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可靠的环境痕量重金属分析与电位离子传感器 - 现实还是遥远的梦想。

Reliable environmental trace heavy metal analysis with potentiometric ion sensors - reality or a distant dream.

机构信息

School of Civil and Environmental Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore; Residues and Resource Reclamation Centre, Nanyang Environment and Water Research Institute, Nanyang Technological University, 1 Cleantech Loop, Singapore, 637141, Singapore.

出版信息

Environ Pollut. 2021 Nov 15;289:117882. doi: 10.1016/j.envpol.2021.117882. Epub 2021 Jul 30.

Abstract

Over two decades have passed since polymeric membrane ion-selective electrodes were found to exhibit sufficiently lower detection limits. This in turn brought a great promise to measure trace level concentrations of heavy metals using potentiometric ion sensors at environmental conditions. Despite great efforts, trace analysis of heavy metals using ion-selective electrodes at environmental conditions is still not commercially available. This work will predominantly concentrate on summarizing and evaluating prospects of using potentiometric ion sensors in view of environmental determination of heavy metals in on-site and on-line analysis modes. Challenges associated with development of reliable potentiometric sensors to be operational in environmental conditions will be discussed and reasoning behind unsuccessful efforts to develop potentiometric on-site and on-line environmental ion sensors will be explored. In short, it is now clear that solely lowering the detection limit of the ion-selective electrodes does not guarantee development of successful sensors that would meet the requirement of environmental matrices over long term usage. More pressing challenges of the properties and the performance of the potentiometric sensors must be addressed first before considering extending their sensitivity to low analyte concentrations. These are, in order of importance, selectivity of the ion-selective membrane to main ion followed by the membrane resistance to parallel processes, such as water ingress to the ISM, light sensitivity, change in temperature, presence of gasses in solution and pH and finally resistance of the ion-selective membrane to fouling. In the future, targeted on-site and on-line environmental sensors should be developed, addressing specific environmental conditions. Thus, ion-selective electrodes should be developed with the intention to be suitable to the operational environmental conditions, rather than looking at universal sensor design validated in the idealized and simple sample matrices.

摘要

自聚合膜离子选择性电极被发现具有足够低的检测限以来,已经过去了二十多年。这反过来又为在环境条件下使用电位离子传感器测量痕量重金属浓度带来了巨大的希望。尽管付出了巨大的努力,但在环境条件下使用离子选择性电极进行痕量重金属分析在商业上仍然不可用。这项工作将主要集中在总结和评估在现场和在线分析模式下使用电位离子传感器环境中重金属测定的前景。将讨论在环境条件下开发可靠的电位传感器所面临的挑战,并探讨开发电位现场和在线环境离子传感器失败的原因。简而言之,现在很明显,仅仅降低离子选择性电极的检测限并不能保证开发出能够满足长期使用环境基质要求的成功传感器。在考虑将其灵敏度扩展到低分析物浓度之前,必须首先解决电位传感器的性能和性能方面更紧迫的挑战。按重要性顺序排列,依次是离子选择性膜对主离子的选择性,然后是膜对平行过程(如水进入 ISM、光敏感性、温度变化、溶液中气体存在和 pH 值)的电阻,最后是离子选择性膜对污垢的电阻。将来,应该针对特定的环境条件开发有针对性的现场和在线环境传感器。因此,离子选择性电极的开发应旨在适应操作环境条件,而不是着眼于在理想化和简单的样品基质中验证的通用传感器设计。

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