多氯联苯监测的小型化电化学传感器研究。

Elizabeth Nthambi Ndunda, Moses Mutiso Mwanza
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引用次数: 0

摘要

由于工业化和其他人类活动造成的环境污染日益引起人们的关注,这是由于大多数化学物质被释放到环境中的有害影响。特别令人感兴趣的是持久性有机污染物,据报道,持久性有机污染物是有毒的,并因其持久性而在环境中积累。在持久性有机污染物中,多氯联苯(PCBs)在过去被广泛用于各种应用,从农药添加剂到电气设备的介电流体。作为保护同一健康三部曲(环境、人类和动物健康)的一种方式,他们在环境方面的决心是一种最重要的呼吁,研究人员继续为实现这一目标提供先进技术。这些技术包括传统的金标准气相色谱系统与可以检测痕量浓度的敏感检测器相结合。它们在监测多氯联苯方面派上了用场,但由于与它们相关的操作成本和需要专家运行设备,它们在路由监测方面的应用可能无法持续。因此,需要经济实惠的系统,仍然能够实现日常监测和实时数据采集所需的灵敏度。传感器系统非常适合这一类别,因为它们可以小型化,价格合理,并描绘了许多其他理想的功能。多氯联苯作为与环境相关的环境污染物,在传感器开发方面受到的关注很少,本文综述了迄今为止所做的努力。它深入讨论了电化学传感器和迄今为止用于实现低浓度多氯联苯检测的各种修改,以及远程和常规监测的未来前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Towards miniaturized electrochemical sensors for monitoring of polychlorinated biphenyls.

Pollution of our environment as a result of industrialization and other human activities is a growing concern due to the harmful effects of most chemicals that are released into the environment. Of particular interest are the persistent organic pollutants (POPs) that are reported to be toxic and build up in the environment due to their persistence. Among the POPs are polychlorinated biphenyls (PCBs), which were widely used in the past in various applications ranging from additives in pesticides to dielectric fluids in electrical equipment. As a way of protecting the one health trilogy (environment, human and animal health), their determination in the environment is a paramount call that has seen researchers continue to provide advanced technologies towards achieving this goal. These technologies involve the conventional gold standard gas chromatography systems coupled to sensitive detectors that can detect trace level concentrations. They have come in handy in monitoring of PCBs but their application for routing monitoring may not be sustainable because of the cost of operation associated with them and the need for experts to run the equipment. As a result, there is need for affordable systems that are still able to achieve the required sensitivity for routine monitoring and real-time data acquisition. Sensor systems fit very well in this category since they can be miniaturized for affordability and portray many other desirable features. PCBs as environmentally relevant environmental pollutants have received minimal attention with regards to sensor development and this review highlights the efforts that have been made so far. It provides in-depth discussions on electrochemical sensors and the various modifications that have been employed to date to achieve detection of PCBs at low concentrations as well as the future prospects in remote and routine monitoring.

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