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实际样品中4-氨基苯酚污染物去除、降解及电化学监测的最新进展:综述

State-of-art advances on removal, degradation and electrochemical monitoring of 4-aminophenol pollutants in real samples: A review.

作者信息

Karimi-Maleh Hassan, Darabi Rozhin, Karimi Fatemeh, Karaman Ceren, Shahidi Seyed Ahmad, Zare Najmeh, Baghayeri Mehdi, Fu Li, Rostamnia Sadegh, Rouhi Jalal, Rajendran Saravanan

机构信息

School of Resources and Environment, University of Electronic Science and Technology of China, P.O. Box 611731, Xiyuan Ave, Chengdu, PR China; Department of Chemical Engineering and Energy, Quchan University of Technology, Quchan, 9477177870, Iran; Department of Sustainable Engineering, Saveetha School of Engineering, SIMATS, Chennai, 602105, India.

School of Resources and Environment, University of Electronic Science and Technology of China, P.O. Box 611731, Xiyuan Ave, Chengdu, PR China.

出版信息

Environ Res. 2023 Apr 1;222:115338. doi: 10.1016/j.envres.2023.115338. Epub 2023 Jan 24.

Abstract

p_Aminophenol, namely 4-aminophenol (4-AP), is an aromatic compound including hydroxyl and amino groups contiguous together on the benzene ring, which are suitable chemically reactive, amphoteric, and alleviating agents in nature. Amino phenols are appropriate precursors for synthesizing oxazoles and oxazines. However, since the toxicity of aniline and phenol can harm human and herbal organs, it is essential to improve a reliable technique for the determination of even a trace amount of amino phenols, as well as elimination or (bio)degradation/photodegradation of it to protect both the environment and people's health. For this purpose, various analytical methods have been suggested up till now, including spectrophotometry, liquid chromatography, spectrofluorometric and capillary electrophoresis, etc. However, some drawbacks such as the requirement of complex instruments, high costs, not being portable, slow response time, low sensitivity, etc. prevent them to be employed in a wide range and swift in-situ applications. In this regard, besides the efforts such as (bio)degradation/photodegradation or removal of 4-AP pollutants from real samples, electroanalytical techniques have become a promising alternative for monitoring them with high sensitivity. In this review, it was aimed to emphasize and summarize the recent advances, challenges, and opportunities for removal, degradation, and electrochemical sensing 4-AP in real samples. Electroanalytical monitoring of amino phenols was reviewed in detail and explored the various types of electrochemical sensors applied for detecting and monitoring in real samples. Furthermore, the various technique of removal and degradation of 4-AP in industrial and urban wastes were also deliberated. Moreover, deep criticism of multifunctional nanomaterials to be utilized as a catalyst, adsorbent/biosorbent, and electroactive material for the fabrication of electrochemical sensors was covered along with their unique properties. Future perspectives and conclusions were also criticized to pave the way for further studies in the field of application of up-and-coming nanostructures in environmental applications.

摘要

对氨基苯酚,即4-氨基苯酚(4-AP),是一种芳香族化合物,其苯环上的羟基和氨基相邻,本质上是具有合适化学反应性、两性和缓解作用的试剂。氨基苯酚是合成恶唑和恶嗪的合适前体。然而,由于苯胺和苯酚的毒性会损害人体和植物器官,因此必须改进一种可靠的技术,用于测定痕量的氨基苯酚,以及对其进行消除或(生物)降解/光降解,以保护环境和人类健康。为此,到目前为止已经提出了各种分析方法,包括分光光度法、液相色谱法、荧光分光光度法和毛细管电泳法等。然而,一些缺点,如需要复杂的仪器、成本高、不便于携带、响应时间慢、灵敏度低等,阻碍了它们在广泛和快速的现场应用中的使用。在这方面,除了努力进行(生物)降解/光降解或从实际样品中去除4-AP污染物外,电分析技术已成为一种有前途的高灵敏度监测它们的替代方法。在这篇综述中,旨在强调和总结在实际样品中去除、降解和电化学传感4-AP的最新进展、挑战和机遇。详细综述了氨基苯酚的电分析监测,并探讨了用于实际样品检测和监测的各种类型的电化学传感器。此外,还讨论了工业和城市废物中4-AP的各种去除和降解技术。此外,还涵盖了对用作制造电化学传感器的催化剂、吸附剂/生物吸附剂和电活性材料的多功能纳米材料的深入批评及其独特性能。还对未来的前景和结论进行了批评,为新兴纳米结构在环境应用领域的进一步研究铺平道路。

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