近 五 年 论 文 著 作 专 利 发 明 成 果 | [1] Na Liu, Yuting Zhang. et al., Removal mechanisms of aqueous Cr(VI) using apple wood biochar: a spectroscopic study[J]. Journal of Hazardous Materials, 2020, 384: 121371. (SCI一区, IF: 12.2)(共同一作) [2] Yuting Zhang, Na Liu*, et al., Enhanced removal of aqueous Cr(VI) by a green synthesized nanoscale zero-valent iron supported on oak wood biochar[J]. Chemosphere, 2020, 245: 125542. (SCI二区, IF: 8.1) [3] Yuting Zhang, Na Liu*, et al., Novel carbothermal synthesis of Fe, N co-doped oak wood biochar (Fe/N-OB) for fast and effective Cr(VI) removal[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2020. (SCI二区, IF: 4.9) [4] Yuting Zhang, Na Liu, et al., Molecular-level investigation on removal mechanisms of aqueous hexavalent chromium by pine needle biochar [J]. Arabian Journal of Chemistry, 2023, 16(8): 104966. (SCI二区, IF: 5.3) [5] Yuting Zhang, Shuang Liang*, et al., Removal performance and mechanisms of aqueous Cr (VI) by biochar derived from waste hazelnut shell [J]. Environmental Science and Pollution Research, 2023. (SCI三区, IF: 5.8) [6] Yuting Zhang, Zhongmou Liu*, et al., Green synthesized biochar supported nZVI from mango kernel residue for aqueous hexavalent chromium removal: Performance, mechanism, and regeneration[J]. Chinese Journal of Chemical Engineering, 2024, 71: 91-101. (SCI三区, IF: 3.7) [7] Yuting Zhang, Shuang Liang*, et al., Urea-modified hazelnut shell biochar (N-HSB) for efficient Cr(VI) removal: Performance and mechanism insights[J]. Journal of Contaminant Hydrology, 2024, 266: 104414. (SCI三区,IF: 3.5) |