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现场/实地分析农药和兽药残留的最先进技术:综述。

Onsite/on-field analysis of pesticide and veterinary drug residues by a state-of-art technology: A review.

机构信息

Natural Products Chemistry Laboratory, Chonnam National University, Gwangju, Republic of Korea.

Department of Food Science and Technology and BK 21 plus Program, Graduate School of Chonnam National University, Gwangju, Republic of Korea.

出版信息

J Sep Sci. 2021 Jun;44(11):2310-2327. doi: 10.1002/jssc.202001105. Epub 2021 Apr 22.

Abstract

Pesticides and veterinary drugs are generally employed to control pests and insects in crop and livestock farming. However, remaining residues are considered potentially hazardous to human health and the environment. Therefore, regular monitoring is required for assessing and legislation of pesticides and veterinary drugs. Various approaches to determining residues in various agricultural and animal food products have been reported. Most analytical methods involve sample extraction, purification (cleanup), and detection. Traditional sample preparation is time-consuming labor-intensive, expensive, and requires a large amount of toxic organic solvent, along with high probability for the decomposition of a compound before the analysis. Thus, modern sample preparation techniques, such as the quick, easy, cheap, effective, rugged, and safe method, have been widely accepted in the scientific community for its versatile application; however, it still requires a laboratory setup for the extraction and purification processes, which also involves the utilization of a toxic solvent. Therefore, it is crucial to elucidate recent technologies that are simple, portable, green, quick, and cost-effective for onsite and infield residue detections. Several technologies, such as surface-enhanced Raman spectroscopy, quantum dots, biosensing, and miniaturized gas chromatography, are now available. Further, several onsite techniques, such as ion mobility-mass spectrometry, are now being upgraded; some of them, although unable to analyze field sample directly, can analyze a large number of compounds within very short time (such as time-of-flight and Orbitrap mass spectrometry). Thus, to stay updated with scientific advances and analyze organic contaminants effectively and safely, it is necessary to study all of the state-of-art technology.

摘要

农药和兽药通常用于控制农作物和畜牧业中的害虫和昆虫。然而,残留的农药和兽药被认为对人类健康和环境具有潜在的危害。因此,需要定期监测来评估和规范农药和兽药的使用。已经有许多方法可以用于检测各种农业和动物食品中的残留农药和兽药。大多数分析方法都涉及样品提取、净化(纯化)和检测。传统的样品制备方法既费时费力,成本又高,而且需要大量有毒有机溶剂,在分析之前化合物很容易分解。因此,快速、简单、廉价、有效、耐用、安全(QuEChERS)等现代样品制备技术因其广泛的应用而在科学界得到广泛认可;然而,它仍然需要实验室设备来进行提取和净化过程,这也涉及到有毒溶剂的使用。因此,阐明用于现场和田间残留检测的简单、便携、绿色、快速和经济高效的新技术至关重要。目前有几种技术,如表面增强拉曼光谱、量子点、生物传感和微型化气相色谱等,已经可以应用于现场检测。此外,还有几种现场检测技术,如离子淌度-质谱联用技术,也在不断升级。其中一些技术虽然不能直接分析现场样本,但可以在很短的时间内分析大量的化合物(如飞行时间和轨道阱质谱)。因此,为了跟上科学的进步,有效地、安全地分析有机污染物,有必要研究所有最先进的技术。

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