Identification and Microscopic Classification of Microplastics in Beach Sediment Sample at Dadar Chowpatty
Joshi, Pranoti C, Khanolkar, Chinmay, Sharma, Archana (2025). Identification and Microscopic Classification of Microplastics in Beach Sediment Sample at Dadar Chowpatty. https://doi.org/10.70130/cast.2024.7109
Joshi, Pranoti C, Khanolkar, Chinmay, Sharma, Archana. "Identification and Microscopic Classification of Microplastics in Beach Sediment Sample at Dadar Chowpatty.". DOI: 10.70130/cast.2024.7109.
Joshi, Pranoti C, Khanolkar, Chinmay, Sharma, Archana. "Identification and Microscopic Classification of Microplastics in Beach Sediment Sample at Dadar Chowpatty.". https://doi.org/10.70130/cast.2024.7109.
@article{joshi2025identification,
title = {Identification and Microscopic Classification of Microplastics in Beach Sediment Sample at Dadar Chowpatty},
author = {Joshi, Pranoti C and Khanolkar, Chinmay and Sharma, Archana},
year = 2025,
journal = {},
volume = 07,
number = 01,
pages = 117-134,
doi = 10.70130/cast.2024.7109,
url = oai:ojs2.pubs.rsyn.org:article/34,
language = en
}
TY - JOUR TI - Identification and Microscopic Classification of Microplastics in Beach Sediment Sample at Dadar Chowpatty AU - Joshi, Pranoti C AU - Khanolkar, Chinmay AU - Sharma, Archana PY - 2025 DA - 2025-02-01 VL - 07 IS - 01 SP - 117-134 DO - 10.70130/cast.2024.7109 UR - oai:ojs2.pubs.rsyn.org:article/34 AB - The current study involves the design of a feasible solution for cleaning beach sediments off microplastics. The results of this study will help spread awareness about this micro-menace threatening our societies. It also focuses on otherwise neglected and invisible aspects of plastic pollution. These findings may open up new avenues for research in this area. The long-term impacts of this study may involve the conservation of food quality in fisheries and ecosystems along the coast of Mumbai. During sampling, it was observed that the Dadar Beach was relatively less polluted or disturbed. Albeit having a beach that looks clean and does not look like has a plastic pollution issue, the study results clearly indicate exactly the opposite. The results show that various microplastic particles were identified across the length of the beach and that transect 1, which is shielded by rock reclamation debris, is less affected by active wave action and shows a lower density of microplastics than transect 2, which is readily subjected to active wave action. Based on the major microplastics found in sand, the presence of filaments and disintegration in large quantities, along with foam, can be attributed to fishing activities occurring in nearby oceans, along with some washed off disintegrated plastics whose source cannot be identified. LA - en ER -
π€ AI Key Takeaways & Research Insights
Automated AI Analysisπ‘ Core Finding
The current study involves the design of a feasible solution for cleaning beach sediments off microplastics.
π¬ Methodology
The results of this study will help spread awareness about this micro-menace threatening our societies.
π― Domain Impact
Based on the major microplastics found in sand, the presence of filaments and disintegration in large quantities, along with foam, can be attributed to fishing activities occurring in nearby oceans, a...
Abstract
The current study involves the design of a feasible solution for cleaning beach sediments off microplastics. The results of this study will help spread awareness about this micro-menace threatening our societies. It also focuses on otherwise neglected and invisible aspects of plastic pollution. These findings may open up new avenues for research in this area. The long-term impacts of this study may involve the conservation of food quality in fisheries and ecosystems along the coast of Mumbai. During sampling, it was observed that the Dadar Beach was relatively less polluted or disturbed. Albeit having a beach that looks clean and does not look like has a plastic pollution issue, the study results clearly indicate exactly the opposite. The results show that various microplastic particles were identified across the length of the beach and that transect 1, which is shielded by rock reclamation debris, is less affected by active wave action and shows a lower density of microplastics than transect 2, which is readily subjected to active wave action. Based on the major microplastics found in sand, the presence of filaments and disintegration in large quantities, along with foam, can be attributed to fishing activities occurring in nearby oceans, along with some washed off disintegrated plastics whose source cannot be identified.
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