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Assessment of Surface Properties of Silica-Bacterial Cell Complex: A Potential Application for Silicate Bioflotation Processes

机译:二氧化硅细菌细胞复合物表面性质的评估:硅酸盐生物缺失过程的潜在应用

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The objective of the present work was to assess the surface properties of silica-cell complexes formed by Bacillus pumilus strain SKC-2 for bioflotation purposes. This bacterial strain was employed in this study because it is a Gram-positive, mixotrophic bacterium whose metal binding capacity extends to many different metals and circumstances as well as a biosurfactant producer. The strain was found to promote the formation of silica-cell complexes due to the generation of surface-active agents (i.e., extracellular polymeric substrances (EPS)) as represented by scanning electron microscopy equipped with energy dispersive X-ray spectroscopy (SEM-EDS) observation. Surface properties of the complexes was assessed by water contact angle and surface tension measurements, demonstrating that bacterial cells reduced the surface tension of the solutions and increased the contact angle of the silica surfaces, representing a larger hydrophobic property. Therefore, the findings of this study provide clear evidence for the potential application of the bacterium Bacillus pumilus strain SKC-2 for silicate bioflotation processes (i.e., as frother and collector).
机译:本作作品的目的是评估由Bacillus Pumilus菌株SKC-2形成的二氧化硅细胞复合物的表面性质,用于生物透燃料目的。该研究采用这种细菌菌株,因为它是革兰氏阳性的混合营养细菌,其金属结合能力延伸到许多不同的金属和情况以及生物活性剂生产商。发现该菌株促进由于表面活性剂的产生而促进二氧化硅 - 细胞复合物的形成(即,细胞外聚合物基质(EPS)),如通过扫描电子显微镜的扫描电子显微镜(SEM-EDS)所示)观察。通过水接触角和表面张力测量评估配合物的表面性质,表明细菌细胞降低了溶液的表面张力并增加了二氧化硅表面的接触角,代表较大的疏水性。因此,本研究的结果为硅酸盐生物透氟化方法(即紫外和收集器为含有硅酸盐的生物缺塑料SKC-2提供明确的证据。

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