17 results on '"Zhang, Xiaolin"'
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2. Fe-N doping boosts the performance of extracellular electron transfer from lignocellulose reconstruction-based microbe-electrode in microbial electrochemical systems
3. Establishment of low-carbon microbial network to enhance phenol removal in microbial electrochemical systems with whole process carbon source limitation
4. Hierarchical columnar ZnIn2S4/BiVO4 Z-scheme heterojunctions with carrier highway boost photocatalytic mineralization of antibiotics
5. Catalytic aerobic oxidation of P(I)/P(III) into P(V) over PdNi10 as a low-cost alternative catalyst rivaling Pd
6. Ferrihydrite enhanced the electrogenic hydrocarbon degradation in soil microbial electrochemical remediation
7. Construction of conductive network using magnetite to enhance microflora interaction and petroleum hydrocarbons removal in plant-rhizosphere microbial electrochemical system
8. Highly efficient removal of arsenite from water by using renewable sub-5 nm Zr-Mn binary oxides confined inside gel-type ion exchanger
9. Selective removal of organic phosphonates via coupling hyper-cross-linked resin with nanoconfined hydrated oxides
10. A nitrogen supplement to regulate the degradation of petroleum hydrocarbons in soil microbial electrochemical remediation
11. CeO2-modified MIL-101(Fe) for photocatalysis extraction oxidation desulfurization of model oil under visible light irradiation
12. Enhanced water decontamination from methylated arsenic by utilizing ultra-small hydrated zirconium oxides encapsulated inside gel-type anion exchanger
13. Nanoconfined hydrous titanium oxides with excellent acid stability for selective and efficient removal of As(V) from acidic wastewater
14. Selective sequestration of p-arsanilic acid from water by using nano-hydrated zirconium oxide encapsulated inside hyper-cross-linked anion exchanger
15. FeS2/H2O2 mediated water decontamination from p-arsanilic acid via coupling oxidation, adsorption and coagulation: Performance and mechanism
16. Enhanced water decontamination from methylated arsenic by utilizing ultra-small hydrated zirconium oxides encapsulated inside gel-type anion exchanger
17. One-step removal of Cr(VI) at alkaline pH by UV/sulfite process: Reduction to Cr(III) and in situ Cr(III) precipitation
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