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Artículo

Riverine Plastic Pollution in Asia: Results from a Bibliometric Assessment

Resumen

Rivers are important ecosystems, vital to the livelihoods of hundreds of millions of humans and other species. Despite their environmental, social, and economic importance, current use of rivers is unsustainable, due to a combination of solid waste and high levels of pollutants. Plastic materials are among the most predominant of such pollutants. Based on the need for additional research in this area, this study examines pressures put to rivers and explores trends related to riverine plastic pollution, with a focus on Asia. Apart from the bibliometric analysis, and relying on the collected information, examples describing the drivers of riverine plastic pollution in a sample of Asian countries are described, outlining the specific problem and its scope. Among some of the results obtained from it, mention can be made to the fact that much of the literature focuses on plastic pollution as a whole and less on one of its most significant ramifications, namely microplastics. Additionally, there is a need related to data availability on riverine plastic data and improving the understanding of transport mechanisms in relation to riverine plastic emission into the ocean. The results from this study illustrate the significance of the problems posed by plastic waste to Asian rivers and point out the fact that there are still significant gaps in respect of regulations and standards, which prevent improvements that are highlighted in this study. Based on the results of this bibliometric assessment, specific measures via which levels of riverine plastic pollution may be reduced are presented, bringing relevant new insights on this topic beyond the existing reviews.
Fabiano, Bruno (54790593300); Guastaferro, Mariangela (57221091243); Pettinato, Margherita (56694938500); Pasman, Hans J. (7003939527)
Towards strengthening resilience of organizations by risk management tools: A scientometric perspective on COVID-19 experience in a healthcare and industrial setting
2024
10.1002/cjce.25196
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85184201403&doi=10.1002%2fcjce.25196&partnerID=40&md5=7b1f6c44ed3c8ae243f0140f72ef5e7d
Civil, Chemical and Environmental Engineering Department (DICCA)—Genoa University, Genoa, Italy; TEES Mary Kay O’Connor Process Safety Center, Texas A&M University System, College Station, TX, United States
All Open Access; Hybrid Gold Open Access
Scopus
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