Literature DB >> 26234612

Characterisation, quantity and sorptive properties of microplastics extracted from cosmetics.

Imogen E Napper1, Adil Bakir2, Steven J Rowland3, Richard C Thompson4.   

Abstract

Cosmetic products, such as facial scrubs, have been identified as potentially important primary sources of microplastics to the marine environment. This study characterises, quantifies and then investigates the sorptive properties of plastic microbeads that are used as exfoliants in cosmetics. Polyethylene microbeads were extracted from several products, and shown to have a wide size range (mean diameters between 164 and 327 μm). We estimated that between 4594 and 94,500 microbeads could be released in a single use. To examine the potential for microbeads to accumulate and transport chemicals they were exposed to a binary mixture of (3)H-phenanthrene and (14)C-DDT in seawater. The potential for transport of sorbed chemicals by microbeads was broadly similar to that of polythene (PE) particles used in previous sorption studies. In conclusion, cosmetic exfoliants are a potentially important, yet preventable source of microplastic contamination in the marine environment.
Copyright © 2015 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Contaminant; Exfoliating microbeads; Microplastic; Ocean pollution; Polyethylene

Mesh:

Substances:

Year:  2015        PMID: 26234612     DOI: 10.1016/j.marpolbul.2015.07.029

Source DB:  PubMed          Journal:  Mar Pollut Bull        ISSN: 0025-326X            Impact factor:   5.553


  37 in total

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Authors:  Jeremy L Conkle; Christian D Báez Del Valle; Jeffrey W Turner
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Review 3.  How to Build a Microplastics-Free Environment: Strategies for Microplastics Degradation and Plastics Recycling.

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Review 4.  Removing microplastics from wastewater using leading-edge treatment technologies: a solution to microplastic pollution-a review.

Authors:  Arunkumar Priya; Gururajan Anusha; Sundaram Thanigaivel; Alagar Karthick; Vinayagam Mohanavel; Palanivel Velmurugan; Balamuralikrishnan Balasubramanian; Manickam Ravichandran; Hesam Kamyab; Irina Mikhailovna Kirpichnikova; Shreeshivadasan Chelliapan
Journal:  Bioprocess Biosyst Eng       Date:  2022-03-17       Impact factor: 3.210

5.  Trends of microplastic abundance in personal care products in the United Arab Emirates over the period of 3 years (2018-2020).

Authors:  Rana Zeeshan Habib; Jawaher A K Aldhanhani; Alia Hilal Ali; Furtuna Ghebremedhin; Mariam Elkashlan; Mikal Mesfun; Wajeeh Kittaneh; Ruwaya Al Kindi; Thies Thiemann
Journal:  Environ Sci Pollut Res Int       Date:  2022-07-19       Impact factor: 5.190

Review 6.  Plastic Interactions with Pollutants and Consequences to Aquatic Ecosystems: What We Know and What We Do Not Know.

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Journal:  Biomolecules       Date:  2022-06-07

7.  Microplastics in municipal wastewater treatment plants in Turkey: a comparison of the influent and secondary effluent concentrations.

Authors:  Sedat Gündoğdu; Cem Çevik; Evşen Güzel; Serdar Kilercioğlu
Journal:  Environ Monit Assess       Date:  2018-10-02       Impact factor: 2.513

8.  Microplastics in the environment: Occurrence, perils, and eradication.

Authors:  Surbhi Sharma; Soumen Basu; Nagaraj P Shetti; Mallikarjuna N Nadagouda; Tejraj M Aminabhavi
Journal:  Chem Eng J       Date:  2021-03-15       Impact factor: 13.273

9.  Further studies in translatable model systems are needed to predict the impacts of human microplastic exposure.

Authors:  Sarah E Morgan; Lisa A DeLouise
Journal:  Open Access J Toxicol       Date:  2020-06-05

10.  A multi-OMIC characterisation of biodegradation and microbial community succession within the PET plastisphere.

Authors:  Robyn J Wright; Rafael Bosch; Morgan G I Langille; Matthew I Gibson; Joseph A Christie-Oleza
Journal:  Microbiome       Date:  2021-06-21       Impact factor: 14.650

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