李倩
个人信息Personal Information
教授 博士生导师 硕士生导师
性别:女
毕业院校:山东大学
学历:博士研究生毕业
学位:工学博士学位
在职信息:在职
所在单位:环境科学与工程学院
入职时间:2008-07-16
学科:环境科学与工程
办公地点:山东大学青岛校区淦昌苑E座236
联系方式:13075367336
电子邮箱:qianli@sdu.edu.cn
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- [21] 刘新新. [Coagulation characteristics of polyferric chloride-poly (epichlorohydrin-dimethylamine) composite flocculant for simulated water treatment].. 环境科学 , 34, 3493-501, 2013.
- [22] 郭雅丽. Multiple bimetallic (Al-La or Fe-La) hydroxides embedded in cellulose/graphene hybrids for uptake of fluoride with phosphate surroundings. JOURNAL OF HAZARDOUS MATERIALS, 379, 2019.
- [23] 安宁. Hydrogel-based solar-driven interfacial evaporation: Current progress and future challenges. Green Energy and Resources, 2023.
- [24] 苏瑞典. Revealing the Generation of High-Valent Cobalt Species and Chlorine Dioxide in the Co3O4?Activated Chlorite Process: Insight into the Proton Enhancement Effect. Environmental Science & Technology , 57, 2023.
- [25] 王志炜. Removal of norfloxacin from high salinity wastewater by Hf-porphyrin MOF with missing linker defects: Insights into anion trapping and photoinduced charge transfer effects. Chemical Engineering Journal, 2023.
- [26] 宋晓阳. Visible light-driven chlorite activation process for enhanced sulfamethoxazole antibiotics degradation, antimicrobial resistance reduction and biotoxicity elimination. Chemical Engineering Journal, 2023.
- [27] 陈翼. Oxygen vacancies-mediated CuO@N-doped carbon nanocomposites for non-radical-dominated photothermal catalytic degradation of contaminants. JOURNAL OF CLEANER PRODUCTION, 2023.
- [28] 丁春露. Activation of peroxydisulfate via Fe@sulfur-doped carbon-supported nanocomposite for degradation of norfloxacin: Efficiency and mechanism. Chemical Engineering Journal, 2023.
- [29] 苏瑞典. Visible-Light Photocatalytic Chlorite Activation Mediated by Oxygen Vacancy Abundant Nd-Doped BiVO4 for Efficient Chlorine Dioxide Generation and Pollutant Degradation. ACS Applied Materials & Interfaces, 2022.
- [30] 刘震. Revealing the fundamental role of MoO2 in promoting efficient and stable activation of persulfate by iron carbon based catalysts: Efficient Fe2+/Fe3+cycling to generate reactive species. Water Research, 2022.
- [31] 安宁. Efficient water purification and desalination using hydrogel and aerogel solar evaporators based on different carbon materials. Separation and Purification Technology, 2022.
- [32] 宋晓阳. Visible light-driven chlorite activation process for enhanced sulfamethoxazole antibiotics degradation, antimicrobial resistance reduction and biotoxicity elimination. Chemical Engineering Journal, 452, 2022.
- [33] 李倩. Biomass hydrogels combined with carbon nanotubes for water purification via efficient and continuous solar-driven steam generation. Science of the total Environment, 155757, 2022.
- [34] 李倩. In situ synthesis of Fe-N co-doped carbonaceous nanocomposites using biogas residue as an effective persulfate activator for remediation of aged petroleum contaminated soils. Journal of Hazardous Materials, 128963, 2022.
- [35] 李倩. The enhanced catalytic degradation of sulfamethoxazole over Fe@nitrogen-doped carbon-supported nanocomposite: Insight into the mechanism. Chemical Engineering Journal, 135784, 2022.
- [36] 苏瑞典. Visible-Light Photocatalytic Chlorite Activation Mediated by Oxygen Vacancy Abundant Nd-Doped BiVO4 for Efficient Chlorine Dioxide Generation and Pollutant Degradation. ACS applied materials and interfaces, 14, 31920-31932, 2022.
- [37] 王燕. How multi-walled carbon nanotubes in wastewater influence the fate of coexisting antibiotic resistant genes in the subsequent disinfection process. CHEMOSPHERE, 302, 2022.
- [38] 李倩. Zr6O8-porphyrinic MOFs as promising catalysts for the boosting photocatalytic degradation of contaminants in high salinity wastewater. Chemical Engineering Journal, 135883, 2022.
- [39] 韩飞. Enhancing robustness of halophilic aerobic granule sludge by granular activated carbon at decreasing temperature. CHEMOSPHERE Journal, 292, 2022.
- [40] 李倩. Enhanced degradation of bisphenol F in a porphyrin-MOF based visible-light system under high salinity condition. Chemical Engineering Journal, 132106, 2022.