Tek Sağlık, insan, hayvan ve çevre sağlığı arasındaki işbirliğini vurgulayan disiplinler arası bir yaklaşımdır. Birçok ülkenin sağlık politikalarında merkezi bir rol oynamaktadır. Bu kavram, insan, hayvan ve çevre sağlığının birbirine bağlı olduğunu ve iş birliği gerektirdiğini savunan yenilikçi ve bütünleyici bir düşüncedir. Bulaşıcı ve zoonotik hastalıklar gibi halk sağlığı sorunlarına karşı kritik bir öneme sahiptir. Yaşanan COVID-19 pandemisi sürecinde, atık yönetimine ve özellikle maskeler, koruyucu ekipmanlar ve tıbbi testler gibi kullanımı artan plastik atıkların insan, hayvan, bitki ve çevre sağlığı üzerindeki etkilerine, Tek Sağlık bakış açısı ile dikkat çekilmiştir. Çünkü bu durum, plastik atık temelli çevre kirliliğini, dolayısıyla ekosistem sağlığına plastiklerin etkisini daha belirgin hale getirmiştir.
Bu çalışma, COVID-19 pandemisi sırasında plastik kirliliği konusundaki çalışmaları ele alarak, Tek Sağlık perspektifinde ekosistem sağlığı yaklaşımına odaklanmaktadır. Pandemi sonrası ortaya çıkan kirleticilerin çeşitliliği ve çevresel etkileşimler, global çözümler için önerilerle birlikte incelenmiştir. Gelecekteki araştırmaların, bu kirleticilerin çevre üzerindeki olumsuz etkilerini azaltma ve etkili stratejiler geliştirme konusundaki ihtiyaçlarını ele alması ve Tek Sağlık yaklaşımı olası çözümler ulaşılması beklenmektedir.
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How did the COVID-19 Pandemic Cause Plastic Pollution within the Scope of One Health? Recent Research and Identifying Knowledge Gaps
One Health is an interdisciplinary approach emphasizing collaboration between human, animal, and environmental health, playing a central role in the health policies of many countries. The concept advocates the interconnectedness of human, animal, and environmental health, emphasizing the need for cooperation. It is crucial in addressing public health issues such as infectious and zoonotic diseases. During the COVID-19 pandemic, particular attention has been drawn to waste management, with a focus on the environmental impact of plastic waste. The pandemic has led to a rapid increase in the use of plastic waste, especially in the form of masks, protective equipment, and medical test materials, highlighting the prominence of plastic waste-based environmental pollution. This study examines research on plastic pollution during the COVID-19 pandemic, with a focus on environmental health from the One Health perspective. The diversity of pollutants emerging post-pandemic and their environmental interactions are explored, accompanied by recommendations for global solutions. Future research is expected to address the need to reduce the adverse effects of these pollutants on the environment and develop effective strategies.
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Sivri, N. (2022). The spatial and temporal
changes of beach litter on Istanbul (Turkey)
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Marine Pollution Bulletin, 176, 113407. DOI:
10.1016/j.marpolbul.2022.113407
Akay, O., Altinkok, C., Acik, G., Yuce, H., Ege, G.K. &
Genc, G. (2022). Preparation of a sustainable bio-
copolymer based on Luffa cylindrica cellulose and
poly(ɛ-caprolactone) for bioplastic applications.
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Macromolecules, 196, 98-106. DOI:
10.1016/j.ijbiomac.2021.12.051
Ammendolia, J., Saturno, J., Brooks, A.L., Jacobs, S. &
Jambeck, J.R. (2021). An emerging source of
plastic pollution: Environmental presence of
plastic personal protective equipment (PPE)
debris related to COVID-19 in a metropolitan city.
Environmental Pollution, 269, 116160. DOI:
10.1016/j.envpol.2020.116160
Avery-Gomm, S., Walker, T.R., Mallory, M.L. &
Provencher, J.F. (2019). There is nothing
convenient about plastic pollution. Rejoinder to
Stafford and Jones “Viewpoint - Ocean plastic
pollution: A convenient but distracting truth?”
Marine Policy, 106, 103552. DOI:
10.1016/j.marpol.2019.103552
Benson, N.U., Fred-Ahmadu, O.H., Bassey, D.E. &
Atayero, A.A. (2021). COVID-19 pandemic and
emerging plastic-based personal protective
equipment waste pollution and management in
Africa. Journal of Environmental Chemical
Engineering, 9(3), 105222. DOI:
10.1016/j.jece.2021.105222
Chen, F., Lao, Q., Liu, M., Huang, P., Chen, B., Zhou,
X., Chen, P., Chen, K., Song, Z. & Cai, M.
