Erhai Lake, a highland lake situated in Southwest China, provides critical aquatic protein sources for the local community, and its preservation is vital due to the sensitivity of alpine freshwater ecosystems to disturbance. However, there is a lack of research on the contamination status of methylmercury (MeHg) in aquatic organisms of the Erhai Lake Basin. MeHg concentrations in important commercial fish species from the Erhai Lake were examined, and the potential health risks associated with human consumption were assessed. Our results showed significant inter-species differences in fish muscle MeHg: the carnivorous S. asotus exhibited the highest level (303 ng/g; ww), while that of the detritivorous R. ocellatus was the lowest (3.86 ng/g). Moreover, MeHg concentrations in P. fulvidraco and C. auratus collected from the Luoshi River (a major tributary of Erhai Lake) were significantly higher compared to those from the Erhai Lake, indicating possible river-based input of MeHg into the Erhai Lake. Additionally, our study revealed a significant positive correlation between the MeHg levels and the length as well as weight of the examined fish species. All the fish species analyzed in our study had MeHg concentrations within the limits of China's food safety standard. Nevertheless, a relatively low consumption quantity of 16 g per day of certain species (i.e., S. asotus) may still pose potential health risks especially for children. The present study provides baseline data for MeHg monitoring and risk assessment in the Erhai Lake Basin, and warrants continued monitoring and source investigation.
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Environ Sci Technol
December 2024
School of Environmental Science and Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China.
The extensive use and longevity of nylon plastics pose substantial challenges for plastic management, recycling, and pollution control. Depolymerization and monomer recycling are potential solutions for valorizing waste plastics, but they often rely on complex and costly catalysts. Additionally, various additives in nylon plastics can negatively impact the catalyst efficiency.
View Article and Find Full Text PDFWater Res
December 2024
School of Environmental Science and Engineering, Shanghai Jiao Tong University, Shanghai, 200240, PR China; National Observation and Research Station of Erhai Lake Ecosystem in Yunnan, Dali, 671000, PR China; Shanghai Jiao Tong University Yunnan Dali Research Institute, Dali, 671000, PR China. Electronic address:
Global warming has intensified the distinction between dry and wet seasons in monsoonal climates. The synergistic effect of high temperatures and rainfall during the wet season promotes the release of endogenous nitrogen (N) and eutrophication within lake ecosystems. However, the seasonal variations in sediments N speciation and bioavailability, and their intrinsic connection to release potential, remain unclear.
View Article and Find Full Text PDFBioresour Technol
December 2024
School of Environmental and Chemical Engineering, Shanghai University, Shanghai 200444, Shanghai, PR China; School of Environment and Safety Engineering, Fuzhou University, Fuzhou 350108, Fujian, PR China.
Efficient phosphate adsorption from eutrophic waters remains challenging, fundamentally due to inherent trade-off in common adsorbents: high-binding energy between adsorbent and phosphate compromises reusability while low-binding energy suppresses selectivity. Herein, an innovative arginine-functionalized imprinted aerogel (AFIA-1:4) was fabricated by click chemistry and imprinting modification for overcoming this trade-off through synergistic weak interactions. Results shown that AFIA-1:4 exhibited high adsorption capacity (Q of 40.
View Article and Find Full Text PDFSci Total Environ
December 2024
School of Engineering, Dali University, Yunnan 671003, China; National Observation and Research Station of Erhai Lake Ecosystem in Yunnan, Dali 671006, China.; Air-Space-Ground Integrated Intelligence and Big Data Application Engineering Research Center of Yunnan Provincial Department of Education, Yunnan 671003, China. Electronic address:
Ennearthron acuticornum sp. nov. and Ennearthron jizushanense sp.
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