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Preparation and Characterization of Macroalgae Biochar Nanomaterials with Highly Efficient Adsorption and Photodegradation Ability

机译:具有高效吸附和光降解能力的大型藻类生物炭纳米材料的制备与表征

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摘要

In this study, carbonized kelp biochar (AKB) modified by KOH impregnation and photocatalytic Bi2MoO6/AKB composite (BKBC) nanomaterials were the first time successfully synthesized for efficient removal of dyes in aqueous solution. BET, XRD, FT-IR, and SEM were employed to characterize as-prepared samples. UV-vis and other test results indicated that the removal efficiency of methylene blue (MB) was 61.39% and 94.12% for BKBC and AKB, respectively, which was up to 13 times and 20 times higher in comparison with pure Bi2MoO6 (PBM). In addition, the equilibrium adsorption capacity of MB could reach up to 324.1 mg/g for AKB. This high dyes adsorption performance could be likely attributed to its high specific surface area (507.177 m2/g) and its abundant presence of various functional groups such as –OH and =C–H on AKB. Particularly, the existing of amorphous carbon and transition metal oxides, such as Fe2O3 and Mn5O8, could be beneficial for the photodegradation of MB for AKB. Meanwhile, experimental data indicated that adsorption kinetics complied with the pseudo-second order model well, and all of the tests had satisfactory results in terms of the highly efficient adsorption and photodegradation activity of AKB nanomaterials, which suggested its great potential in wastewater treatment.
机译:在这项研究中,首次成功地合成了通过KOH浸渍改性的碳化海藻生物炭(AKB)和光催化Bi2MoO6 / AKB复合材料(BKBC)纳米材料,以有效去除水溶液中的染料。使用BET,XRD,FT-IR和SEM表征制备的样品。 UV-vis和其他测试结果表明,BKBC和AKB的亚甲基蓝(MB)去除效率分别为61.39%和94.12%,与纯Bi2MoO6(PBM)相比分别高出13倍和20倍。另外,MB对AKB的平衡吸附容量可以达到324.1 mg / g。这种高染料吸附性能可能归因于其高比表面积(507.177 m 2 / g)和在AKB上大量存在的各种官能团,例如–OH和= C–H。特别是,存在无定形碳和过渡金属氧化物(例如Fe2O3和Mn5O8)可能对MB用于AKB的光降解有益。同时,实验数据表明,吸附动力学符合拟二级模型,并且在AKB纳米材料的高效吸附和光降解活性方面,所有试验均获得令人满意的结果,表明其在废水处理中具有巨大潜力。

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