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Cyanobacterial Biomass Pigments as Natural Sensitizer for TiO_2 Thin Films

机译:用三氧化钛为天然敏化剂的蓝细菌生物量颜料

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In this work, we studied the effect of TiO_2 sensitization with dry biomass extracted of cyanobacteria on the degradation of methylene blue dye (AM). Cyanobacterial cultures isolated from water samples were collected from the swamp of Malambo in Colombia; two main genera of cyanobacteria were identified, and they were cultivated with BG-11 culture medium. The concentrations of chlorophyll a in the exponential and stationary phases of growth were measured; the phycobilin content was quantified by spectrophotometry. Thin films of TiO_2 were deposited by a doctor blade method, and they were sensitized by wet impregnation. Furthermore, a methylene blue (MB) photodegradation process was studied under visible light irradiation on the cyanobacterial biomass sensitized TiO_2 material (TiO_2/sensitizer); besides, the pseudo-first-order model was used to obtain kinetic information about photocatalytic degradation. The results showed that the BG-11+ treatment reported a higher amount of dry biomass and phycobiliproteins. After the sensitization process, the TiO_2/sensitizer thin films showed a significant red shift in the optical activity; besides the thin film roughness decreasing, the TiO_2/sensitizer showed photocatalytic activity of 23.2% under visible irradiation, and besides, the kinetic (k_(ap)) constant for TiO_2/sensitizer thin films was 3.1 times greater than the k_(ap) value of TiO_2 thin films. Finally, results indicated that cyanobacterial biomass is a suitable source of natural sensitizers to be used in semiconductor sensitization.
机译:在这项工作中,我们研究了TiO_2致敏与干生物量对亚甲基蓝染料(AM)的降解提取的干生物质的影响。从哥伦比亚的马拉巴沼泽中收集了从水样中分离的睾丸细胞培养物;鉴定了两种主要的蓝藻,它们用BG-11培养基培养。测量叶绿素A中叶绿素A的浓度和静止阶段的生长阶段;通过分光光度法量化植物蛋白含量。通过刮刀法沉积TiO_2的薄膜,并通过湿浸渍致敏。此外,在蓝藻生物量敏化TiO_2材料(TiO_2 /敏化剂)上的可见光照射下研究了亚甲基蓝(MB)光降解过程;此外,伪一阶模型用于获得有关光催化降解的动力学信息。结果表明,BG-11 +治疗报告了较高量的干生物质和植物胆素。在敏化过程之后,TiO_2 /敏化剂薄膜在光学活性中显示出显着的红移;除了薄膜粗糙度下降之外,TiO_2 /敏化剂在可见光辐射下显示光催化活性为23.2%,除此之外,TiO_2 /敏化剂薄膜的动力学(K_(AP))常数比K_(AP)值大3.1倍TiO_2薄膜。最后,结果表明,蓝细菌生物质是用于半导体敏化的天然敏化剂的合适来源。

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