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基于比色法的用于检测空气和水中有害物质的纸片式装置:概念验证。

Colorimetric Paper-Based Device for Hazardous Compounds Detection in Air and Water: A Proof of Concept.

机构信息

Department of Mathematics and Physics "Ennio De Giorgi", University of Salento, Via Arnesano, 73100 Lecce, Italy.

Studio Effemme-Chimica Applicata, Via Paolo VI, 73018 Squinzano (LE), Italy.

出版信息

Sensors (Basel). 2020 Sep 25;20(19):5502. doi: 10.3390/s20195502.

Abstract

In the last decades, the increase in global industrialization and the consequent technological progress have damaged the quality of the environment. As a consequence, the high levels of hazardous compounds such as metals and gases released in the atmosphere and water, have raised several concerns about the health of living organisms. Today, many analytical techniques are available with the aim to detect pollutant chemical species. However, a lot of them are not affordable due to the expensive instrumentations, time-consuming processes and high reagents volumes. Last but not least, their use is exclusive to trained operators. Contrarily, colorimetric sensing devices, including paper-based devices, are easy to use, providing results in a short time, without particular specializations to interpret the results. In addition, the colorimetric response is suitable for fast detection, especially in resource-limited environments or underdeveloped countries. Among different chemical species, transition and heavy metals such as iron Fe(II) and copper Cu(II) as well as volatile compounds, such as ammonia (NH) and acetaldehyde (CHO) are widespread mainly in industrialized geographical areas. In this work, we developed a colorimetric paper-based analytical device (PAD) to detect different contaminants, including Fe and Cu ions in water, and NH and CHO in air at low concentrations. This study is a "proof of concept" of a new paper sensor in which the intensity of the colorimetric response is proportional to the concentration of a detected pollutant species. The sensor model could be further implemented in other technologies, such as drones, individual protection devices or wearable apparatus to monitor the exposure to toxic species in both indoor and outdoor environments.

摘要

在过去几十年中,全球工业化的增长以及随之而来的技术进步破坏了环境质量。因此,大气和水中释放的高浓度有害化合物,如金属和气体,引起了人们对生物健康的担忧。如今,有许多分析技术旨在检测污染物化学物质。然而,由于昂贵的仪器、耗时的过程和高试剂用量,许多技术都无法承受。最后但并非最不重要的是,它们的使用仅限于经过培训的操作人员。相反,比色传感设备,包括基于纸张的设备,易于使用,在短时间内提供结果,不需要特别的专业知识来解释结果。此外,比色响应适用于快速检测,特别是在资源有限的环境或欠发达的国家。在不同的化学物质中,过渡金属和重金属,如铁 (Fe(II)) 和铜 (Cu(II)) 以及挥发性化合物,如氨 (NH) 和乙醛 (CHO),主要在工业化地区广泛存在。在这项工作中,我们开发了一种比色纸基分析设备 (PAD),用于检测水中的不同污染物,包括 Fe 和 Cu 离子,以及空气中的 NH 和 CHO,浓度较低。本研究是一种新型纸传感器的“概念验证”,其中比色响应的强度与检测到的污染物浓度成正比。该传感器模型可以进一步应用于其他技术,如无人机、个人防护设备或可穿戴设备,以监测室内和室外环境中有毒物质的暴露情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c872/7582469/8b3737a3bbbe/sensors-20-05502-g001.jpg

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