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2. ¹ã¶«ÌØÖ§ÍýÏë±¾ÍÁÁ¢Òì´´ÒµÍŶÓÏîÄ¿¡°¿óÇøÖØ½ðÊôÎÛȾԴͷ¿ØÖÆÓëÉú̬ÐÞ¸´¡±£¨2019BT02L218£©£¬£¬ÉúÎïÖÊÌ¿Ìú»ùÖÊÁ϶ԿóÇøÅ©ÌïÍÁÈÀÖØ½ðÊôÎÛȾ¶Û»¯»úÀí£¬£¬2020.06-2025.05£¬£¬¼ÓÈë¿ÎÌâÎ壬£¬ÔÚÑÐ

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1. Luo, H.; Wan, Y.; Cai, Y.; et al., Ferrate(VI) Activation with Nanoconfined Cu-Mg sites for Water Treatment: Selective Cu(III) Production via Support-Dependent Redox Catalysis. ACS ES&T Eng. 2024, 4, 7, 1712-1724

2. Luo, H.; Wan, Y.; Li, J. et al., MgxCu-biochar activated peroxydisulfate triggers reductive species for the reduction and enhanced electron-transfer degradation of electron-deficient aromatic pollutants. J. Hazard. Mater. 2023, 452, 131267.

3. Luo, H.; Wan, Y.; Cai, Y.; et al., Enhanced Phosphate Adsorption by Mg-Stirred Leaf Biochar in a Complex Water Matrix via Active MgO Facet Exposure. ACS ES&T Eng. 2022, 2, 12, 2254-2265

4. Luo, H.; Fu, H.; Yin, H.; et al., Carbon materials in persulfate-based advanced oxidation processes: The roles and construction of active sites. J. Hazard. Mater. 2022, 426, 128044. £¨2022ÄêÈÈÃÅÂÛÎÄ£¬£¬2023-2024Äê¸ß±»ÒýÂÛÎÄ£©

5. Luo, H.; Wan, Y.; Zhou, H.; et al., Mechanisms and influencing factors for electron transfer complex in metal-biochar nanocomposites activated peroxydisulfate. J. Hazard. Mater. 2022, 438, 129461.

6. Luo, H.; Wang, Y.; Wen, X.; et al., Key roles of the crystal structures of MgO-biochar nanocomposites for enhancing phosphate adsorption. Sci. Total Environ. 2021, 766, 142618.

7. Luo, H.; Lin, Q.; Zhang, X.; et al., Determining the key factors of nonradical pathway in activation of persulfate by metal-biochar nanocomposites for bisphenol A degradation. Chem. Eng. J. 2020, 391, 123555.

8. Luo, H.; Lin, Q.; Zhang, X.; et al., New insights into the formation and transformation of active species in nZVI/BC activated persulfate in alkaline solutions. Chem. Eng. J. 2019, 359, 1215-1223.


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