1. 西北师范大学化学化工学院
2. ,北京,100072
3. 中国科学院生态环境研究中心环境化学与生态毒理学国家重点实验室
4. 中国科学院大学资源与环境学院
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刘娅聪, 王伟超, 令伟博, 等. 激光剥蚀串联电感耦合等离子体质谱在环境分析中的应用进展[J]. 分析测试学报, 2021,40(5):767-776.
Recent Advance in Application of Laser Ablation Inductively Coupled Plasma Mass Spectrometry in Environmental Analysis[J]. 2021,40(5):767-776.
激光剥蚀串联电感耦合等离子体质谱法(LA-ICP-MS)是一种功能强大的化学元素检测方法,它具有样品前处理简单、多元素同时测定、高通量、高灵敏度、宽线性范围以及原位分析等优点。同时,激光剥蚀可以与多接收器电感耦合等离子体质谱仪(MC-ICP-MS)串联用于稳定同位素组成测定,不仅避免了繁琐的样品前处理,同时还可应用于固体样品的微区原位同位素分析,揭示微观尺度上稳定同位素组成的变化。LA-ICP-MS已广泛应用于地质、考古等领域,其在环境科学领域应用相对起步较晚,但近年来发展迅速。该文总结了近年来LA-ICP-MS的环境分析方法开发及其在环境科学中的应用进展,并对其未来发展趋势进行了展望。
Laser ablation inductively coupled plasma mass spectrometry(LA-ICP-MS) is a powerful technique for detection of elements and biological imaging,in which the sample is firstly ablated by laser to produce aerosol particles,then passed into the ICP with a carry gas,and finally detected by MS.LA-ICP-MS has a number of advantages in the field of environment analysis,such as direct analysis of solid samples without pretreatment,simultaneous determination of multiple elements,high throughput,high sensitivity and wide linear range.Compared with other analytical techniques in terms of micro-area imaging,LA-ICP-MS could not only avoid high vacuum operating environment,but also detect low content elements with high spatial resolution.In addition,it reduces the use of organic solvents and thus becomes more environmentally friendly.LA could also be combined with different MS instruments,for example,combination of LA with inductively coupled plasma time of flight mass spectrometry(LA-ICP-TOF-MS) might increase the ability for multi-element detection and biological imaging.Furthermore,LA could be combined with multi-collector inductively coupled plasma mass spectrometry(LA-MC-ICP-MS) for stable isotopic composition determination,which not only avoids cumbersome sample preparation procedures,but also enables in-situ micro-zone isotopic analysis of solid samples.It should be noted that the LA-MC-ICP-MS results might be affected by the fractionation effect,matrix effect and isotopic heterogeneity,while the development of LA device from nanosecond(ns) LA to femtosecond(fs) LA could dramatically decrease the fractionation effect.LA-ICP-MS has been widely used in geology,archaeology and other fields in recent years,while its application in environmental science has started later but developed very rapidly.The development of LA-ICP-MS-based analytical methods in recent years and their applications in environmental research are summarized in this paper.The principle of LA-ICP-MS and the matrix effect and fractionation effect in LA-ICP-MS detection are firstly introduced.The corresponding calibration methods are also discussed.Then,the recent typical applications of LA-ICP-MS in analysis of soils,sediments,ice cores,plants,and biological samples are reviewed.The affecting factors of LA-MC-ICP-MS and its environmental applications are also discussed.Finally,the perspectives on the future trends in this field are anticipated.Regarding analytical methodology,it is necessary to further improve the laser efficiency and sensitivity,decrease matrix effect and improve the spatial resolution to achieve more accurate imaging of samples.It is necessary to develop more standard reference materials and purification methods to adapt to complex environment and biological media.The combined use of multiple imaging techniques has become an important trend in biological sample analysis.Due to the minimal sample consumption and simple sample pretreatment procedures,LA-ICP-MS is expected to be applied to in vivo analysis.It also needs to develop high-precision methods to realize isotopic imaging analysis.In summary,LA-ICP-MS has shown great potentials in environmental applications and will play a more and more important role in environmental research.
电感耦合等离子体质谱激光剥蚀金属环境分析质谱综述
inductively coupled plasma mass spectrometrylaser ablationmetalenvironmental analysismass spectrometryreview
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