Chinese Journal of Lasers, Volume. 49, Issue 4, 0411002(2022)
Analysis of Aging Mechanism of Polystyrene Microspheres by Using Single Particle Raman Spectroscopy
[1] Li J, Song Y, Cai Y B. Focus topics on microplastics in soil: analytical methods, occurrence, transport, and ecological risks[J]. Environmental Pollution, 257, 113570(2020).
[2] Thompson R C, Moore C J, vom Saal F S et al. Plastics, the environment and human health: current consensus and future trends[J]. Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences, 364, 2153-2166(2009).
[3] Alimi O S, Farner Budarz J, Hernandez L M et al. Microplastics and nanoplastics in aquatic environments: aggregation, deposition, and enhanced contaminant transport[J]. Environmental Science & Technology, 52, 1704-1724(2018).
[4] Anderson J C, Park B J, Palace V P. Microplastics in aquatic environments:implications for Canadian ecosystems[J]. Environmental Pollution, 218, 269-280(2016).
[5] van Cauwenberghe L, Vanreusel A, Mees J et al. Microplastic pollution in deep-sea sediments[J]. Environmental Pollution, 182, 495-499(2013).
[6] Zbyszewski M, Corcoran P L. Distribution and degradation of fresh water plastic particles along the beaches of lake Huron, Canada[J]. Water, Air, & Soil Pollution, 220, 365-372(2011).
[7] Galafassi S, Nizzetto L, Volta P. Plastic sources: a survey across scientific and grey literature for their inventory and relative contribution to microplastics pollution in natural environments, with an emphasis on surface water[J]. Science of the Total Environment, 693, 133499(2019).
[8] ter Halle A, Ladirat L, Martignac M et al. To what extent are microplastics from the open ocean weathered?[J]. Environmental Pollution, 227, 167-174(2017).
[9] Zhu K C, Jia H Z, Sun Y J et al. Long-term phototransformation of microplastics under simulated sunlight irradiation in aquatic environments: roles of reactive oxygen species[J]. Water Research, 173, 115564(2020).
[10] Corcoran P L, Biesinger M C, Grifi M. Plastics and beaches: a degrading relationship[J]. Marine Pollution Bulletin, 58, 80-84(2009).
[11] Cai L Q, Wang J D, Peng J P et al. Observation of the degradation of three types of plastic pellets exposed to UV irradiation in three different environments[J]. Science of the Total Environment, 628/629, 740-747(2018).
[12] Singh B, Sharma N. Mechanistic implications of plastic degradation[J]. Polymer Degradation and Stability, 93, 561-584(2008).
[13] Gewert B, Plassmann M M, MacLeod M. Pathways for degradation of plastic polymers floating in the marine environment[J]. Environmental Science: Processes & Impacts, 17, 1513-1521(2015).
[14] Andrady A L. Microplastics in the marine environment[J]. Marine Pollution Bulletin, 62, 1596-1605(2011).
[15] Obadal M, Čermák R, Raab M et al. Study on photodegradation of injection-moulded β-polypropylenes[J]. Polymer Degradation and Stability, 91, 459-463(2006).
[16] Hamid S H, Prichard W H. Mathematical modeling of weather-induced degradation of polymer properties[J]. Journal of Applied Polymer Science, 43, 651-678(1991).
[17] Löder M G J, Kuczera M, Mintenig S et al. Focal plane array detector-based micro-Fourier-transform infrared imaging for the analysis of microplastics in environmental samples[J]. Environmental Chemistry, 12, 563-581(2015).
[18] Ivleva N P, Wiesheu A C, Niessner R. Microplastic in aquatic ecosystems[J]. Angewandte Chemie International Edition, 56, 1720-1739(2017).
[19] Liu R, Taylor D S, Matthews D L et al. Parallel analysis of individual biological cells using multifocal laser tweezers Raman spectroscopy[J]. Applied Spectroscopy, 64, 1308-1310(2010).
