![سامانه نشر مجلات علمی دانشگاه تهران](./data/logo.png)
تعداد نشریات | 162 |
تعداد شمارهها | 6,578 |
تعداد مقالات | 71,076 |
تعداد مشاهده مقاله | 125,705,254 |
تعداد دریافت فایل اصل مقاله | 98,939,674 |
Abundance and Characteristics of Microplastics in Surface Water of Lake Singkarak in Tanah Datar, West Sumatra, Indonesia | ||
Pollution | ||
مقاله 18، دوره 11، شماره 2، اردیبهشت 2025، صفحه 464-476 اصل مقاله (2.17 M) | ||
نوع مقاله: Original Research Paper | ||
شناسه دیجیتال (DOI): 10.22059/poll.2024.381179.2516 | ||
نویسندگان | ||
Deswati Deswati* 1؛ Yulizar Yusuf1؛ Zaki Aiwa Putra1؛ Adewirli Putra2 | ||
1Department of Chemistry, Faculty of Mathematics and Natural Science, Andalas University, P.O. Box 25163, Padang, Indonesia | ||
2Department of Medical Laboratory Technology, Syedza Saintika University, P.O. Box 25132, Padang, Indonesia | ||
چکیده | ||
The distribution of microplastics (MPs) in freshwater bodies is receiving increasing attention due to the discovery of MPs in lake organisms that can be consumed. The small size of MPs makes them tend to float in the water column, making it easy for them to enter and accumulate in lake organisms. However, research on MPs in freshwater areas is still lacking, and no studies have been conducted in Lake Singkarak. This study aims to analyze the abundance of microplastics in surface water samples from five sampling stations in Lake Singkarak. Visual analysis of MPs was conducted using a B-350 Optical Stereo Microscope, and polymer-type analysis of MPs was performed using Attenuated Total Reflectance-Fourier Transform Infrared (ATR-FTIR). The abundance of MP pollutants in surface water ranged from 117.5 to 202.5 particles L-1. The characteristics of MP pollutants based on shape, color, and size were predominantly fragments (42.81%), black (47.94%), and ≤100 µm in size (53.67%). The polymer types identified were polyethylene (PE), polypropylene (PP), polyethylene terephthalate (PET), and polyvinyl chloride (PVC). The results of this study are expected to provide valuable references for a better understanding of MP pollution in the surface water of Lake Singkarak. | ||
کلیدواژهها | ||
Abundance of microplastics Freshwater؛ Microplastic pollutants؛ Polymer type | ||
مراجع | ||
Alfonso, M. B., Scordo, F., Seitz, C., Manstretta, G. M. M., Ronda, A. C., Arias, A. H., Tomba, J. P., Silva, L. I., Perillo, G. M. E., & Piccolo, M. C. (2020). First evidence of microplastics in nine lakes across Patagonia (South America). Science of the Total Environment, 733, 139385. Andrady, A. L. (2011). Microplastics in the marine environment. Marine Pollution Bulletin, 62(8), 1596–1605. Barboza, L. G. A., Lopes, C., Oliveira, P., Bessa, F., Otero, V., Henriques, B., Raimundo, J., Caetano, M., Vale, C., & Guilhermino, L. (2020). Microplastics in wild fish from North East Atlantic Ocean and its potential for causing neurotoxic effects, lipid oxidative damage, and human health risks associated with ingestion exposure. Science of the Total Environment, 717, 134625. Besseling, E., Quik, J. T. K., Sun, M., & Koelmans, A. A. (2017). Fate of nano-and microplastic in freshwater systems: A modeling study. Environmental Pollution, 220, 540–548. Botterell, Z. L. R., Beaumont, N., Dorrington, T., Steinke, M., Thompson, R. C., & Lindeque, P. K. (2019). Bioavailability and effects of microplastics on marine zooplankton: A review. Environmental Pollution, 245, 98–110. https://doi.org/10.1016/J.ENVPOL.2018.10.065 