首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Facile synthesis of magnetic biochar/Fe3O4 nanocomposites using electro-magnetization technique and its application on the removal of acid orange 7 from aqueous media
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Facile synthesis of magnetic biochar/Fe3O4 nanocomposites using electro-magnetization technique and its application on the removal of acid orange 7 from aqueous media

机译:磁化技术轻松合成磁性生物炭/ Fe3O4纳米复合材料及其在水介质中去除酸性橙7的应用

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摘要

This study introduces a new methodology to synthesize magnetic biochar/Fe3O4 nanocomposites (M-BC) from marine macroalgae using a facile electro-magnetization technique. M-BC was prepared by stainless steel electrode-based electrochemical system, followed by pyrolysis. Physical and chemical analyses revealed that the porosity and magnetic properties were simultaneously improved via the electro-magnetization process, which enabled not only higher adsorption performance, but also easier separation/recovery from aqueous media at post-adsorption stage using a bar magnet. The adsorption equilibrium studies reveal that the Sips model satisfactorily predicts the adsorption capacity, which found to be 190, 297, and 382 mg g(-1) at 10, 20, and 30 degrees C, respectively. The overall findings indicate that one-step electro-magnetization technique can be effectively utilized for the fabrication of biochar with concurrent acquisition of porosity and magnetism, which can bring about new directions in the practical use of adsorption process in environment remediation and mitigate crises originating from it. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究介绍了一种新的方法,利用简便的磁化技术从海洋大型藻类中合成磁性生物炭/ Fe3O4纳米复合材料(M-BC)。通过基于不锈钢电极的电化学系统制备M-BC,然后进行热解。物理和化学分析表明,通过电磁处理同时改善了孔隙率和磁性,这不仅使吸附性能更高,而且在使用棒状磁体的吸附后阶段更易于从水性介质中分离/回收。吸附平衡研究表明,Sips模型可以令人满意地预测吸附容量,在10、20和30摄氏度下的吸附容量分别为190、297和382 mg g(-1)。总体研究结果表明,一步磁化技术可以有效地用于生物炭的制造,同时获得孔隙率和磁性,这可以为环境修复中吸附工艺的实际应用带来新的方向,并减轻由碳源引起的危机。它。 (C)2016 Elsevier Ltd.保留所有权利。

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