环境中纳米塑料的分离与检测

张晓菲, 汪磊. 环境中纳米塑料的分离与检测[J]. 环境化学, 2020, (1): 8-11. doi: 10.7524/j.issn.0254-6108.2019102701
引用本文: 张晓菲, 汪磊. 环境中纳米塑料的分离与检测[J]. 环境化学, 2020, (1): 8-11. doi: 10.7524/j.issn.0254-6108.2019102701
ZHANG Xiaofei, WANG Lei. The separation and detection methods of nanoplastics in the environment[J]. Environmental Chemistry, 2020, (1): 8-11. doi: 10.7524/j.issn.0254-6108.2019102701
Citation: ZHANG Xiaofei, WANG Lei. The separation and detection methods of nanoplastics in the environment[J]. Environmental Chemistry, 2020, (1): 8-11. doi: 10.7524/j.issn.0254-6108.2019102701

环境中纳米塑料的分离与检测

    通讯作者: 汪磊, E-mail: wang2007@nankai.edu.cn
  • 基金项目:

    国家自然科学基金(41722304)资助.

The separation and detection methods of nanoplastics in the environment

    Corresponding author: WANG Lei, wang2007@nankai.edu.cn
  • Fund Project: Supported by the National Natural Science Foundation of China(41722304).
  • 摘要: 微塑料作为环境中一类新兴污染物备受关注.然而对于尺寸更小的纳米塑料,尽管毒性效应被不断发现,但其在真实环境中的存在水平和检测技术还鲜有报道.本文评述了有限研究中纳米塑料分离和检测方法的优点与局限,并依据现阶段纳米污染物分析方法存在的问题,对相关方法的未来发展进行了展望.
  • 加载中
  • [1] 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, 2018, 52(4):1704-1724.
    [2] 周倩,章海波,李远,等.海岸环境中微塑料污染及其生态效应研究进展[J]. 科学通报, 2015, 60(33):3210-3220.

    ZHOU Q, ZHANG H B, LI Y, et al. Progress on microplastics pollution and its ecological effects in the coastal environment[J]. Chinese Science Bulletin, 2015, 60(33):3210-3220(in Chinese).

    [3] 杨婧婧,徐笠,陆安祥,等.环境中微(纳米)塑料的来源及毒理学研究进展[J]. 环境化学, 2018, 37(3):383-396.

    YANG J J, XU L, LU A X,et al. Research progress on the sources and toxicology of micro (nano) plastics in environment[J]. Environmental Chemistry,2018,37(3):383-396(in Chinese).

    [4] XU M, HALIMU G, ZHANG Q, et al. Internalization and toxicity:A preliminary study of effects of nanoplastic particles on human lung epithelial cell[J]. Science of The Total Environment, 2019, 694:133794.
    [5] SHEN M, ZHANG Y, ZHU Y, et al. Recent advances in toxicological research of nanoplastics in the environment:A review[J]. Environmental Pollution, 2019, 252(Part A):511-521.
    [6] VELZEBOER I, KWADIJK C J A F, KOELMANS A A. Strong sorption of PCBs to nanoplastics, microplastics, carbon nanotubes, and fullerenes[J]. Environmental Science & Technology, 2014, 48(9):4869-4876.
    [7] BOOTH AM, HANSEN BH, FRENZEL M, et al. Uptake and toxicity of methylmethacrylate-based nanoplastic particles in aquatic organisms[J]. Environmental Toxicology and Chemistry, 2016, 35(7):1641-1649.
    [8] WARD JE, KACH DJ. Marine aggregates facilitate ingestion of nanoparticles by suspension-feeding bivalves[J]. Marine Environmental Research, 2009, 68(3):137-142.
    [9] BHATTACHARYA P, LIN S, TURNER J P, et al. Physical adsorption of charged plastic nanoparticles affects algal photosynthesis[J]. Journal of Physical Chemistry C, 2010, 114(39):16556-16561.
    [10] BESSELING E, WANG B, L RLING M, et al. Nanoplastic affects growth of S. obliquus and reproduction of D. magna[J]. Environmental Science & Technology, 2014, 48(20):12336-12343.
    [11] LEHNER R, WEDER C, PETRI-FINK A, et al. Emergence of nanoplastic in the environment and possible impact on human health[J]. Environmental Science & Technology, 2019, 53(4):1748-1765.
    [12] MATTSSON K, JOHNSON EV, MALMENDAL A, et al. Brain damage and behavioural disorders in fish induced by plastic nanoparticles delivered through the food chain[J]. Scientific Reports, 2017, 7(1):11452.
    [13] MA Y, HUANG A, CAO S, et al. Effects of nanoplastics and microplastics on toxicity, bioaccumulation, and environmental fate of phenanthrene in fresh water[J]. Environmental Pollution, 2016, 219:166-173.
    [14] LEOPOLD K, PHILIPPE A, W RLE K, et al. Analytical strategies to the determination of metal-containing nanoparticles in environmental waters[J]. Trends in Analytical Chemistry, 2016, 84(Part A):107-120.
    [15] 王昆,林坤德,袁东星.环境样品中微塑料的分析方法研究进展[J]. 环境化学, 2017, 36(1):27-36.

    WANG K, LIN K D, YUAN D X. Research progress on the analysis of microplastics in the environment[J]. Environmental Chemistry,2017,36(1):27-36(in Chinese).