(2022). Impact of intensive mariculture activities
on microplastic pollution in a typical semi-
enclosed bay: Zhanjiang Bay. Marine Pollution
Bulletin, 176, 113402. DOI:
10.1016/j.marpolbul.2022.113402
Chen, Y., Awasthi, A. K., Wei, F., Tan, Q. & Li, J.
(2021). Single-use plastics: Production, usage,
disposal, and adverse impacts. Science of The
Total Environment, 752, 141772. DOI:
10.1016/j.scitotenv.2020.141772
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S., Spitz, J., Nabipour, I., Keshtkar, M.,
Akhbarizadeh, R., Tangestani, M., Abedi, D. &
Javanfekr, F. (2022). Release of phthalate esters
(PAEs) and microplastics (MPs) from face masks
and gloves during the COVID-19 pandemic.
Environmental Research, 215, 114337. DOI:
10.1016/j.envres.2022.114337
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Villarrubia-Gómez, P., Moore, C.J.,
Carpenter, E.J., Day, R.H., Thiel, M. &
Wilcox, C. (2023). A growing plastic smog, now
estimated to be over 170 trillion plastic particles
afloat in the world's oceans-Urgent solutions
required. PloS One, 18(3), e0281596. DOI:
10.1371/journal.pone.0281596
Gholamhosseini, A., Banaee, M., Sureda, A., Timar, N.,
Zeidi, A. & Faggio, C. (2023). Physiological
response of freshwater crayfish, Astacus leptodactylus exposed to polyethylene
microplastics at different temperature.
Comparative biochemistry and physiology.
Toxicology & pharmacology: CBP, 267, 109581.
DOI: 10.1016/j.cbpc.2023.109581
Gokul, T.A., Kumar, K., Veeramani, V., Arun, A.,
Balaji, P. & Faggio, C. (2023). Impact of
Particulate Pollution on Aquatic Invertebrates.
Environmental Toxicology and Pharmacology,
100, 104146. DOI: 10.1016/j.etap.2023.104146
Güllü, G. (2022.). Kentsel Dönüşümde Sıfır Atık
Yönetimi. İstanbul Sabahattin Zaim Üniversitesi
Fen Bilimleri Enstitüsü Dergisi, 4(2), 112-120.
DOI: 10.47769/izufbed.1131056
Hodgson, M., Brodt, W., Henderson, D., Loftness, V.,
Rosenfeld, A., Woods, J. & Wright, R. (2001).
Needs and Opportunities for Improving the
Health, Safety, and Productivity of Medical
Research Facilities. Environmental Health
Perspectives, 108 Suppl 6, 1003-1008. DOI:
10.1289/ehp.00108s61003
Impellitteri, F., Curpan, A., Plavan, G., Ciobica, A. &
Faggio, C. (2022). Hemocytes: A Useful Tool for
Assessing the Toxicity of Microplastics, Heavy
Metals, and Pesticides on Aquatic Invertebrates.
International Journal of Environmental Research
and Public Health, 19, 16830. DOI:
10.3390/ijerph192416830
Impellitteri, F., Yunko, K., Martyniuk, V., Matskiv, T.,
Lechachenko, S., Khoma, V., Mudra, A.,
Piccione, G., Stoliar, O. & Faggio, C. (2023).
Physiological and biochemical responses to
caffeine and microplastics in Mytilus
galloprovincialis. The Science of The Total
Environment, 890, 164075. DOI:
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Toplam 56 adet kaynakça vardır.
Ayrıntılar
Birincil Dil
Türkçe
Konular
Çevre Yönetimi (Diğer), Kirlilik ve Kontaminasyon (Diğer)
Salman, B., Yontuç, Y., & Sivri, N. (2024). Tek Sağlık Kapsamında COVID-19 Pandemisi Plastik Kirliliğine Nasıl Kaynak Oluşturdu? Güncel Araştırmalar ve Bilgi Boşluklarının Belirlenmesi. Journal of Anatolian Environmental and Animal Sciences, 9(1), 32-49. https://doi.org/10.35229/jaes.1404637
JAES/AAS-Journal of Anatolian Environmental and Animal Sciences/Anatolian Academic Sciences&Anadolu Çevre ve Hayvancılık Dergisi/Anadolu Akademik Bilimler-AÇEH/AAS