Analysis of monomeric and competitive adsorption mechanisms of nutrient ions on biochar surfaces based on molecular
Jikai Lu1, Yan Li1, Bing Wang2
1College of Engineering, Ocean University of China, 239 Song-ling Road, Qingdao 266100, Shandong, PR China.
Abstract:
This study explores the mechanisms of monomeric and competitive nutrient ion adsorption on biochar surfaces using molecular dynamics simulations and experimental data. C6H12O6 offers low-energy adsorption sites for ammoniacal nitrogen, while C-SH and C-NH2 facilitate adsorption for nitrate nitrogen and available phosphorus. Available potassium is primarily adsorbed near the benzene ring. Structures like C5H10O5 and C4H7NO4 contribute through physical and chemical adsorption mechanisms. The presence of mesopores enhances adsorption stability. In competitive systems, ammoniacal nitrogen adsorption remains largely unaffected by nitrate nitrogen and available phosphorus, although available potassium negatively impacts it. Nitrate nitrogen is influenced by electrostatic and intermolecular forces, and available phosphorus inhibits its adsorption, while available potassium aids nitrate nitrogen adsorption through ion reactions. This study elucidates the competitive adsorption mechanisms of biochar, providing theoretical support for industrial-scale preparation of nutrient-rich biochar.
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