supported by the National Natural Science Foundation of China(Nos.42030709 and 42377303);the National Key Research and Development Program of China(No.2020YFC1806803).
The capability of traditional ligand in countering rapid passivation on nanoscale zero-valent iron(nZVI)surface is inadequate,and the precise electron transfer mechanism remains elusive.In this study,we reported that ...
supported by the National Key Research and Development Program of China(Nos.2022YFA1205602,and 2023YFC3707801);the National Natural Science Foundation of China(Nos.U22A20402,22376073,21936003 and 22306119);China Postdoctoral Science Foundation(No.2023T160419).
Nano zero-valent iron(nZVI)is a promising phosphate adsorbent for advanced phosphate removal.However,the rapid passivation of nZVI and the low activity of adsorption sites seriously limit its phosphate removal perform...
National Natural Science Foundation of China(52070094);project entrusted by Nanjing University&Yancheng Academy of Environment Protection Technology and Engineering(HX202112220004);First-class undergraduate course construction project and Student Innovation and Entrepreneurship Training program of Nanchang University(202210403102 and S202210403083).
Nanoscale zerovalent iron(nZVI)has garnered significant attention as an efficient advanced oxidation activator,but its practical application is hindered by aggregation and oxidation.Coating nZVI with carbon can effect...