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Your search keyword '"Zhang, Tian"' showing total 17 results

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17 results on '"Zhang, Tian"'

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1. Effects of heavy metals on the adsorption of ciprofloxacin on polyethylene microplastics: Mechanism and toxicity evaluation.

2. Cu-MOF-derived Cu nanoparticles decorated porous N-doped biochar for low-temperature H2S desulfurization.

3. Zr-doped MIL-101(Fe)/Graphene oxide nanocomposites: An efficient and water-stable MOF-based adsorbent for As(V) adsorption in aqueous solution.

4. Fe-MOFs/graphene oxide-derived magnetic nanocomposite for enhanced adsorption of As(V) in aqueous solution.

5. Ultrafast removal of toxic Cr(VI) by the marine bacterium Vibrio natriegens.

6. Synthesis of CuSiO3-loaded P-doped porous biochar derived from phytic acid-activated lemon peel for enhanced adsorption of NH3.

7. One-step synthesis of ZnFe2O4-loaded biochar derived from leftover rice for high-performance H2S removal.

8. Remediation of arsenic contaminated water and soil using mechanically (ball milling) activated and pyrite-amended electrolytic manganese slag.

9. A novel passivator based on electrolytic manganese residues and calcite for arsenic sorption and heavy metal passivation of contaminated soil.

10. Efficient removal of Cd(II), Cu(II), and Pb(II) in aqueous solutions by exhausted copper slag supported sulfidized nanoscale zerovalent iron.

11. MgFe2O4-loaded N-doped biochar derived from waste cooked rice for efficient low-temperature desulfurization of H2S.

12. Secondary resource utilization of exhausted copper slags (ECSs): Efficient removal of Cr (VI) from aqueous solutions and removal mechanism.

13. One-Pot synthesis of MWCNTs/Fe-MOFs nanocomposites for enhanced adsorption of As(V) in aqueous solution.

15. Underoil superhydrophilic CuC2O4@Cu-MOFs core-shell nanosheets-coated copper mesh membrane for on-demand emulsion separation and simultaneous removal of soluble dye.

16. Functionally-Designed Chitosan-based hydrogel beads for adsorption of sulfamethoxazole with light regeneration.

17. Template-free synthesis of an eco-friendly flower-like Mg/Al/Fe-CLDH for efficient arsenate removal from aqueous solutions.

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