发表论文:
1. Wu, Z., Jian, J., Cai, J., Wang, C., Wang, B., Lou, Z., Liang, X., Wu, T., Liao, T., He, F.*, Liang, L., Wang, Z., 2026. Kinetically distinct sulfidation of hematite facets: from surface reactivity to mineralogical evolution. Geochim. Cosmochim. Acta 425, 58-67
2. Fan, Z., Li, X.*, Dong, Y., Lanson, B., Wu, Z., Ma, W., Li, Z., Zhou, J., Ding, Y., Wang, H., Zhu, Z., Li, J., Meng, X., Li, H., Chu, F., 2026. Distribution and evolution of manganese minerals in polymetallic nodules from the Clarion-Clipperton Fracture Zone: implications for nickel and copper enrichment. Geochim. Cosmochim. Acta
3. 余飞婷, 简家蕊, 王超君, 王彬斌, 吴重宽*, 何锋, 2026. 抗坏血酸介导的水铁矿硫化过程研究. 环境科学学报 46(01), 332-342
4. Wu, Z., Wang, C., Lanson, B., Dong, W., Jian, J., Yu, F., Wang, B., Zou, H., Chen, B., Sun, R., He, F.*, 2025. Enhanced immobilization of sorbed Pb and Cr during the Fe(ii)-catalyzed transformation of ferrihydrite. Environ. Sci.: Nano 12(9), 4259-4270
5. Wang, B., Zhu, Y., Dong, W., Wang, C., Yang, L., Fan, Y., Sun, T., Shan, Y., Wu, Z., He, F.*, 2025. Unveiling the Differential Impacts of S-nZVI and nZVI on Microbial Dechlorination of Trichloroethene by Dehalococcoides. Environ. Sci. Technol. 59(27), 14089-14102
6. Cai, S., Zhao, J., Tan, Y., Wu, Z., Chen, B., He, F.*, 2025. Unveiling the Role of Mackinawite and Fe0 Components in Arsenic(III) Removal by Sulfidated Zero-Valent Iron under Aerobic Conditions. Environ. Sci. Technol. 59(6), 3252-3262
7. Zou, H., Xu, W., Ying, S., Cai, S., Chen, B., Wang, P., Wu, Z., He, F.*, 2024. Capability and mechanism of Cr(VI) removal by phthalic acid modified sulfidated microscale zero valent iron. J. Environ. Chem. Eng. 12(6), 114214
8. Wu, Z., Zhang, T., Lanson, B., Yin, H., Cheng, D., Liu, P., He, F.*, 2023. Sulfidation of Ni-bearing goethites to pyrite: The effects of Ni and implications for its migration between iron phases. Geochim. Cosmochim. Acta 353, 158-170
9. Wu Z., Lanson B.*, Feng X., Yin H., Tan W., He F. and Liu F.* (2021) Transformation of the phyllomanganate vernadite to tectomanganates with small tunnel sizes: Favorable geochemical conditions and fate of associated Co. Geochim. Cosmochim. Acta 295, 224-236
10. Wu Z., Lanson B.*, Feng X., Yin H., Qin Z., Wang X., Chen Z., Wen W., Tan W. and Liu F.* (2020). Transformation of Ni-containing birnessite to tectomanganate: Influence and fate of weakly bound Ni(II) species. Geochim. Cosmochim. Acta271, 96-115.
11. Wu Z., Peacock C. L., Lanson B., Yin H., Zheng L., Chen Z., Tan W., Qiu G., Liu F.* and Feng X.* (2019). Transformation of Co-containing birnessite to todorokite: Effect of Co on the transformation and implications for Co mobility. Geochim. Cosmochim. Acta 246, 21-40.
12. Chen B., Wu Z., Shi S., Cai S., Yang D., Yang L., He F.*, Liang L. and Wang Z. (2023) Dual role of soil in dechlorination of soil-sorbed trichloroethene by CMC stabilized and sulfidated nanoscale zero-valent iron. Chem. Eng. J. 454, 140220.
13. Zhang S., Li H., Wu Z., Post J. E., Lanson B., Liu Y., Hu B., Wang M., Zhang L., Li H., Hong M., Liu F., Yin H.*, Effects of cobalt doping on the reactivity of hausmannite for As(III) oxidation and As(V) adsorption. J. Environ. Sci. 2022, 122, 217-226.
14. Zhang S., Li H., Wu Z., Post J. E., Lanson B., Elzinga E. J., Liu Y., Li H., Hong M., Liu F., Yin H.*, Effects of Co doping on the structure and physicochemical properties of hausmannite (Mn3O4) and its transformation during aging. Chem. Geol. 2021, 582, 120448.