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Application of biosensors in the petrochemical industry a mini review on the sensing platforms for polycyclic aromatic hydrocarbons detection

机译:生物传感器在石油化工行业中的应用迷你综述对多环芳烃检测的传感平台

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The increased awareness of the hazardous effects of polycyclic aromatic hydrocarbons (PAHs) has been the target of several studies in the current literature. PAHs are a group of organic molecules derived from petroleum that contains from two to seven aromatic rings in their structure that have been largely emitted to the environment from natural but especially anthropogenic sources. In this research, we reviewed the main aspects concerning the effects of PAHs in the environment with a special focus on the biosensing platforms recently developed to detect these pollutants. Herein, we reported the use of biosensors as an alternative to the expensive, time-consuming and laborious traditional techniques commonly employed to detect PAHs. Most of the examined literature referred to the use of antibodies and DNA as biological elements to fabricate the sensors, and the electrochemical and optical mechanisms comprised the preferred transduction techniques for this purpose. Among the 16 PAHs present in the priority list established by the United States Environmental Protection Agency (US EPA) with respect to the toxicity and abundance, B[ a ]P was the pollutant most studied by researchers in the field of biosensors, who found limits of detection in the order of micro molar. Overall, the reviewed biosensors presented significant promise for the reliable, selective and sensitive detection of PAHs in the ecosystem.
机译:增加对多环芳烃(PAHS)危险作用(PAHS)的意识一直是当前文献中的几项研究的目标。 PAHS是一组来自石油的有机分子,其结构中含有两到七个芳香环,这些结构在很大程度上从自然而特别是人为的环境中大量发射到环境中。在这项研究中,我们审查了PAHS在环境中的影响的主要方面,特别关注最近开发出这些污染物的生物传感平台。在此,我们报道了使用生物传感器作为常用的昂贵,耗时和艰巨的传统技术的替代方法,通常用于检测PAH。大多数检查的文献都提到使用抗体和DNA作为制造传感器的生物元素,并且电化学和光学机制包括用于此目的的优选的转换技术。在由美国环境保护局(美国EPA)确定的毒性和丰富的优先级列表中,B [A] P是由发现限制的生物传感器领域的研究人员学习的污染物以微摩尔的顺序检测。总体而言,审查的生物传感器对生态系统中的PAHS的可靠,选择性和敏感检测具有重要的承诺。

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