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基本信息Personal Information
教授
性别 : 男
毕业院校 : 中国科学院上海应用物理研究所
学历 : 博士研究生毕业
学位 : 博士学位
在职信息 : 在岗
所在单位 : 地理与环境科学学院
入职时间 : 2010年03月05日
学科 : 环境科学与工程
办公地点 : 浙江师范大学地环学院17-613办公室
Email :
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- [61]Impact of resuscitation promoting factor in membrane bioreactor treating high-saline phenolic wastewater: Performance robustness and Rpf-responsive bacterial populations.Chemical Engineering Journal.2019,Vol.357 :715-723
- [62]Nitrogen Doped Nanoporous Carbon Derived from Zizania Latifolia for Adsorptive Removal of Bisphenol A..Journal of nanoscience and nanotechnology.2019,Vol.19 (No.2):1026-1034
- [63]Formation of disinfection by-products during chlorination of organic matter from phoenix tree leaves and Chlorella vulgaris..Environmental pollution (Barking, Essex : 1987).2018,Vol.243 Part B :1887-1893
- [64]Modeling and predicting pKa values of mono-hydroxylated polychlorinated biphenyls (HO-PCBs) and polybrominated diphenyl ethers (HO-PBDEs) by local molecular descriptors.Chemosphere.2015,Vol.138 :829-836
- [65]Effect of nitrite on the formation of halonitromethanes during chlorination of organic matter from different origin.Journal of Hydrology
- [66]Shushu Feng.Effects of fractal roughness of membrane surfaces on interfacial interactions associated with membrane fouling in a membrane bioreactor.Bioresource Technology.2017,Vol.244 :560-568
- [67]Duncan, Josh.Thermophilic membrane bioreactors: A review.Bioresource Technology.2017,Vol.243 :1180-1193
- [68]Cai, Xiang.Membrane fouling in a submerged membrane bioreactor: An unified approach to construct topography and to evaluate interaction energy between two randomly rough surfaces.Bioresource Technology.2017,Vol.243 :1121-1132
- [69]Zhao, Leihong.Influences of acid–base property of membrane on interfacial interactions related with membrane fouling in a membrane bioreactor based on thermodynamic assessment.Bioresource technology.2016,Vol.214 :355-362
- [70]Xiaolu Qu.A facile method for simulating randomly rough membrane surface associated with interface behaviors.Applied Surface Science.2018,Vol.427 :915-921
- [71]Serge Bakire.Developing predictive models for toxicity of organic chemicals to green algae based on mode of action.Chemosphere.2018,Vol.190 :463-470
- [72]Xia, Siyuan.Water-dispersible, pH- and ultralong stable, biocompatible, and highly luminescent graphite-like poly(L-proline) dots: a cytoplasm staining reagent.RSC ADVANCES.2014,Vol.4 (No.45):23826-23830
- [73]Zhao LH.Novel indicators for thermodynamic prediction of interfacial interactions related with adhesive fouling in a membrane bioreactor.Journal of Colloid and Interface Science.2017,Vol.487 :320-329
- [74]Lvzhuo Dong.Preparation, characterization and photocatalytic activity of graphene doped SmVO<sub>4</sub> photocatalyst.Materials Letters.2014,Vol.122 :17-20
- [75]Tingting Li.Preparation and Characterization of Ag-Loaded SmVO<sub>4</sub> for Photocatalysis Application.Photochemistry and Photobiology.2013,Vol.89 (No.3):529-535
- [76]Dong, Lvzhuo.A comparative study on the photocatalytic activities of two visible-light plasmonic photocatalysts: AgCl-SmVO<sub>4</sub> and AgI-SmVO<sub>4</sub> composites..Applied Catalysis A: General.2014,Vol.472 :143-151
- [77]Tingting Li.Synthesis, characterization and photocatalytic activity of visible-light plasmonic photocatalyst AgBr-SmVO<sub>4</sub>.Applied Catalysis B:Environmental.2013,Vol.138-139 :95-103
- [78]He, Yiming.Efficient degradation of RhB over GdVO<sub>4</sub>/g-C<sub>3</sub>N<sub>4</sub> composites under visible-light irradiation..Chemical Engineering Journal.2013,Vol.215-216 :721-730
- [79]Jinxiong Yu.Synthesis of KNbO<sub>3</sub>/g-C<sub>3</sub>N<sub>4</sub> composite and its new application in photocatalytic H<sub>2</sub> generation under visible light irradiation.Journal of Materials Science.2018,Vol.53 (No.10):7453-7465
- [80]Jingxiong Yu.Giant enhancement of photocatalytic H<sub>2</sub> production over KNbO<sub>3</sub> photocatalyst obtained via carbon doping and MoS<sub>2</sub> decoration.International Journal of Hydrogen Energy.2018,Vol.43 (No.9):4347-4354