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191.
This study aimed to (1) monitor the occurrence and spatiotemporal variations of 100 pesticides in sediments collected monthly from July 2018 to June 2019 from sampling sites in El-Rahawy, Sabal, and Tala, along the Rosetta branch of the Nile River, Egypt, and (2) perform an ecological risk assessment for aquatic organisms upon exposure to the detected sediment pesticides based on the risk quotient (RQ) method. Out of the 100 pesticides monitored, 16 pesticides belonging to seven chemical families were detected, and 55% of the sediment samples were contaminated with one or more pesticide residues. The mean concentration (mg/kg dry weight (dw)) and detection frequency (%) of the four most frequently detected pesticides in the sediment samples were as follows: chlorpyrifos (0.18 mg/kg dw and 34%), p,p′-DDE (0.018 mg/kg dw and 30%), cypermethrin (0.03 mg/kg dw and 14%), and deltamethrin (0.026 mg/kg dw and 13%). The spatial distribution exhibited that El-Rahawy had the highest pesticide load (2.86 mg/kg dw) among the studied sites, whereas the temporal variations revealed that the highest total pesticide concentrations were detected in winter season (1.73 mg/kg dw). Meanwhile, 12 pesticides showed high RQs (>1), posing a potential ecological risk to aquatic species that live and feed on such sediments. 相似文献
192.
Colonization dynamics in trophic-functional structure of periphytic protist communities in coastal waters 总被引:1,自引:0,他引:1
Wei Zhang Henglong Xu Yong Jiang Mingzhuang Zhu Khaled A. S. Al-Rasheid 《Marine Biology》2012,159(4):735-748
The colonization dynamics in trophic-functional patterns of periphytic protist communities was studied in coastal waters of
the Yellow Sea, northern China, from May to June, 2010. The periphytic protists represented different trophic-functional structures
during colonization process. Only certain trophic-functional groups (e.g., photoautotrophs, algivores and non-selectives)
occurred within the protist communities with low species number and abundance at the initial stage (1–3 days), while more
trophic-functional groups (e.g., photoautotrophs, algivores, non-selectives and raptors) contributed to the communities with
increased and peaked species number and abundance at the transitional (7–10 days) and equilibrium (14–28 days) stages, respectively.
All heterotrophic groups were significantly fitted the MacArthur–Wilson model in colonization curves and represented higher
species number and colonization rates at a depth of 1 m than at 3 m. These results may provide necessary understandings for
ecological researches and monitoring programs using periphytic protists with different colonization ages in marine ecosystems. 相似文献