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Environmental Sciences
Dunia A. Al Farraj et al.
Summary: This study aimed to evaluate the biodegradation efficiency of anthracene by selected marine bacteria. Sphingomonas sp. KSU05 was identified as the most effective biodegrading strain, capable of surviving up to 500 mg/L of anthracene and rapidly degrading it within 96 hours. Optimization of culture conditions enhanced the anthracene biodegradation to 90.0% at pH 7.0, 0.3 mM tween-80 concentration, and 5.5% glucose concentration.
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Environmental Sciences
Rajkumar L. Vasanthi et al.
Summary: This study investigated the distribution of microplastics in sediment and its impact on Perna viridis from Kasimedu, Chennai, India. The results indicated that fibers were the predominant type of microplastics observed, causing significant damage in the gills and digestive diverticula of the green mussels.
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Environmental Sciences
Jeevanandam Vaishnavi et al.
Summary: This study integrated EK and BEK technologies for diesel hydrocarbon bioremediation using Staphylococcus epidermidis EVR4. The results showed that this bacterial strain could efficiently degrade diesel in a short period of time, demonstrating great potential for application.
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Environmental Sciences
Harshavardhan Mohan et al.
Summary: The RGOCdS nanocomposite synthesized through solvothermal process showed high efficiency in degrading MeP and good recyclability. Photocatalytic experiments demonstrated the superior degradation performance of RGOCdS compared to pure CdS, without residual intermediates.