Boucher, J., & Friot, D. (2017). Primary microplastics in the oceans: a global evaluation of sources (Vol. 10). Iucn Gland, Switzerland. Browne, M. A., Crump, P., Niven, S. J., Teuten, E., Tonkin, A., Galloway, T., & Thompson, R. (2011). Accumulation of microplastic on shorelines woldwide: Sources and sinks. Environmental Science and Technology, 45(21), 9175–9179. Cole, M., Lindeque, P., Fileman, E., Halsband, C., Goodhead, R., Moger, J., & Galloway, T. S. (2013). Microplastic ingestion by zooplankton. Environmental Science and Technology, 47(12), 6646–6655. Deswati, D., Kurnia Hamzani, B., Yusuf, Y., Fitri, W. E., & Putra, A. (2023). Detection of microplastic contamination in table salts in Padang City, Indonesia, and control strategies for choosing healthy salt. International Journal of Environmental Analytical Chemistry, 1–16. Deswati, D., Tetra, O. N., Febriani, U., Suparno, S., Pardi, H., & Putra, A. (2023). Detection of microplastic in sediments at beach tourism area of Muaro Lasak , Padang City , West Sumatra , Indonesia. AACL Bioflux, 16(5), 2765–2780. Deswati, D., Tetra, O. N., Hayati, M., Putra, A., Fitri, W. E., Suparno, S., & Pardi, H. (2023). Preliminary detection of microplastics in surface water of Maninjau Lake in Agam , Indonesia. AACL Bioflux, 16(5), 2601–2614. Deswati, D., Wisna, N. D., Zein, R., Tetra, O. N., Suparno, S., Pardi, H., & Suteja, Y. (2023). Preliminary study on microplastic pollution in water and sediment at the Beaches of Pariaman City, West Sumatra, Indonesia. AACL Bioflux, 16(1), 381–397. Deswati, D., Zein, R., Bunda, I. P., Putra, A., & Suparno, S. (2024). Preliminary Study of Reduction of Microplastics Contained in Salt Produced in Padang, Indonesia. Pollution, 10(1), 90–103. Ding, L., Mao, R. fan, Guo, X., Yang, X., Zhang, Q., & Yang, C. (2019). Microplastics in surface waters and sediments of the Wei River, in the northwest of China. Science of The Total Environment, 667, 427–434. Eerkes-Medrano, D., Thompson, R. C., & Aldridge, D. C. (2015). Microplastics in freshwater systems: A review of the emerging threats, identification of knowledge gaps and prioritisation of research needs. Water Research, 75, 63–82. Frere, L., Paul-Pont, I., Rinnert, E., Petton, S., Jaffré, J., Bihannic, I., Soudant, P., Lambert, C., & Huvet, A. (2017). Influence of environmental and anthropogenic factors on the composition, concentration and spatial distribution of microplastics: a case study of the Bay of Brest (Brittany, France). Environmental Pollution, 225, 211–222. Galafassi, S., Nizzetto, L., & Volta, P. (2019). Plastic sources: A survey across scientific and grey literature for their inventory and relative contribution to microplastics pollution in natural environments, with an emphasis on surface water. Science of the Total Environment, 693, 133499. Ganji, F., Kamani, H., Ghayebzadeh, M., & Abdipour, H. (2024). Evaluation of physical and chemical characteristics of wastewater and sludge of Zahedan urban wastewater treatment plant for reuse. Heliyon, 10(2), e24845. González-Pleiter, M., Velázquez, D., Edo, C., Carretero, O., Gago, J., Barón-Sola, Á., Hernández, L. E., Yousef, I., Quesada, A., & Leganés, F. (2020). Fibers spreading worldwide: Microplastics and other anthropogenic litter in an Arctic freshwater lake. Science of the Total Environment, 722, 137904. Hidalgo-Ruz, V., Gutow, L., Thompson, R. C., & Thiel, M. (2012). Microplastics in the