18 results on '"Guo, Jiahua"'
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2. Occurrence, potential sources, and ecological risk assessment of microplastics in the inland river basins in Northern China
3. Environmental occurrence, biological effects, and health implications of zinc pyrithione: A review
4. Seasonal variation in structural and functional distribution of periphyton in a macrolide antibiotics-contaminated river
5. Metatranscriptomic profiles reveal the biotransformation potential of azithromycin in river periphyton
6. Adaptability of sulfur-disproportionating bacteria for mine water remediation under the pressures of heavy metal ions and high sulfate content
7. Effects of erythromycin and roxithromycin on river periphyton: Structure, functions and metabolic pathways
8. A novel steady-state model to quantitively assess the effect of pH elevation by dissimilatory sulfate reduction process in acidic waters in mining areas
9. Multimedia distribution of polycyclic aromatic hydrocarbons in the Wang Lake Wetland, China
10. Impacts of land use changes on ecosystem services at different elevations in an ecological function area, northern China
11. The transcriptomic analysis revealed sulfamethoxazole stress at environmentally relevant concentration on the mechanisms of toxicity of cyanobacteria Synechococcus sp
12. Transcriptomic analysis and transgenerational effects of ZnO nanoparticles on Daphnia magna: Endocrine-disrupting potential and energy metabolism
13. pH-dependent biological sulfidogenic processes for metal-laden wastewater treatment: Sulfate reduction or sulfur reduction?
14. Integrative analyses of transcriptomics and metabolomics in Raphidocelis subcapitata treated with clarithromycin
15. Prioritizing pharmaceuticals based on environmental risks in the aquatic environment in China
16. De novo transcriptomic analysis predicts the effects of phenolic compounds in Ba River on the liver of female sharpbelly (Hemiculter lucidus)
17. Realizing a high-rate sulfidogenic reactor driven by sulfur-reducing bacteria with organic substrate dosage minimization and cost-effectiveness maximization
18. Arsenite removal without thioarsenite formation in a sulfidogenic system driven by sulfur reducing bacteria under acidic conditions
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