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一种新型的海洋大型藻类基改性生物炭的制备方法:双重目的电改性以提高表面积和金属浸渍。

A novel approach for preparation of modified-biochar derived from marine macroalgae: Dual purpose electro-modification for improvement of surface area and metal impregnation.

机构信息

Center for Water Resources Cycle Research, Korea Institute of Science and Technology, P.O. Box 131, Cheongryang, Seoul 130-650, South Korea.

Center for Water Resources Cycle Research, Korea Institute of Science and Technology, P.O. Box 131, Cheongryang, Seoul 130-650, South Korea.

出版信息

Bioresour Technol. 2015 Sep;191:342-5. doi: 10.1016/j.biortech.2015.05.052. Epub 2015 May 20.

Abstract

In the present study, an aluminum electrode-based electrochemical process was newly adopted as a modification method for fabricating physically and chemically modified biochar derived from marine macroalgae. Specifically, a current density of 93.96 mA cm(-2) was applied for 5 min at pH 3.0. Subsequently, the mixture was stirred continuously for 30 min without electric field, and the dried sample was then pyrolyzed at 450 °C under a N2 environment for 2 h. SEM-EDS and XRD analyses clearly indicated that nano-sized aluminum crystals (beohemite, AlOOH) were uniformly present on the EM-biochar surface. Adsorption equilibrium tests showed that the phosphate adsorption onto EM-biochar agreed well with the Langmuir-Freundlich adsorption isotherm model, with a maximum adsorption capacity of 31.28 mg-P g(-1). These findings suggest that this novel and simple electro-modification method is a reasonable and effective option for simultaneously upgrading both the surface area and chemical properties of biochar.

摘要

在本研究中,新采用基于铝电极的电化学过程作为一种修饰方法,用于制备源自海洋大型藻类的物理和化学修饰生物炭。具体而言,在 pH 3.0 下施加 93.96 mA cm(-2)的电流密度 5 分钟。随后,在没有电场的情况下连续搅拌 30 分钟,然后将干燥的样品在 N2 环境下于 450°C 下进行 2 小时热解。SEM-EDS 和 XRD 分析清楚地表明,纳米尺寸的铝晶体(水铝石,AlOOH)均匀存在于 EM-生物炭表面。吸附平衡测试表明,磷在 EM-生物炭上的吸附符合 Langmuir-Freundlich 吸附等温线模型,最大吸附容量为 31.28 mg-P g(-1)。这些发现表明,这种新颖且简单的电修饰方法是同时提高生物炭表面积和化学性质的合理且有效的选择。

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