Magnesium doped biochar for simultaneous adsorption of phosphate and nitrogen ions from aqueous solution

生物炭 吸附 废水 化学 水溶液 弗伦德利希方程 朗缪尔吸附模型 磷酸盐 富营养化 朗缪尔 氮气 核化学 无机化学 营养物 环境工程 热解 有机化学 工程类
作者
Bijoy Biswas,Sushil Adhikari,Hossein Jahromi,Mohamed Ammar,Jonas Baltrušaitis,H. Allen Torbert,John E. Linhoss,Jasmeet Lamba
出处
期刊:Chemosphere [Elsevier]
卷期号:358: 142130-142130 被引量:23
标识
DOI:10.1016/j.chemosphere.2024.142130
摘要

Phosphorus (P) and Ammonium Nitrogen (N) are essential nutrients for plants and environmental stability. However, their excess in water causes eutrophication, damaging aquatic ecosystems. While adsorption is a promising solution, finding affordable and efficient adsorbents remains a challenge. In this study, magnesium (Mg), iron (Fe), and Mg/Fe doped biochars (BC) adsorbents were synthesized, and evaluated for adsorption of individual P and N and a P + N mixture from a solution and wastewater from a wastewater treatment plant. Compared to other adsorbents, Mg/BC showed excellent performance in adsorbing phosphorus (P) and ammonium nitrogen (N) from aqueous solutions. It demonstrated a large adsorption capacity of 64.65 mg/g and 62.50 mg/g from individual P and N solutions, and 30.3 mg/g and 27.67 mg/g from the P and N mixture solution, respectively. In addition, Mg/BC efficiently removed P and N from real-life wastewater. In the real wastewater, P and N removal efficiencies reached 88.30% and 59.36%, respectively. Kinetics analysis revealed that the pseudo-second-order model accurately described the adsorption of phosphorus (P) and ammonium nitrogen (N) in all solutions. The adsorbent followed the monolayer-Langmuir isotherm for N ions and the multilayer-Freundlich isotherm for P, indicating efficient adsorption processes. Thermodynamic experiments indicated that the adsorption of P and N was not only feasible but also occurred spontaneously in a natural manner. This study revealed that the strategic modification of biochar plays a crucial role in advancing effective wastewater treatment technologies designed for nutrient removal.
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