Fe3O4/ABc复合材料制备及对水中甲基橙的吸附
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Adsorption properties of Fe3O4/ABc composite for methyl orange
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    摘要:

    采用共沉淀法制备Fe3O4@ABc复合材料,通过XRD、SEM、FT-IR和VSM 对Fe3O4@ABc复合材料的物化性质进行表征。考察吸附实验pH值、吸附剂添加量等因素对Fe3O4@ABc 复合材料对甲基橙吸附效果的影响,并进行了吸附动力学和等温吸附模型拟合。结果表明,Fe3O4纳米粒子成功复合到海藻生物炭(ABc)表面,Fe3O4@ABc复合材料具有超顺磁性,在外在磁场的作用下能够快速分离;Fe3O4@ABc比表面积为622.88 m2?g-1,平均孔径1.56 nm,具有良好的甲基橙去除效果,当甲基橙浓度为100 mg?L-1,添加量为10 mg,pH值为3,吸附时间240 min,MO的去除率为96.14 %, Fe3O4@ABc重复利用五次后,甲基橙的去除率为94.24 %。吸附机制研究发现吸附等温线数据拟合符合Freundlich 模型,吸附动力学数据拟合符合拟一级动力学模型,说明吸附以物理为主,化学吸附为辅。

    Abstract:

    Fe3O4/ABc composite was prepared by using chemical precipitation, the physical and chemical properties of biochar were analyzed by XRD、SEM、FT-IR and VSM. Batch experiments were carried out to investigate the effects of solution pH , adsorbent dosage on sorption efficiency and the adsorption kinetics, isothems were investigated. The results showed that Fe3O4@ABc composite with paramagnetic property was prepared successfully by compositing Fe3O4 with sludge biochar(ABc), and it could be utilized easily under external magnetic field. The specific surface area and average pore size of Fe3O4@ABc is 622.88 m2?g-1 and 1.56 nm, and removal rate of methyl orange attained 96.14 %, when the concentration of methyl orange is 100mg ? L-1, the addition amount is 10 mg, the adsorption time is 240 min. The adsorption data fitted well with the pseudo-first order kinetic model and Freundlich isotherm model,which indicates that physical adsorption is the main adsorption mechanism and chemical adsorption is the auxiliary adsorption mechanism

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王向辉. Fe3O4/ABc复合材料制备及对水中甲基橙的吸附[J].精细化工,2020,37(7):

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  • 收稿日期:2020-03-01
  • 最后修改日期:2020-04-08
  • 录用日期:2020-04-09
  • 在线发布日期: 2020-06-08
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