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首页> 外文期刊>Chemical engineering journal >Preparation and characterization of baker's yeast modified by nano-Fe3O4:Application of biosorption of methyl violet in aqueous solution
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Preparation and characterization of baker's yeast modified by nano-Fe3O4:Application of biosorption of methyl violet in aqueous solution

机译:纳米Fe3O4修饰的面包酵母的制备与表征:甲基紫在水溶液中的生物吸附应用

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摘要

The magnetic baker's yeast biomass (MB) was prepared by combining baker's yeast and nano-Fe3O4 using glutaraldehyde as a cross link agent. The MB was successfully used for the biosorption of methyl violet (MV) and was easily recycled by using an applied magnetic field. The mechanism of MV biosorption by MB was investigated by SEM, XRD, FTIR, zeta potential and potentiometric titration. The results revealed that nano-Fe3O4, with spherical and granular morphology, were distributed on the surface of baker's yeast biomass. The functional groups such as carboxyl, hydroxyl and amino groups found on the surface of MB may be responsible for MV biosorption. The optimal biosorption conditions were determined as pH 6.0, MV concentration 300mg/L and contact time 30min. The biosorption capacity in the optimal conditions was 60.84 mg/g. The biosorption process followed the pseudo-second-order kinetic model and the Langmuir isotherm equation. The thermodynamic parameters ΔG°, ΔH° and ΔS° showed that the biosorption was feasible, spontaneous and endothermic. The desorption and regeneration experiments were investigated and the biosorption/desorption cycles of MV were repeated three times. The MB regeneration efficiency and the MV recovery efficiency were 82.64% and 84.54% respectively in the third cycle by using HAc as an eluent solution.
机译:使用戊二醛作为交联剂,通过将面包酵母和纳米Fe3O4混合来制备磁性面包酵母生物质(MB)。 MB已成功用于甲基紫(MV)的生物吸附,并通过施加磁场易于回收。通过SEM,XRD,FTIR,ζ电势和电位滴定法研究了MB对MV的生物吸附机理。结果表明,具有球形和颗粒状形态的纳米Fe3O4分布在面包酵母生物质的表面。 MB表面发现的官能团(例如羧基,羟基和氨基)可能是MV生物吸附的原因。确定最佳的生物吸附条件为pH 6.0,MV浓度300mg / L和接触时间30min。在最佳条件下的生物吸附能力为60.84 mg / g。生物吸附过程遵循伪二级动力学模型和Langmuir等温方程。热力学参数ΔG°,ΔH°和ΔS°表明生物吸附是可行的,自发的和吸热的。研究了解吸和再生实验,并重复了MV的生物吸附/解吸循环3次。使用HAc作为洗脱液,在第三循环中MB的再生效率和MV的回收效率分别为82.64%和84.54%。

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