Encyclopedia

  • Adsorption of Cr(VI) using synthetic poly(m-Phenylenediamine (cas 108-45-2))
  • Add time:08/27/2019         Source:sciencedirect.com

    Poly(m-phenylenediamine) (PmPD) with different oxidation state was successfully synthesized by the improved chemically oxidative polymerization. The function of oxidation state on Cr(VI) adsorption was systematically examined through adsorption experiments. Results showed that the Cr(VI) adsorptivity of all PmPD increased with decreasing the initial pH. When the oxidation state of PmPD was dropped, the equilibrium time for Cr(VI) adsorption was obviously shortened and its Cr(VI) removal and adsorption selectivity were profoundly obviously increased. Typically, PmPD with the lowest oxidation state in this research possesses the highest Cr(VI) removal of 500 mg g−1. Moreover, PmPD with lower oxidation state displays a potentially superior prospect in Cr(VI) treatment through preliminary experiments on 5 cycles of adsorption, column adsorption and practical wastewater treatment. The possible adsorption mechanism was discussed mainly according to characterizations (FTIR, XPS) and experiments, which together suggests that the Cr(VI) adsorption most possibly involve redox reaction, chelation and doping adsorption.

    We also recommend Trading Suppliers and Manufacturers of m-Phenylenediamine (cas 108-45-2). Pls Click Website Link as below: cas 108-45-2 suppliers


    Prev:Characterization and visible light driven photocatalytic activity of (M = Bi, La) MVO4@poly(o-phenylenediamine) nanocomposite
    Next: Synthesis of efficient electrocatalyst for oxygen reduction reaction by using poly(m-Phenylenediamine (cas 108-45-2)) as the interlayer spacer and the sources of N-doped carbon and MnO)

About|Contact|Cas|Product Name|Molecular|Country|Encyclopedia

Message|New Cas|MSDS|Service|Advertisement|CAS DataBase|Article Data|Manufacturers | Chemical Catalog

©2008 LookChem.com,License: ICP

NO.:Zhejiang16009103

complaints:service@lookchem.com Desktop View