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Aminoclay-templated nanoscale zero-valent iron (nZVI) synthesis for efficient harvesting of oleaginous microalga, Chlorella sp. KR-1

机译:aminoclay-templated纳米级零价铁(nZVI)合成,用于有效收获含油微藻,小球藻属。 KR-1

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摘要

Synthesis of aminoclay-templated nanoscale zero-valent iron (nZVI) for efficient harvesting of oleaginous microalgae was demonstrated. According to various aminoclay loadings (0, 0.25, 0.5, 1.0, 2.5, 5.0, and 7.5 aminoclay/nZVI ratios), the stability of nZVI was investigated as a function of sedimentation rate. Aminoclay-coated nZVI (aminoclay-nZVI composites) showed optimal dispersibility at the 1.0 ratio, resulting in the smallest aggregated size and uniform coating of aminoclay nanoparticles onto nZVI due to electrostatic attraction between nZVI and aminoclay nanoparticles. This silica-coated nZVI composite (ratio 1.0) exhibited a highly positively charged surface (~+40 mV) and a ferromagnetic property (~30 emu/g). On the basis of these characteristics, oleaginous Chlorella sp. KR-1 was harvested within 3 min at a 20 g/L loading under a magnetic field. In a scaled-up (24L) microalga harvesting process using magnetic rods, microalgae were successfully collected by attachment to the magnetic rods or by precipitation. It is believed that this approach, thanks to the recyclability of aminoclay-nZVI composites, can be applied in a continuous harvesting mode.
机译:证明了用于高效收获含油微藻的氨基粘土模板纳米级零价铁(nZVI)的合成。根据各种氨基粘土负载量(0、0.25、0.5、1.0、2.5、5.0和7.5氨基粘土/ nZVI的比例),研究了nZVI的稳定性与沉降速率的关系。涂有氨水粘土的nZVI(氨基粘土-nZVI复合材料)在1.0比例下表现出最佳的分散性,由于nZVI和氨基粘土纳米颗粒之间的静电吸引,导致氨基粘土纳米颗粒的聚集尺寸最小,并均匀地涂覆在nZVI上。这种二氧化硅涂层的nZVI复合材料(比率1.0)显示出高度带正电的表面(〜+ 40 mV)和铁磁性能(〜30 emu / g)。基于这些特征,产油小球藻。在磁场下以> 20 g / L的负荷在3分钟内收获KR-1。在使用磁棒扩大规模(24L)的微藻收获过程中,通过附着到磁棒或沉淀成功地收集了微藻。据信,由于氨基粘土-nZVI复合材料的可回收性,该方法可用于连续收获模式。

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