    [16] NGUYEN B, CLAVEAU-MALLET D, HERNANDEZ L M, et al. Separation and analysis of microplastics and nanoplastics in complex environmental samples[J]. Accounts of Chemical Research, 2019, 52(4):858-866.
    [17] BAIK M-H, YUN J, II, BOUBY M, et al. Characterization of aquatic groundwater colloids by a laser-induced breakdown detection and ICP-MS combined with an asymmetric flow field-flow fractionation[J]. Korean Journal of Chemical Engineering, 2007, 24(5):723-729.
    [18] DIAZ X, JOHNSON WP, FERNANDEZ D, et al. Size and elemental distributions of nano- to micro-particulates in the geochemically-stratified Great Salt Lake[J]. Applied Geochemistry, 2009, 24(9):1653-1665.
    [19] LIU J F, YU S J, YIN Y G, et al. Methods for separation, identification, characterization and quantification of silver nanoparticles[J].Trends in Analytical Chemistry, 2012, 33:95-106.
    [20] MAJEDI S M, LEE H K. Recent advances in the separation and quantification of metallic nanoparticles and ions in the environment[J]. Trends in Analytical Chemistry, 2016, 75:183-196.
    [21] HERNANDEZ L M, XU E G, LARSSON H C E, et al. Plastic teabags release billions of microparticles and nanoparticles into tea[J]. Environmental Science & Technology, 2019, 53(21):12300-12310.
    [22] HERNANDEZ L M, YOUSEFI N, TUFENKJI N. Are there nanoplastics in your personal care products?[J]. Environmental Science & Technology Letters, 2017, 4(7):280-285.
    [23] MINTENIG S M, B UERLEIN PS, KOELMANS A A, et al. Closing the gap between small and smaller:towards a framework to analyse nano- and microplastics in aqueous environmental samples[J]. Environmental Science:Nano, 2018, 5(7):1640-1649.
    [24] TER HALLE A, JEANNEAU L, MARTIGNAC M, et al. Nanoplastic in the North Atlantic Subtropical Gyre[J]. Environmental Science & Technology, 2017, 51(23):13689-13697.
    [25] CORREIA M, LOESCHNER K. Detection of nanoplastics in food by asymmetric flow field-flow fractionation coupled to multi-angle light scattering:possibilities, challenges and analytical limitations[J]. Analytical and Bioanalytical Chemistry, 2018, 410(22):5603-5615.
    [26] ZHOU X X, HAO L T, WANG H Y Z, et al. Cloud-point extraction combined with thermal degradation for nanoplastic analysis using pyrolysis gas chromatography-mass spectrometry[J]. Analytical Chemistry, 2019, 91(3):1785-1790.
    [27] GIGAULT J, EL HADRI H, REYNAUD S. Asymmetrical flow field flow fractionation methods to characterize submicron particles:application to carbon-based aggregates and nanoplastics[J]. Analytical and Bioanalytical Chemistry, 2017, 49(29):6761-6769
    [28] WANG L, ZHANG J, HOU S, et al. A Simple Method for quantifying polycarbonate and polyethylene terephthalate microplastics in environmental samples by liquid chromatography-tandem mass spectrometry[J]. Environmental Science & Technology Letters, 2017, 4(12):530-534.
    [29] 汪磊,彭楚,唐雪娇,等.一种针对环境样品中微量尼龙6和尼龙66的定量检测方法:201910088486.1[P].2019-04-16.

    WANG L, PENG C, TANG X J, et al. A method for quantifying nylon 6 and nylon 66 microplastics in environmental samples:201910088486.1[P]. 2019-04-16(in Chinese).

    [30] 汪磊,许雅丽,唐雪娇,等.一种针对环境样品中微量聚乳酸微塑料的定量检测方法:201910861095.9[P].2019-09-12.

    WANG L, XU Y L, TANG X J, et al. A method for quantifying poly-lactic acid microplastics in environmental samples:201910861095.9[P]. 2019-09-12(in Chinese).

  • 加载中
计量
  • 文章访问数:  3618
  • HTML全文浏览数:  3618
  • PDF下载数:  267
  • 施引文献:  0
出版历程
  • 收稿日期:  2019-10-27
  • 刊出日期:  2020-01-01
张晓菲, 汪磊. 环境中纳米塑料的分离与检测[J]. 环境化学, 2020, (1): 8-11. doi: 10.7524/j.issn.0254-6108.2019102701
引用本文: 张晓菲, 汪磊. 环境中纳米塑料的分离与检测[J]. 环境化学, 2020, (1): 8-11. doi: 10.7524/j.issn.0254-6108.2019102701
ZHANG Xiaofei, WANG Lei. The separation and detection methods of nanoplastics in the environment[J]. Environmental Chemistry, 2020, (1): 8-11. doi: 10.7524/j.issn.0254-6108.2019102701
Citation: ZHANG Xiaofei, WANG Lei. The separation and detection methods of nanoplastics in the environment[J]. Environmental Chemistry, 2020, (1): 8-11. doi: 10.7524/j.issn.0254-6108.2019102701

环境中纳米塑料的分离与检测

    通讯作者: 汪磊, E-mail: wang2007@nankai.edu.cn
  • 环境污染过程与基准教育部重点实验室, 南开大学环境科学与工程学院, 天津, 300350
基金项目:

国家自然科学基金(41722304)资助.

摘要: 微塑料作为环境中一类新兴污染物备受关注.然而对于尺寸更小的纳米塑料,尽管毒性效应被不断发现,但其在真实环境中的存在水平和检测技术还鲜有报道.本文评述了有限研究中纳米塑料分离和检测方法的优点与局限,并依据现阶段纳米污染物分析方法存在的问题,对相关方法的未来发展进行了展望.

English Abstract

参考文献 (30)

返回顶部

目录

/

返回文章
返回