Investigation of effectiveness of KOH-activated olive pomace biochar for efficient direct air capture of CO2

被引:10
|
作者
Monteagudo, J. M. [1 ,3 ]
Duran, A. [1 ]
Alonso, M. [1 ]
Stoica, Anca-Iulia [2 ]
机构
[1] Univ Castilla La Mancha, Escuela Tecn Super Ingn Ind, Dept Chem Engn,Grp IMAES, Inst Invest Energet & Aplicac Ind INEI, Avda Camilo Jose Cela 3, Ciudad Real 13071, Spain
[2] Univ Nat Resources & Life Sci, Dept Water Atmosphere Resources & Life Sci, A-1180 Vienna, Austria
[3] Escuela Tecn Super Ingn Ind, Dept Chem Engn, Grp IMAES, Inst Invest Energet & Aplicac Ind, Ciudad Real, Spain
关键词
Olive pomace biochar; KOH activation; Carbon dioxide; Direct air capture; CARBON-DIOXIDE; ADSORBENT; EMISSIONS; PRODUCTS;
D O I
10.1016/j.seppur.2024.127997
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The capture of CO 2 directly from the air is one of the most promising methods under investigation in recent years to reduce the environmental concentration of this pollutant in order to mitigate its effects on climate change. In this work, the activation of olive pomace biochar with potassium hydroxide, KOH, has been studied for its use as a CO 2 adsorbent. The effectiveness of biochar activated with KOH at 750 degrees C in an inert N 2 atmosphere was evaluated, using different mass ratios of biochar/KOH, 1:0.5, 1:1, and 1:2. Various characterisation analyses of the biochar were performed to determine its chemical composition, specific surface area, pore size and volume, structure, morphology, and functional groups. The adsorption isotherm was determined at atmospheric pressure and a temperature of 10 degrees C. The experimental equilibrium results were fitted to the Langmuir, Freundlich, and Temkin models. Additionally, the kinetic behavior of biochar/KOH as an adsorbent was studied, and dynamic experiments were conducted at atmospheric pressure and 10 degrees C. The experimental data were fitted to various kinetic models (pseudo-first order, pseudo-second order, Avrami, and Elovich). Furthermore, the mass transfer mechanism during the adsorption process was evaluated using the intra-particle diffusion model. Finally, biochar regeneration was investigated for its subsequent reuse as an adsorbent. For this purpose, complete desorption of the captured CO 2 in the biochar was easily carried out by modifying the temperature.
引用
收藏
页数:15
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