marine environment: A review of the methods used for identification and quantification. Environmental Science and Technology, 46(6), 3060–3075. Holland, E. R., Mallory, M. L., & Shutler, D. (2016). Plastics and other anthropogenic debris in freshwater birds from Canada. Science of The Total Environment, 571, 251–258. https://tanahdatarkab.bps.go.id/. (n.d.). Hurley, R. R., Woodward, J. C., & Rothwell, J. J. (2017). Ingestion of Microplastics by Freshwater Tubifex Worms. Environmental Science and Technology, 51(21), 12844–12851. Kamani, H., Ghayebzadeh, M., Azari, A., & Ganji, F. (2024). Characteristics of Microplastics in a Hospital Wastewater Treatment Plant Effluent and Hazard Risk Assessment. Environmental Processes, 11(1), 15. Kamani, H., Ghayebzadeh, M., & Ganji, F. (2024a). Characteristics of Microplastics in the Sludge of Wastewater Treatment Plants. Pollution, 10(2), 653–663. Kamani, H., Ghayebzadeh, M., & Ganji, F. (2024b). Tracking and risk assessment of microplastics in a wastewater treatment plant. Water and Environment Journal, n/a(n/a). Käppler, A., Windrich, F., Löder, M. G. J., Malanin, M., Fischer, D., Labrenz, M., Eichhorn, K. J., & Voit, B. (2015). Identification of microplastics by FTIR and Raman microscopy: a novel silicon filter substrate opens the important spectral range below 1300 cm−1 for FTIR transmission measurements. Analytical and Bioanalytical Chemistry, 407(22), 6791–6801. Kole, P. J., Löhr, A. J., Van Belleghem, F. G. A. J., & Ragas, A. M. J. (2017). Wear and tear of tyres: a stealthy source of microplastics in the environment. International Journal of Environmental Research and Public Health, 14(10), 1265. Laksono, O. B., Suprijanto, J., & Ridlo, A. (2021). Kandungan Mikroplastik pada Sedimen di Perairan Bandengan Kabupaten Kendal. Journal of Marine Research, 10(2), 158–164. Law, K. L., & Thompson, R. C. (2014). Microplastics in the seas. Science, 345(6193), 144–145. Leslie, H. A., Van Velzen, M. J., Brandsma, S. H., Vethaak, A. D., Garcia-Vallejo, J. J., & Lamoree, M. H. (2022). Discovery and quantification of plastic particle pollution in human blood. Environment International, 163, 107199. Lie, S., Suyoko, A., Effendi, A. R., Ahmada, B., Aditya, Wira, H., Sallima, I. R., Arisudewi, N. P. A. N., Hadid, Illiyyien, N., Rahmasari, N., & Reza, A. (2018). Measurement of microplastic density in the Karimunjawa National Park, Central Java, Indonesia. Indo Pacific Journal of Ocean Life, 2(2), 54–58. Liu, Y., & Su, X. (2014). High precision phase measuring profilometry based on stereo microscope. Optik, 125(19), 5861–5863. Löder, M. G. J., Kuczera, M., Mintenig, S., Lorenz, C., & Gerdts, G. (2015). Focal plane array detector-based micro-Fourier-transform infrared imaging for the analysis of microplastics in environmental samples. Environmental Chemistry, 12(5), 563–581. Lusher, A., Hollman, P., & Mendoza-Hill, J. (2017). Microplastics in fisheries and aquaculture: status of knowledge on their occurrence and implications for aquatic organisms and food safety. FAO. Masura, J., Baker, J., Foster, G., & Arthur, C. (2015). Laboratory Methods for the Analysis of Microplastics in the Marine Environment: Recommendations for quantifying synthetic particles in waters and sediments (Issue July). McCormick, A., Hoellein, T. J., Mason, S. A., Schluep, J., & Kelly, J. J. (2014). Microplastic is an abundant and distinct microbial habitat in an urban river. Environmental Science and