References
[1]. Andrady, A. L., & Neal, M. A. (2009). Applications and
societal benefits of plastics. Philosophical Transactions of
the Royal Society B: Biological Sciences, 364(1526),
1977-1984. https://doi.org/10.1098/rstb.2008.0304
[2]. Aragaw, T. A. (2020). Surgical face masks as a
potential source for microplastic pollution in the COVID-19 scenario. Marine Pollution Bulletin, 159, 111517.
https://doi.org/10.1016/j.marpolbul.2020.111517
[3]. Brandl, H., & Püchner, P. (1991). Biodegradation of
plastic bottles made from 'Biopol'in an aquatic
ecosystem under in situ conditions. Biodegradation, 2(4),
237-243. https://doi.org/10.1007/BF00114555
[4]. Chandegara, V. K., Cholera, S. P., Nandasana, J. N.,
Kumpavat, M. T., & Patel, K. C. (2015). Plastic packaging
waste impact on climate change and its mitigation.
Water management and climate smart agriculture.
Adaptation of Climatic Resilient Water Management and
Agriculture, 3, 404-415.
[5]. Cho, S., & Choi, W. (2001). Solid-phase photocatalytic
degradation of PVC–TiO2 polymer composites. Journal of
Photochemistry and Photobiology A: Chemistry, 143(2-3),
221-228. https://doi.org/10.1016/S1010-6030(01)00499-3
[6]. Daniel, D. C. (2004). Creating a sustainable future.
Jones and Bartlett Learning. Environmental Science, 8,
517-518.
[7]. David, B. (2011). Are Biodegradeable Plastics Doing
More Harm Than Good? Retrieved from https://www.Scientificamerican.com/podcast/episode/are-biodegradeable-plastics-doing-m-11-06-05/
[8]. Eriksen, M., Lebreton, L. C., Carson, H. S., Thiel, M.,
Moore, C. J., Borerro, J. C., ... & Reisser, J. (2014). Plastic
pollution in the world's oceans: more than 5 trillion plastic
pieces weighing over 250,000 tons afloat at sea. Plos
One, 9(12), e111913. https://doi.org/10.1371/journal.pone.0111913
[9]. Fa, W., Zan, L., Gong, C., Zhong, J., & Deng, K. (2008). Solid-phase photocatalytic degradation of
polystyrene with TiO2 modified by iron (II) phthalocyanine.
Applied Catalysis B: Environmental, 79(3), 216-223.
https://doi.org/ 10.1016/j.apcatb.2007.10.018
[10]. Galie, F. (2016). Global market trends and
investments in polyethylene and polypropylene.
Retrieved from https://s3-eu-west-1.amazonaws.com/cjp-rbi-icis/wp-content/uploads/sites/7/2018/09/03154239/global_trends_whitepaper_pp_pe.pdf
[11]. Gilleo, P. D. K., & Vardaman, J. (2002). Area Array
Packaging Handbook: Manufacturing and Assembly.
McGraw-Hill Education.
[12]. Gregory, M. R. (2009). Environmental implications of
plastic debris in marine settings—Entanglement,
ingestion, smothering, hangers-on, hitch-hiking and alien
invasions. Philosophical Transactions of the Royal Society
B: Biological Sciences, 364(1526), 2013-2025.
https://doi.org/10.1098/rstb.2008.0265
[13]. Hamlet, C., Matte, T., & Mehta, S. (2018). Combating
Plastic Air Pollution on Earth's Day. Retrieved from
https://medium.com/vital-strategies/combating-plasticand-air-pollution-on-earth-day-d9c06f1ca219
[14]. Karleskint, G., Turner, R., & Small, J. (2009).
Introduction to Marine Biology. Cengage Learning
[15]. Kent, R. (1988). Periodic Table of Polymers.
Retrieved from https://pcn.org/technical-information/periodic-table-of-polymers/
[16]. Kutz, M. (2002). Handbook of Materials Selection.
John Wiley & Sons.
[17]. Li, S., Xu, S., He, L., Xu, F., Wang, Y., & Zhang, L. (2010).
Photocatalytic degradation of polyethylene plastic with
polypyrrole/TiO2 nanocomposite as photocatalyst.
Polymer-Plastics Technology and Engineering, 49(4), 400-406. https://doi.org/10.1080/03602550903532166
[18]. Liang, Y., Tan, Q., Song, Q., & Li, J. (2021). An analysis
of the plastic waste trade and management in Asia.
Waste Management, 119, 242-253. https://doi.org/10.1016/j.wasman.2020.09.049
[19]. Liu, G. L., Zhu, D. W., Liao, S. J., Ren, L. Y., Cui, J. Z., &
Zhou, W. B. (2009). Solid-phase photocatalytic degradation of polyethylene–Goethite composite film under UV-light irradiation. Journal of Hazardous Materials,
172(2-3), 1424-1429. https://doi.org/10.1016/j.jhazmat.2009.08.008
[20]. Mehran, M. T., Raza Naqvi, S., Ali Haider, M., Saeed,
M., Shahbaz, M., & Al-Ansari, T. (2021). Global plastic
waste management strategies (Technical and
behavioral) during and after COVID-19 pandemic for
cleaner global urban life. Energy Sources, Part A:
Recovery, Utilization, and Environmental Effects, 1-10.
https://doi.org/10.1080/15567036.2020.1869869
[21]. Njeru, J. (2006). The urban political ecology of
plastic bag waste problem in Nairobi, Kenya. Geoforum,
37(6), 1046-1058. https://doi.org/10.1016/j.geoforum.2006.03.003
[22]. Plastics Europe. (n.d.). Plastics-The Facts 2020.
Retrieved from https://plasticseurope.org/knowledgehub/plastics-the-facts-2020/
[23]. Rahimi, A., & García, J. M. (2017). Chemical
recycling of waste plastics for new materials production.
Nature Reviews Chemistry, 1(6), 1-11. https://doi.org/10.1038/s41570-017-0046
[24]. Sheavly, S. B. (2005). Marine Debris–An Overview of a Critical Issue for Our Oceans. Presentation at Sixth.
[25]. Thomas, R. T., & Sandhyarani, N. (2013).
Enhancement in the photocatalytic degradation of low
density polyethylene–TiO2 nanocomposite films under
solar irradiation. RSC Advances, 3(33), 14080-14087.
https://doi.org/10.1039/C3RA42226G
[26]. Yang, C., Ye, L., Tian, L., Peng, T., Deng, K., & Zan, L.
(2011). Photodegradation activity of polyvinyl chloride
(PVC)–perchlorinated iron (II) phthalocyanine (FePcCl16)
composite film. Journal of Colloid and Interface
Science, 353(2), 537-541. https://doi.org/10.1016/j.jcis.2010.10.010
[27]. Zan, L., Tian, L., Liu, Z., & Peng, Z. (2004). A new
polystyrene–TiO2 nanocomposite film and its
photocatalytic degradation. Applied Catalysis A:
General, 264(2), 237-242. https://doi.org/10.1016/j.apcata.2003.12.046
[28]. Zhang, K., Hamidian, A. H., Tubi, A., Zhang, Y., Fang,
J. K., Wu, C., & Lam, P. K. (2021). Understanding plastic
degradation and microplastic formation in the
environment: A review. Environmental Pollution, 274,
116554. https://doi.org/10.1016/j.envpol.2021.116554