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Journal of Colloid and Interface Science|June 29, 2010
Use of hydrous manganese dioxide as a potential sorbent for selective removal of lead, cadmium, and zinc ions from waterQin Su, Bingcai Pan, Shunli Wan, et al.The Science of the Total Environment|November 7, 2017
Enhanced lead and cadmium removal using biochar-supported hydrated manganese oxide (HMO) nanoparticles: Behavior and mechanismShunli Wan, Jiayu Wu, Shanshan Zhou, et al.ACS Omega|November 16, 2020
Enhanced Removal of Heavy Metals from Water by Hydrous Ferric Oxide-Modified BiocharYan Li, Liangmin Gao, Zhongxiang Lu, et al.ACS Omega|May 13, 2024
Remarkably Enhanced Phosphate Sequestration from Waters by Biochar with High-Density Quaternary Ammonium GroupsYan Li, Lili Dong, Xingyu Ren, et al.Journal of Hazardous Materials|April 24, 2016
Rapid and highly selective removal of lead from water using graphene oxide-hydrated manganese oxide nanocompositesShunli Wan, Feng He, Jiayu Wu, et al.Nanomaterials (Basel, Switzerland)|September 9, 2023
In Situ Fabrication of CdS/Cd(OH)2 for Effective Visible Light-Driven PhotocatalysisRan Chen, Liping Qian, Shengyou Xu, et al.Journal of Hazardous Materials|August 14, 2021
Cadmium removal by FeOOH nanoparticles accommodated in biochar: Effect of the negatively charged functional groups in hostShunli Wan, Yan Li, Shuo Cheng, et al.Environmental Pollution (Barking, Essex : 1987)|February 4, 2026
Energy-vortex-momentum coupling bridges hydrodynamics and mass transfer of perfluoroalkyl acidsYixin Ma, Zulin Hua, Limei Zhong, et al.Chemosphere|November 13, 2016
Phosphate removal by lead-exhausted bioadsorbents simultaneously achieving lead stabilizationShunli Wan, Jiayu Wu, Feng He, et al.The Science of the Total Environment|April 23, 2021
Development of an acidized biochar-supported hydrated Fe(III) oxides for highly efficient cadmium and copper sequestration from waterYan Li, Liangmin Gao, Yu Wang, et al.Pageof 2