Shan, X., Wang, H., Han, M., Zhang, N., Zhang, F., Lu, S., . . . Wu, F. (2025). Bioelectrochemistry increases the risk of resistance genes proliferation and transfer with sulfamethoxazole pressure decreasing in constructed wetlands: An overlooked double-edged effect. Journal of hazardous materials.
Style de citation Chicago (17e éd.)Shan, Xin, et al. Bioelectrochemistry Increases the Risk of Resistance Genes Proliferation and Transfer with Sulfamethoxazole Pressure Decreasing in Constructed Wetlands: An Overlooked Double-edged Effect. Journal of hazardous materials, 2025.
Style de citation MLA (9e éd.)Shan, Xin, et al. Bioelectrochemistry Increases the Risk of Resistance Genes Proliferation and Transfer with Sulfamethoxazole Pressure Decreasing in Constructed Wetlands: An Overlooked Double-edged Effect. Journal of hazardous materials, 2025.