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Recovering Magnetic Fe3O4-ZnO Nanocomposites from Algal Biomass Based on Hydrophobicity Shift under UV Irradiation

机译:基于紫外线下疏水性变化的藻类生物质中磁性Fe3O4-ZnO纳米复合材料的回收

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摘要

Magnetic separation, one of the promising bioseparation technologies, faces the challenges in recovery and reuse of magnetic agents during algal harvesting for biofuel extraction. This study synthesized a steric acid (SA)-coated Fe3O4-ZnO nanocomposite that could shift hydrophobicity under UV365 irradiation. Our results showed that with the transition of surface hydrophobicity under UV365 irradiation, magnetic nano-composites detached from the concentrated algal biomass. The detachment was partially induced by the oxidation of SA coating layers due to the generation of radicals (e.g., (OH)-O-center dot) by ZnO under UV365 illumination. Consequently, the nanocomposite surface shifted from hydrophobic to hydrophilic, which significantly reduced the adhesion between magnetic particles and algae as predicted by the extended Derjaguin and Landau, Verwey, and Overbeek (EDLVO) theory. Such unique hydrophobicity shift may also find many other potential applications that require recovery, recycle, and reuse of valuable nanomaterials to increase sustainability and economically viability.
机译:磁选技术是一种有前途的生物分离技术,它在藻类收获以提取生物燃料时面临着磁性试剂的回收和再利用方面的挑战。这项研究合成了可在UV365辐照下改变疏水性的,固醇(SA)包覆的Fe3O4-ZnO纳米复合材料。我们的结果表明,随着UV365辐射下表面疏水性的转变,磁性纳米复合材料从浓缩藻类生物质中分离出来。由于在365紫外线照射下ZnO产生自由基(例如(OH)-O-中心点),SA涂层的氧化部分地导致了脱离。因此,纳米复合材料表面从疏水性转变为亲水性,这极大地降低了磁性粒子与藻类之间的附着力,这是由扩展的Derjaguin和Landau,Verwey和Overbeek(EDLVO)理论所预测的。这种独特的疏水性变化也可能会发现许多其他潜在的应用,这些应用需要回收,再循环和再利用有价值的纳米材料以增加可持续性和经济可行性。

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