[1] Yanzhuo Zhang, Yutai Sun, Rui He, Jing Zhao, Jiqin Wang, Tonghuan Yu, Xiaozhuan Zhang, Alexandr V Bildyukevich. Effects of excess sludge composting process, environmentally persistent free radicals, and microplastics on antibiotics degradation efficiency of aging biochar. Bioresource Technology. 2024, 393:130070. [2] Yanzhuo Zhang, He, R., Sun, Y., Zhao, J., Zhang, X., Wang, J., & Bildyukevich, A. V. Influence of microplastics and environmentally persistent free radicals on the ability of biochar components to promote degradation of antibiotics by activated peroxymonosulfate. Environmental Pollution. 2024, 349, 123827. [3] Yanzhuo Zhang, Rui He, Jing Zhao, et al. 2023. Effect of aged biochar after microbial fermentation on antibiotics removal: Key roles of microplastics and environmentally persistent free radicals. Bioresource Technology, 374, 128779. [4] Yanzhuo Zhang, Mengqi Xu, Xiaoke Liu, et al. 2021. Regulation of biochar mediated catalytic degradation of quinolone antibiotics: Important role of environmentally persistent free radicals. Bioresour. Technol, 326,124780. [5] Yanzhuo Zhang, Muchen Yin, Xuedi Sun, et al. 2020. Implication for adsorption and degradation of dyes by humic acid: Light driven of environmentally persistent free radicals to activate reactive oxygen species. Bioresour. Technol, 307, 123183. [6] Yanzhuo Zhang, Xuedi Sun, Wei Bian, et al. 2020. The key role of persistent free radicals on the surface of hydrochar and pyrocarbon in the removal of heavy metal-organic combined pollutants. Bioresour. Technol, 318, 124046. [7] Yanzhuo Zhang, Mengqi Xu, Shengxu Liang, et al. 2021. Mechanism of persulfate activation by biochar for the catalytic degradation of antibiotics: Synergistic effects of environmentally persistent free radicals and the defective structure of biochar. Sci. Total Environ, 794, 148707. [8] Yanzhuo Zhang, Rui He, Jing Zhao, et al. 2023. Removal mechanism of tetracycline-Cr (Ⅵ) combined pollutants by different S-doped sludge biochars: Role of environmentally persistent free radicals. Chemosphere, 137856. [9] Yanzhuo, Zhang., Mengqi Xu, Rui He, et al. 2022. Effect of pyrolysis temperature on the activated permonosulfate degradation of antibiotics in nitrogen and sulfur-doping biochar: Key role of environmentally persistent free radicals. Chemosphere, 294, 133737. [10] Yanzhuo, Zhang., Shengxu, Liang., Rui, He., et al. 2022. Enhanced adsorption and degradation of antibiotics by doping corncob biochar/PMS with heteroatoms at different preparation temperatures: Mechanism, pathway, and relative contribution of reactive oxygen species. Journal of Water Process Engineering, 46, 102626. [11] Yanzhuo, Zhang and Jing, Zhao. 2022. Comparison of different S-doped biochar materials to activate peroxymonosulfate for efficient degradation of antibiotics. Chemosphere, 308, 136442. [12] Yanzhuo, Zhang., Jun, Li., Jing, Zhao., et al. 2018. Utilization of modified Dioscorea opposita Thunb. as a novel biosorbent for the adsorption of indigo carmine in aqueous solutions. RSC advances, 8: 30040-30048. [13] Yanzhuo, Zhang, Huilin, Wan., Jing, Zhao., et al. 2019. Biosorption of anionic and cationic dyes via raw and chitosan oligosaccharide-modified Huai Flos Chrysanthemum at different temperatures. RSC advances, 9: 11202-11211. [14] Yanzhuo Zhang, Haiqin Zhang, Jing Zhao, et al. 2023. Enhanced adsorption of fluoride ion by polyethylenimine modified diatomite in aqueous solution: adsorption optimization, models, and mechanism. Desalination and Water Treatment, 283: 130-140. [15] Yanzhuo Zhang, Jun Li, Jing Zhao, et al. Adsorption behavior of modified Iron stick yam skin with Polyethylene imine as a potential biosorbent for the removal of anionic dyes in single and ternary systems at low temperature. Bioresource Technology, 2016, 222: 285-293. [16] Yanzhuo Zhang, Jun Li, Guanghui Chen, et al. Efficient removal of crystal violet by diatomite and carbon in the fixed bed column: influence of different glucose/diatomite. RSC Advances, 2016, 6(56): 51337-51346. [17] Yanzhuo Zhang, Jun Li, Wenjing Li. Effect of particle size on removal of sunset yellow from aqueous solution by chitosan modified diatomite in a fixed bed column. RSC Advances, 2015, 5(104): 85673-85681. [18] Yanzhuo Zhang, Jun Li, Wenjing Li, et al. Utilization of inactivated aerobic granular sludge as a potential adsorbent for the removal of sunset yellow FCF [J]. Desalination and Water Treatment, 2016, 57(16): 7334-7344. [19] Yanzhuo Zhang, Jun Li, Wenjing Li, et al. Adsorption of sunset yellow FCF from aqueous solution by chitosan-modified diatomite. Water Science and Technology, 2015, 72(10): 1861-1868. [20] Yanzhuo, Zhang, Jun, Li, Guanghui, Chen, et al. Adsorption of crystal violet with diatomite earth&carbon by a modification of hydrothermal carbonization process. Water Science and Technology, 2016, 73(6): 1463-1471.
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