Experimental and DFT insights into the adsorption mechanism of methylene blue by alkali-modified corn straw biochar

通过实验和DFT方法研究碱改性玉米秸秆生物炭对亚甲基蓝的吸附机理

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Abstract

As an efficient and cost-effective adsorbent, biochar has been widely used in the adsorption and removal of dyes. In this study, a simple NaOH-modified biochar with the pyrolysis temperature of 300 °C (NaCBC(300)) was synthesized, characterized, and investigated for the adsorption performances and mechanisms of methylene blue (MB). NaCBC(300) exhibited excellent MB adsorption performance with maximum removal efficiency and adsorption capacity of 99.98% and 290.71 mg g(-1), which were three and four times higher than biochar without modification, respectively. This might be attributed to the increased content of -OH and the formation of irregular flakes after NaOH modification. The Freundlich isotherm suggested multilayer adsorption between NaCBC(300) and MB. Spectroscopic characterizations demonstrated that multiple mechanisms including π-π interaction, H-bonding, and pore-filling were involved in the adsorption. According to density functional theory (DFT) calculations, electrostatic interaction between NaCBC(300) and MB was verified. The highest possibility of the attraction between NaCBC(300) and MB was between -COOH in NaCBC(300) and R-N(CH(3))(2) in MB. This work improved our understanding of the mechanism for MB adsorption by modified biochar and provided practical and theoretical guidance for adsorbent preparation with high adsorption ability for dyes.

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