Synthetic Polymer Contamination in Bottled Water

被引:635
作者
Mason, Sherri A. [1 ]
Welch, Victoria G. [1 ]
Neratko, Joseph [1 ]
机构
[1] SUNY Coll Fredonia, Dept Chem, Fredonia, NY 14063 USA
基金
英国科研创新办公室;
关键词
plastic pollution; microplastic; consumables; human health; FTIR; Nile Red; drinking water; MICROPLASTIC POLLUTION; HUMAN CONSUMPTION; PLASTIC DEBRIS; GREAT-LAKES; MU-M; PARTICLES; SURFACE; SALTS; FISH;
D O I
10.3389/fchem.2018.00407
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Eleven globally sourced brands of bottled water, purchased in 19 locations in nine different countries, were tested for microplastic contamination using Nile Red tagging. Of the 259 total bottles processed, 93% showed some sign of microplastic contamination. After accounting for possible background (lab) contamination, an average of 10.4 microplastic particles > 100 um in size per liter of bottled water processed were found. Fragments were the most common morphology (66%) followed by fibers. Half of these particles were confirmed to be polymeric in nature using FTIR spectroscopy with polypropylene being the most common polymer type (54%), which matches a common plastic used for the manufacture of bottle caps. A small fraction of particles (4%) showed the presence of industrial lubricants. While spectroscopic analysis of particles smaller than 100 um was not possible, the adsorption of the Nile Red dye indicates that these particles are most probably plastic. Including these smaller particles (6.5-100 um), an average of 325 microplastic particles per liter of bottled water was found. Microplastic contamination range of 0 to over 10,000 microplastic particles per liter with 95% of particles being between 6.5 and 100 um in size. Data suggests the contamination is at least partially coming from the packaging and/or the bottling process itself. Given the prevalence of the consumption of bottled water across the globe, the results of this study support the need for further studies on the impacts of micro-and nano-plastics on human health.
引用
收藏
页数:11
相关论文
共 25 条
[1]   Plastic Debris in 29 Great Lakes Tributaries: Relations to Watershed Attributes and Hydrology [J].
Baldwin, Austin K. ;
Corsi, Steven R. ;
Mason, Sherri A. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2016, 50 (19) :10377-10385
[2]   Ingested microplastics (>100 μm) are translocated to organs of the tropical fiddler crab Uca rapax [J].
Brennecke, Dennis ;
Ferreira, Erica C. ;
Costa, Tarso M. M. ;
Appel, Daniel ;
da Gama, Bernardo A. P. ;
Lenz, Mark .
MARINE POLLUTION BULLETIN, 2015, 96 (1-2) :491-495
[3]   PLASTICS ON SARGASSO SEA-SURFACE [J].
CARPENTER, EJ ;
SMITH, KL .
SCIENCE, 1972, 175 (4027) :1240-+
[4]   Plastic Pollution in the World's Oceans: More than 5 Trillion Plastic Pieces Weighing over 250,000 Tons Afloat at Sea [J].
Eriksen, Marcus ;
Lebreton, Laurent C. M. ;
Carson, Henry S. ;
Thiel, Martin ;
Moore, Charles J. ;
Borerro, Jose C. ;
Galgani, Francois ;
Ryan, Peter G. ;
Reisser, Julia .
PLOS ONE, 2014, 9 (12)
[5]   Microplastic pollution in the surface waters of the Laurentian Great Lakes [J].
Eriksen, Marcus ;
Mason, Sherri ;
Wilson, Stiv ;
Box, Carolyn ;
Zellers, Ann ;
Edwards, William ;
Farley, Hannah ;
Amato, Stephen .
MARINE POLLUTION BULLETIN, 2013, 77 (1-2) :177-182
[6]   Lost, but Found with Nile Red: A Novel Method for Detecting and Quantifying Small Microplastics (1 mm to 20 μm) in Environmental Samples [J].
Erni-Cassola, Gabriel ;
Gibson, Matthew I. ;
Thompson, Richard C. ;
Christie-Oleza, Joseph A. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2017, 51 (23) :13641-13648
[7]   Microplastics in the Marine Environment: A Review of the Methods Used for Identification and Quantification [J].
Hidalgo-Ruz, Valeria ;
Gutow, Lars ;
Thompson, Richard C. ;
Thiel, Martin .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2012, 46 (06) :3060-3075
[8]   Microplastics in freshwater and terrestrial environments: Evaluating the current understanding to identify the knowledge gaps and future research priorities [J].
Horton, Alice A. ;
Walton, Alexander ;
Spurgeon, David J. ;
Lahive, Elma ;
Svendsen, Claus .
SCIENCE OF THE TOTAL ENVIRONMENT, 2017, 586 :127-141
[9]   Microplastics in Spanish Table Salt [J].
Iniguez, Maria E. ;
Conesa, Juan A. ;
Fullana, Andres .
SCIENTIFIC REPORTS, 2017, 7
[10]  
Karami A, 2017, SCI REP-UK, V7, DOI [10.1038/srep46173, 10.1038/s41598-017-05828-6]