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Using the Asian clam as an indicator of microplastic pollution in freshwater ecosystems

Environmental Pollution 2017 445 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Lei Su, Chelsea M. Rochman Lei Su, Huahong Shi, Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Huahong Shi, Chelsea M. Rochman Chelsea M. Rochman Huiwen Cai, Huiwen Cai, Chelsea M. Rochman Lei Su, Lei Su, Lei Su, Chenxi Wu, Chenxi Wu, Chelsea M. Rochman Huiwen Cai, Chelsea M. Rochman Chenxi Wu, Huiwen Cai, Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Prabhu Kolandhasamy, Lei Su, Huiwen Cai, Prabhu Kolandhasamy, Chelsea M. Rochman Prabhu Kolandhasamy, Lei Su, Prabhu Kolandhasamy, Prabhu Kolandhasamy, Lei Su, Lei Su, Huahong Shi, Chelsea M. Rochman Chelsea M. Rochman Lei Su, Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Huahong Shi, Huahong Shi, Chenxi Wu, Huahong Shi, Chenxi Wu, Prabhu Kolandhasamy, Chenxi Wu, Lei Su, Lei Su, Lei Su, Huiwen Cai, Lei Su, Huiwen Cai, Huiwen Cai, Huiwen Cai, Lei Su, Lei Su, Chelsea M. Rochman Chelsea M. 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Rochman Huiwen Cai, Huahong Shi, Huahong Shi, Huahong Shi, Chelsea M. Rochman Lei Su, Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Huahong Shi, Huahong Shi, Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Prabhu Kolandhasamy, Prabhu Kolandhasamy, Prabhu Kolandhasamy, Prabhu Kolandhasamy, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Chenxi Wu, Chenxi Wu, Huahong Shi, Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chenxi Wu, Chenxi Wu, Chenxi Wu, Chenxi Wu, Chenxi Wu, Lei Su, Lei Su, Lei Su, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Chelsea M. Rochman Huahong Shi, Huahong Shi, Chelsea M. Rochman Huahong Shi, Chenxi Wu, Huahong Shi, Huahong Shi, Chenxi Wu, Chenxi Wu, Chenxi Wu, Chelsea M. Rochman Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Chelsea M. Rochman Huahong Shi, Huahong Shi, Huahong Shi, Chelsea M. Rochman Huahong Shi, Chelsea M. Rochman Chelsea M. Rochman Huahong Shi, Huahong Shi, Huahong Shi, Lei Su, Huahong Shi, Chelsea M. Rochman Huahong Shi, Chenxi Wu, Prabhu Kolandhasamy, Huahong Shi, Chelsea M. Rochman Chelsea M. Rochman Huahong Shi, Huahong Shi, Huahong Shi, Huahong Shi, Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Huahong Shi, Chelsea M. Rochman Chelsea M. Rochman Lei Su, Huahong Shi, Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Chelsea M. Rochman Huahong Shi, Chelsea M. Rochman Chelsea M. Rochman Huahong Shi, Prabhu Kolandhasamy, Chelsea M. Rochman Chelsea M. Rochman Chenxi Wu, Chelsea M. Rochman

Summary

Researchers proposed the Asian clam as a bioindicator species for monitoring microplastic pollution in freshwater ecosystems, building on prior findings of high contamination rates in these organisms. Using a widely distributed filter feeder as a sentinel species could help standardize freshwater microplastic monitoring the way mussels are used in marine settings.

Study Type Environmental

Bioindicators play an important role in understanding pollution levels, bioavailability and the ecological risks of contaminants. Several bioindicators have been suggested for understanding microplastic in the marine environment. A bioindicator for microplastics in the freshwater environment does not exist. In our previous studies, we found a high frequency of microplastic pollution in the Asian clam (Corbicula fluminea) in Taihu Lake, China. In the present study, we conducted a large-scale survey of microplastic pollution in Asian clams, water and sediment from 21 sites in the Middle-Lower Yangtze River Basin from August to October of 2016. The Asian clam was available in all sites, which included diverse freshwater systems such as lakes, rivers and estuaries. Microplastics were found at concentrations ranging from 0.3-4.9 items/g (or 0.4-5.0 items/individual) in clams, 0.5-3.1 items/L in water and 15-160 items/kg in sediment. Microfibers were the most dominant types of microplastics found, accounting for 60-100% in clams across all sampling sites. The size of microplastics ranged from 0.021-4.83 mm, and microplastics in the range of 0.25-1 mm were dominant. The abundance, size distribution and color patterns of microplastics in clams more closely resembled those in sediment than in water. Because microplastic pollution in the Asian clam reflected the variability of microplastic pollution in the freshwater environments, we demonstrated the Asian clam as an bioindicator of microplastic pollution in freshwater systems, particularly for sediments.

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