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Layer-by-layer carbon nanotube bio-templates for in situ monitoring of the metabolic activity of nitrifying bacteria

机译:用于硝化细菌代谢活性的原位监测的逐层碳纳米管生物模板

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Despite the wide variety of effective disinfection and wastewater treatment techniques for removing organic and inorganic wastes, pollutants such as nitrogen remain in wastewater effluents. If left untreated, these nitrogenous wastes can adversely impact the environment by promoting the overgrowth of aquatic plants, depleting dissolved oxygen, and causing eutrophication. Although nitrification/denitrification processes are employed during advanced wastewater treatment, effective and efficient operation of these facilities require information of the pH, dissolved oxygen content, among many other parameters, of the wastewater effluent. In this preliminary study, a biocompatible CNT-based nanocomposite is proposed and validated for monitoring the biological metabolic activity of nitrifying bacteria in wastewater effluent environments (i.e., to monitor the nitrification process). Using carbon nanotubes and a pH-sensitive conductive polymer (i.e., poly(aniline) emeraldine base), a layer-by-layer fabrication technique is employed to fabricate a novel thin film pH sensor that changes its electrical properties in response to variations in ambient pH environments. Laboratory studies are conducted to evaluate the proposed nanocomposite's biocompatibility with wastewater effluent environments and its pH sensing performance.
机译:尽管有各种各样的有效的消毒和废水处理技术,用于去除有机和无机废物,污染物如氮气保留在废水流出物中。如果未经处理过的话,这些含氮废物可以通过促进水生植物的过度生长,耗尽溶解的氧气并引起富营养化来对环境产生不利影响。尽管在先进的废水处理期间采用硝化/脱氮过程,但这些设施的有效和有效的操作需要对废水流出物的许多其他参数的pH,溶解氧含量的信息需要pH,溶解的氧含量。在该初步研究中,提出了一种生物相容性CNT基纳米复合材料,并验证用于监测废水污水环境中硝化细菌的生物代谢活性(即,监测硝化过程)。使用碳纳米管和pH敏感的导电聚合物(即,聚(苯胺)祖母绿碱),采用层逐层制造技术来制造新的薄膜pH传感器,以响应环境温度的变化而改变其电性能ph环境。进行实验室研究以评估所提出的纳米复合材料的生物相容性及其对废水污水环境及其pH感测性能。

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