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Enhanced removal of NO3-N from water using Fe-Al modified biochar: behavior and mechanism

机译:使用Fe-Al改性生物炭加强从水中切除NO3-N:行为和机制

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摘要

To remove NO3-N from water, coconut shell biochar (CSB) was modified by a solution of FeCl3, a solution of AlCl3 and a mixture solution of FeCl3 and AlCl3 respectively. The obtained modified biochar with the best effect of NO3-N adsorption was screened out to explore the adsorption behavior and mechanism of NO3-N removal by batch experiments and kinetics and thermodynamics and correlated characterization. The results indicated that the mixture solution of FeCl3- and AlCl3- modified CSB (Fe-Al/CSB) showed the best adsorption performance for NO3-N removal. Iron and aluminum elements existed on the surface of Fe-Al/CSB in the form of FeOOH, Fe2O3, Fe2+, and Al2O3 respectively. The adsorption process could reach equilibrium in 20 min. An acidic condition was favorable for NO3-N adsorption. The presence of coexisting anions was not conducive for NO3-N adsorption. The quasi-second-order model and Freundlich model could be well fitted in the adsorption process. The maximum adsorption capacity of Fe-Al/CSB fitted by the Langmuir model could reach 34.20 mg/g. The adsorption of NO3-N by Fe-Al/CSB was an endothermic and spontaneous process. Ligand exchange and chemical redox reaction were the NO3-N adsorption mechanisms which led to NO3-N adsorption by Fe-Al/CSB.
机译:为了从水中移除NO 3-N,通过FECL3,ALCL 3的溶液和FECL3和ALCL 3的混合溶液进行修饰椰壳Biochar(CSB)。筛选了所得改性的生物炭,具有NO3-N吸附的最佳效果,以探讨BATCH实验和动力学和动力学和动力学和相关表征NO3-N除去的吸附行为和机制。结果表明,FECL3-和ALCL3-改性CSB(Fe-Al / CSB)的混合溶液显示出NO3-N的最佳吸附性能。在FeOOH,Fe2O3,Fe2 +和Al2O3的形式的Fe-Al / CSB表面上存在铁和铝。吸附过程可以在20分钟内达到平衡。酸性条件有利于NO3-N吸附。共存阴离子的存在不利于NO3-N吸附。准二阶模型和Freundlich模型可以很好地安装在吸附过程中。 Langmuir模型装配的Fe-Al / CSB的最大吸附容量可达到34.20 mg / g。 Fe-Al / CSB的NO3-N的吸附是吸热和自发过程。配体交换和化学氧化还原反应是NO3-N吸附机构,其导致Fe-Al / CSB的NO 3-N。

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