Shichao Cai, Yu Tan, Hongyi Li, Liwei Yang, Bo Chen, Feng He
Zero-valent iron (ZVI, Fe 0 ) can effectively reduce a variety of chlorinated hydrocarbons. However, ZVI is incapable of dechlorinating 1,2-dichloroethane (1,2-DCA), a commonly found contaminant in groundwater, and the existing ZVI modification methods have little effect on this predicament. In this study, we prepared ZVI composites modified with Fe–N 4 coordination structure (Fe 0 @FeNC), which exhibited outstanding dechlorination performance toward 1,2-DCA. Fe 0 @FeNC (1 g/L) can degrade 94% of 1,2-DCA (10 mg/L) within 37 days, with an ethene selectivity of nearly 100%, whereas nanoscale ZVI (nZVI) or even Pd-doped nZVI and sulfidated ZVI cannot degrade 1,2-DCA. The results from X-ray diffraction patterns and Mössbauer spectra confirmed the presence of Fe 0 and Fe–N 4 coordination structure in the Fe 0 @FeNC, which were proven to be the electron donor and dechlorination active center for 1,2-DCA dechlorination, respectively. Theoretical calculation reveals that the Fe–N 4 coordination structure can reduce the free energy required for 1,2-DCA reduction, thus allowing 1,2-DCA to utilize electrons provided by Fe 0 to achieve dechlorination. These findings can guide the design of ZVI-based materials to achieve in situ abiotic remediation of 1,2-DCA-contaminated groundwater.