Technology, 48(20), 11863–11871. Nuelle, M. T., Dekiff, J. H., Remy, D., & Fries, E. (2014). A new analytical approach for monitoring microplastics in marine sediments. Environmental Pollution, 184, 161–169. Ogonowski, M., Gerdes, Z., & Gorokhova, E. (2018). What we know and what we think we know about microplastic effects–A critical perspective. Current Opinion in Environmental Science & Health, 1, 41–46. Revel, M., Châtel, A., & Mouneyrac, C. (2018). Micro (nano) plastics: a threat to human health? Current Opinion in Environmental Science & Health, 1, 17–23. Rochman, C. M., Tahir, A., Williams, S. L., Baxa, D. V., Lam, R., Miller, J. T., Teh, F. C., Werorilangi, S., & Teh, S. J. (2015). Anthropogenic debris in seafood: Plastic debris and fibers from textiles in fish and bivalves sold for human consumption. Scientific Reports, 5(September). Rodrigues, M. O., Abrantes, N., Gonçalves, F. J. M., Nogueira, H., Marques, J. C., & Gonçalves, A. M. M. (2018). Spatial and temporal distribution of microplastics in water and sediments of a freshwater system (Antuã River, Portugal). Science of the Total Environment, 633, 1549–1559. Sanchez, W., Bender, C., & Porcher, J. M. (2014). Wild gudgeons (Gobio gobio) from French rivers are contaminated by microplastics: Preliminary study and first evidence. Environmental Research, 128, 98–100. Setälä, O., Fleming-Lehtinen, V., & Lehtiniemi, M. (2014). Ingestion and transfer of microplastics in the planktonic food web. Environmental Pollution, 185, 77–83. Sianturi, K. P. T., Amin, B., & Galib, M. (2021). Microplastic Distribution in Sediments in Coastal of Pariaman City, West Sumatera Province. Asian Journal of Aquatic Sciences, 4(1), 73–79. Su, L., Xue, Y., Li, L., Yang, D., Kolandhasamy, P., Li, D., & Shi, H. (2016). Microplastics in Taihu Lake, China. Environmental Pollution, 216, 711–719. Suparno, S., Deswati, D., Fitri, W. E., Pardi, H., & Putra, A. (2024). Microplastics in the water of Batang Anai Estuary, Padang Pariaman Regency, Indonesia: Assessing effects on riverine plastic load in the marine environment. Environment and Natural Resources Journal (EnNRJ), 22(1), 55–64. Syamsu, D. A., Deswati, D., Syafrizayanti, S., Putra, A., & Suteja, Y. (2024). Presence of microplastics contamination in table salt and estimated exposure in humans. Global Journal of Environmental Science and Management, 10(1), 205–224. Thompson, R. C., Moore, C. J., Saal, F. S. V., & Swan, S. H. (2009). Plastics, the environment and human health: Current consensus and future trends. Philosophical Transactions of the Royal Society B: Biological Sciences, 364(1526), 2153–2166. Verma, R., Vinoda, K. S., Papireddy, M., & Gowda, A. N. S. (2016). Toxic pollutants from plastic waste-a review. Procedia Environmental Sciences, 35, 701–708. Wang, W., Ge, J., & Yu, X. (2020). Bioavailability and toxicity of microplastics to fish species: a review. Ecotoxicology and Environmental Safety, 189, 109913. Wright, S. L., Thompson, R. C., & Galloway, T. S. (2013). The physical impacts of microplastics on marine organisms: A review. Environmental Pollution, 178, 483–492. Wu, J., Jiang, Z., Liu, Y., Zhao, X., Liang, Y., Lu, W., & Song, J. (2021). Microplastic contamination assessment in water and economic fishes in different trophic guilds from an urban water supply reservoir after flooding. Journal of Environmental Management, 299, 113667. | ||
آمار تعداد مشاهده مقاله: 67 تعداد دریافت فایل اصل مقاله: 20 |