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首页> 外文期刊>Environmental Science and Pollution Research >High adsorptive potential of calcined magnetic biochar derived from banana peels for Cu2+, Hg2+, and Zn2+ ions removal in single and ternary systems
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High adsorptive potential of calcined magnetic biochar derived from banana peels for Cu2+, Hg2+, and Zn2+ ions removal in single and ternary systems

机译:从单身和三元系统中去除Banana果皮的煅烧磁性生物炭的高吸附潜力。在单一和三元系统中去除Zn2 +离子

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摘要

The use of banana peel as a sustainable and low-cost precursor for the fabrication of effective biochar was exploited. Here, calcined magnetic biochar (CMB) was fabricated and characterized. CMB possesses surface acidic functional groups (-OH and COO-), porous structures, high saturation magnetization (39.55 emu/g), and larger surface area than the non-magnetic biochar (CB). The CMB adsorption performance (72.8, 75.9, and 83.4 mg/g for Zn2+, Cu2+, and Hg2+, respectively at pH 6) in a single component was described suitably by pseudo-second order kinetic model, Langmuir, and Redlich-Peterson adsorption isotherms. Notably, the selectivity factor values in the extended Langmuir isotherm indicated that CMB has higher adsorption affinity toward Hg2+ than Cu2+ and Zn2+ in the multi-component system. Owing to its high adsorption efficiency and fast and easy separation, the calcined magnetic biochar is considered promising and effective for the purification of heavy metal-bearing wastewater.
机译:利用Banana Peel作为制备有效生物炭的可持续和低成本前体。 这里,制造煅烧磁性生物BiOchChOR(CMB)并表征。 CMB具有表面酸性官能团(-OH和COO-),多孔结构,高饱和磁化强度(39.55 emu / g),比非磁性生物炭(Cb)更大的表面积。 在单个组分中,通过伪二阶动力学模型,Langmuir和Redlich-Peterson吸附等温线合适地描述了单个组分中的CMB吸附性能(72.8,75.9和83.4mg / g,分别在pH6)中的pH6)中的Zn2 +,Cu2 +和Hg2 +。 。 值得注意的是,扩展朗米尔等温线中的选择性因子值表明,在多组分系统中,CMB对Hg2 +和Zn2 +具有较高的吸附亲和力。 由于其高吸附效率和快速简便,煅烧的磁性生物炭被认为是对重金属废水的纯化有效和有效。

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