[20] Redding B, Schwab M, Pan Y L. Raman spectroscopy of optically trapped single biological micro-particles[J]. Sensors, 15, 19021-19046(2015).
[21] Eisentraut P, Dümichen E, Ruhl A S et al. Two birds with one stone: fast and simultaneous analysis of microplastics: microparticles derived from thermoplastics and tire wear[J]. Environmental Science & Technology Letters, 5, 608-613(2018).
[22] Duemichen E, Braun U, Senz R et al. Assessment of a new method for the analysis of decomposition gases of polymers by a combining thermogravimetric solid-phase extraction and thermal desorption gas chromatography mass spectrometry[J]. Journal of Chromatography A, 1354, 117-128(2014).
[23] Fischer M, Scholz-Böttcher B M. Simultaneous trace identification and quantification of common types of microplastics in environmental samples by pyrolysis-gas chromatography-mass spectrometry[J]. Environmental Science & Technology, 51, 5052-5060(2017).
[24] Cao X Y, Jin S Z, Hou B et al. Pollen detection and classification method via Raman spectroscopy[J]. Laser & Optoelectronics Progress, 57, 133001(2020).
[25] He S S, Cao P, Tan H L et al. Comparative study on spectral characteristics of natural and flame-melting synthetic spinels[J]. Laser & Optoelectronics Progress, 58, 0530001(2021).
[26] Jin W, Bao H H, Qi Y et al. Micro/nano-structured optical fiber laser spectroscopy[J]. Acta Optica Sinica, 41, 0130002(2021).
[27] Anger P M, von der Esch E, Baumann T et al. Raman microspectroscopy as a tool for microplastic particle analysis[J]. TrAC Trends in Analytical Chemistry, 109, 214-226(2018).
[28] Liu M H, Dong Z R, Xin G F et al. Raman spectrum library matching method based on integrated features[J]. Chinese Journal of Lasers, 46, 0111002(2019).
[29] Ji M Q, Zhu Q B, Huang M et al. Method for improving identification accuracy of components in mixtures using Raman spectra of known mixtures[J]. Chinese Journal of Lasers, 47, 1111001(2020).
[30] Wang Q, Zeng W D, Xia Z P et al. Recognition of food-borne pathogenic bacteria by Raman spectroscopy based on random forest algorithm[J]. Chinese Journal of Lasers, 48, 0311002(2021).
[31] Zhang P F, Kong L B, Setlow P et al. Multiple-trap laser tweezers Raman spectroscopy for simultaneous monitoring of the biological dynamics of multiple individual cells[J]. Optics Letters, 35, 3321-3323(2010).
[32] Fernández-González V, Andrade-Garda J M, López-Mahía P et al. Impact of weathering on the chemical identification of microplastics from usual packaging polymers in the marine environment[J]. Analytica Chimica Acta, 1142, 179-188(2021).
[33] Mato Y, Isobe T, Takada H et al. Plastic resin pellets as a transport medium for toxic chemicals in the marine environment[J]. Environmental Science & Technology, 35, 318-324(2001).
[34] Viršek M K, Lovšin M N, Koren Š et al. Microplastics as a vector for the transport of the bacterial fish pathogen species Aeromonas salmonicida[J]. Marine Pollution Bulletin, 125, 301-309(2017).
[35] Revel M, Châtel A, Mouneyrac C. Micro(nano)plastics: a threat to human health?[J]. Current Opinion in Environmental Science & Health, 1, 17-23(2018).
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Xiujuan Zhang, Cuimei Li, Lixin Peng, Junxian Liu, Guiwen Wang. Analysis of Aging Mechanism of Polystyrene Microspheres by Using Single Particle Raman Spectroscopy[J]. Chinese Journal of Lasers, 2022, 49(4): 0411002
Category: spectroscopy
Received: May. 18, 2021
Accepted: Jul. 28, 2021
Published Online: Jan. 18, 2022
The Author Email: Liu Junxian (jxliu@mailbox.gxnu.edu.cn), Wang Guiwen (wguiwen@gxas.cn)