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Photoactive Titania Float for Disinfection of Water; Evaluation of Cell Damage by Bioanalytical Techniques

机译:用于水消毒的光敏性二氧化钛浮子;通过生物分析技术评估细胞损伤

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A photoactive float was fabricated with the modified titania to cause a feasible disinfection of water, contaminated with E. coli. The commercially available titania was doped with neodymium by pulverization technique to enhance its activity in sunlight and a multiapproach technique was used to evaluate the extended efficiency of the doped sample. X-ray diffraction patterns depicted the retention of anatase phase on doping and the existence of neodymium was confirmed by the energy dispersive atomic X-ray analysis and the X-ray photoelectron spectroscopy. Transmission electron microscopy and Bruner-Emmett-Teller analysis depicted a marginal increase in the particle size and a decrease in the surface area, respectively. Doping induces semiconductor behavior with lower band energy that could respond to visible light and exhibit better disinfection activity. The "f" and "d" transitions of the lanthanide in doped sample caused new electronic behavior of trapping/detrapping effect together with bandgap narrowing. The amount of malondialdehyde, protein, DNA and RNA released on destruction of E. coli was observed to be 0.915 × 10~(-3) μg mL~(-1), 859.912 μg mL~(-1), 20.173 μg mL~(-1) and 1146.073 μg mL~(-1), respectively. The above analytical methods along with standard plate count method substantiated the enhanced disinfection efficiency of the doped sample in sunlight.
机译:用改性的二氧化钛制造了一种光敏浮子,以对水进行可行的消毒,该水被大肠杆菌污染。通过粉碎技术将市售的二氧化钛掺入钕,以增强其在阳光下的活性,并采用多途径技术评估掺入样品的扩展效率。 X射线衍射图谱显示了掺杂时锐钛矿相的保留,并且通过能量色散原子X射线分析和X射线光电子能谱证实了钕的存在。透射电子显微镜和Bruner-Emmett-Teller分析分别描述了颗粒大小的微小增加和表面积的减少。掺杂会以较低的能带响应半导体行为,该能响应可见光并表现出更好的消毒活性。掺杂样品中镧系元素的“ f”和“ d”跃迁引起了新的俘获/去俘获电子行为以及带隙变窄。观察到大肠杆菌破坏后释放的丙二醛,蛋白质,DNA和RNA的量分别为0.915×10〜(-3)μgmL〜(-1),859.912μgmL〜(-1),20.173μgmL〜 (-1)和1146.073μgmL〜(-1)。上述分析方法与标准平板计数法一起证实了掺杂样品在阳光下的消毒效率提高。

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