18 results on '"Feng, Jiao"'
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2. Microbial assemblies associated with temperature sensitivity of soil respiration along an altitudinal gradient
3. Benthic invertebrate and microbial biodiversity in sub-tropical urban rivers: Correlations with environmental variables and emerging chemicals
4. Long-term phosphorus addition alters plant community composition but not ecosystem stability of a nitrogen-enriched desert steppe
5. Highly selective molecularly imprinted-electrochemiluminescence sensor based on perovskite/Ru(bpy)32+ for simazine detection in aquatic products
6. Response of cbbL-harboring microorganisms to precipitation changes in a naturally-restored grassland
7. (Eco)toxicological tests for assessing impacts of chemical stress to aquatic ecosystems : Facts, challenges, and future
8. Double constrained ordination for assessing biological trait responses to multiple stressors: A case study with benthic macroinvertebrate communities
9. Benthic invertebrate and microbial biodiversity in sub-tropical urban rivers: Correlations with environmental variables and emerging chemicals
10. Shift in functional plant groups under flooding impacted ecosystem C and N dynamics across riparian zones in the Three Gorges of China
11. Ecological drivers of methanotrophic communities in paddy soils around mercury mining areas
12. Microbial taxonomic and functional attributes consistently predict soil CO2 emissions across contrasting croplands
13. Inhibited enzyme activities in soil macroaggregates contribute to enhanced soil carbon sequestration under afforestation in central China
14. Occurrence and ecological risk assessment of emerging organic chemicals in urban rivers: Guangzhou as a case study in China
15. Joint antibacterial activity of soil-adsorbed antibiotics trimethoprim and sulfamethazine
16. Field dissipation and risk assessment of typical personal care products TCC, TCS, AHTN and HHCB in biosolid-amended soils
17. (Eco)toxicological tests for assessing impacts of chemical stress to aquatic ecosystems: Facts, challenges, and future.
18. Microbial taxonomic and functional attributes consistently predict soil CO 2 emissions across contrasting croplands.
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