Material Safety and Integrity of Water-Filled Low-Density Polyethylene Bags in an Accelerated Weathering Investigation for Applications in Solar Water Disinfection (SODIS)

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In this work, the potential use of LDPE bags as containers in the SODIS application by simulated in an accelerated weathering tester (QUV), with respect to material safety and durability, was investigated. For the material integrity, a decrease in the elongation at break from 818% (at the beginning) to 21% (after 6 weeks of UV exposure) corresponded to the long UV exposure. A significant degree of mechanical degradation was evident during 2 to 4 weeks of UV exposure. The UV-Vis results showed that the UV transmittance of the bags, mostly in the UV-B region, decreased with longer duration of UV exposure. The FT-IR results showed a slight increase in carbonyl group, particularly observable in the bags exposed under UV for 3 weeks or longer. For the material safety, the amount of plastic additives that were leached into water was negligibily small and much lower than the limit of the safety standard. The results and analyses from this work provide insights into the feasibility of LDPE as an alternative material for SODIS containers and potentially be useful for future designs of SODIS containers to improve the disinfection and durability performances.

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269-273

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August 2015

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© 2015 Trans Tech Publications Ltd. All Rights Reserved

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[1] ASTM Standard, G154–06 Standard Practice for Operating Fluorescent Light Apparatus for UV Exposure of Nonmetallic Materials1, ASTM International, West Conshohocken, PA, (2006).

Google Scholar

[2] R. Exell, The solar radiation climate of Thailand, Solar Energy, 18 (1976) 349-354.

DOI: 10.1016/0038-092x(76)90062-1

Google Scholar

[3] ASTM Standard, D882-09 Standard Test Method for Tensile Properties of Thin Plastic Sheeting, ASTM International, West Conshohocken, PA, (2009).

Google Scholar

[4] B. Singh, N. Sharma, Mechanistic implications of plastic degradation, Polymer Degradation and Stability, 93 (2008) 561-584.

DOI: 10.1016/j.polymdegradstab.2007.11.008

Google Scholar

[5] P.J. Hocking, The classification, preparation, and utility of degradable polymers, Journal of Macromolecular Science, Part C: Polymer Reviews, 32 (1992) 35-54.

DOI: 10.1080/15321799208018378

Google Scholar

[6] D.H. Jeon, G.Y. Park, I.S. Kwak, K.H. Lee, H.J. Park, Antioxidants and their migration into food simulants on irradiated LLDPE film, LWT-Food Science and Technology, 40 (2007) 151-156.

DOI: 10.1016/j.lwt.2005.05.017

Google Scholar

[7] I. Skjevrak, A. Due, K.O. Gjerstad, H. Herikstad, Volatile organic components migrating from plastic pipes (HDPE, PEX and PVC) into drinking water, Water research, 37 (2003) 1912-(1920).

DOI: 10.1016/s0043-1354(02)00576-6

Google Scholar

[8] European Commission, Commission Regulation (EU) No 10/2011 of 14 January 2011 on plastic materials and articles intended to come into contact with food, Off J Eur Comm, 50 (2011) 1-89.

Google Scholar