recyclable and reusable for more than nine cycles. Taylor & Francis 2022-07-03 Article PeerReviewed Hussin, Farihahusnah and Aroua, Mohamed Kheireddine and Yusoff, Rozita and Szlachta, Malgorzata (2022) Preparation of eco-friendly adsorbent for enhancing CO2 adsorption capacity. Separation Science and Technology, 57 (10). pp. 1543-1557. ISSN 0149-6395, DOI https://doi.org/10.1080/01496395.2021.1998122 <https://doi.org/10.1080/01496395.2021.1998122>. 10.1080/01496395.2021.1998122
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Hussin, Farihahusnah
Aroua, Mohamed Kheireddine
Yusoff, Rozita
Szlachta, Malgorzata
Preparation of eco-friendly adsorbent for enhancing CO2 adsorption capacity
description The aim of this study was to investigate the potential of adsorbent derived from agricultural by-product-based activated carbon (AC) functionalized by deep eutectic solvents (DESs) for CO2 capturing application. Three types of DES, namely Tetrabutylammonium Bromide (TBAB), Methyltriphenylphosphonium Bromide (MTPB), and Triethlyene Glycol (TEG) were synthesized and functionalized with AC using the impregnation method. The characteristics of the prepared adsorbents were analyzed, including the freezing/melting point, viscosity, surface morphology, elemental composition, and BET surface area. Following the characterization, the CO2 breakthrough adsorption analysis was performed in a packed-bed reactor. The results revealed that the modified AC with the combination of TBAB and TEG showed the maximum CO2 adsorption capacity of 16.5 mg/g compared to other adsorbents mixtures. The maximum adsorption capacity was achieved at a breakthrough time, temperature, gas flow rate and CO2 concentration of 11.5 minutes, 25(degrees)C, 200 mL/min, and 10%, respectively. Furthermore, the adsorption process was thermodynamically favorable and spontaneous under exothermic reaction as indicated by the negative values of both the Gibbs free energy ( increment G degrees) and enthalpy ( increment H degrees). The regeneration evaluation also demonstrated that the modified AC sample was recyclable and reusable for more than nine cycles.
format Article
author Hussin, Farihahusnah
Aroua, Mohamed Kheireddine
Yusoff, Rozita
Szlachta, Malgorzata
author_facet Hussin, Farihahusnah
Aroua, Mohamed Kheireddine
Yusoff, Rozita
Szlachta, Malgorzata
author_sort Hussin, Farihahusnah
title Preparation of eco-friendly adsorbent for enhancing CO2 adsorption capacity
title_short Preparation of eco-friendly adsorbent for enhancing CO2 adsorption capacity
title_full Preparation of eco-friendly adsorbent for enhancing CO2 adsorption capacity
title_fullStr Preparation of eco-friendly adsorbent for enhancing CO2 adsorption capacity
title_full_unstemmed Preparation of eco-friendly adsorbent for enhancing CO2 adsorption capacity
title_sort preparation of eco-friendly adsorbent for enhancing co2 adsorption capacity
publisher Taylor & Francis
publishDate 2022
url http://eprints.um.edu.my/42411/
_version_ 1781704640005406720