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Xiuping Zhu
Xiuping Zhu
Professor, Fudan University
Bestätigte E-Mail-Adresse bei fudan.edu.cn
Titel
Zitiert von
Zitiert von
Jahr
Advanced treatment of biologically pretreated coking wastewater by electrochemical oxidation using boron-doped diamond electrodes
X Zhu, J Ni, P Lai
Water research 43 (17), 4347-4355, 2009
3532009
Wastewater treatment for carbon capture and utilization
L Lu, JS Guest, CA Peters, X Zhu, GH Rau, ZJ Ren
Nature Sustainability 1 (12), 750-758, 2018
3302018
Preparation and characterization of PbO2 electrodes doped with different rare earth oxides
J Kong, S Shi, L Kong, X Zhu, J Ni
Electrochimica Acta 53 (4), 2048-2054, 2007
308*2007
Essential explanation of the strong mineralization performance of boron-doped diamond electrodes
X Zhu, M Tong, S Shi, H Zhao, J Ni
Environmental science & technology 42 (13), 4914-4920, 2008
2752008
Emerging electrochemical and membrane-based systems to convert low-grade heat to electricity
M Rahimi, AP Straub, F Zhang, X Zhu, M Elimelech, CA Gorski, BE Logan
Energy & Environmental Science 11 (2), 276-285, 2018
2022018
Simultaneous processes of electricity generation and p-nitrophenol degradation in a microbial fuel cell
X Zhu, J Ni
Electrochemistry Communications 11 (2), 274-277, 2009
2002009
Microbial community composition is unaffected by anode potential
X Zhu, MD Yates, MC Hatzell, H Ananda Rao, PE Saikaly, BE Logan
Environmental science & technology 48 (2), 1352-1358, 2014
1972014
Palm oil mill effluent treatment using a two-stage microbial fuel cells system integrated with immobilized biological aerated filters
J Cheng, X Zhu, J Ni, A Borthwick
Bioresource technology 101 (8), 2729-2734, 2010
1842010
Electrochemical oxidation characteristics of p-substituted phenols using a boron-doped diamond electrode
X Zhu, S Shi, J Wei, F Lv, H Zhao, J Kong, Q He, J Ni
Environmental science & technology 41 (18), 6541-6546, 2007
1822007
Comparison of nonprecious metal cathode materials for methane production by electromethanogenesis
M Siegert, MD Yates, DF Call, X Zhu, A Spormann, BE Logan
ACS sustainable chemistry & engineering 2 (4), 910-917, 2014
1572014
Interlayer-Expanded V6O13·nH2O Architecture Constructed for an Advanced Rechargeable Aqueous Zinc-Ion Battery
J Lai, H Zhu, X Zhu, H Koritala, Y Wang
ACS Applied Energy Materials 2 (3), 1988-1996, 2019
1472019
Controlling the occurrence of power overshoot by adapting microbial fuel cells to high anode potentials
X Zhu, JC Tokash, Y Hong, BE Logan
Bioelectrochemistry 90, 30-35, 2013
1382013
Synergies between electrochemical oxidation and activated carbon adsorption in three-dimensional boron-doped diamond anode system
X Zhu, J Ni, X Xing, H Li, Y Jiang
Electrochimica Acta 56 (3), 1270-1274, 2011
1222011
Using single-chamber microbial fuel cells as renewable power sources of electro-Fenton reactors for organic pollutant treatment
X Zhu, BE Logan
Journal of hazardous materials 252, 198-203, 2013
1182013
Set potential regulation reveals additional oxidation peaks of Geobacter sulfurreducens anodic biofilms
X Zhu, MD Yates, BE Logan
Electrochemistry Communications 22, 116-119, 2012
1142012
A thermally‐regenerative ammonia‐based flow battery for electrical energy recovery from waste heat
X Zhu, M Rahimi, CA Gorski, B Logan
ChemSusChem 9 (8), 873-879, 2016
1122016
Comparison of electrochemical method with ozonation, chlorination and monochloramination in drinking water disinfection
H Li, X Zhu, J Ni
Electrochimica Acta 56 (27), 9789-9796, 2011
1092011
The effect of flow modes and electrode combinations on the performance of a multiple module microbial fuel cell installed at wastewater treatment plant
W He, MJ Wallack, KY Kim, X Zhang, W Yang, X Zhu, Y Feng, BE Logan
Water Research 105, 351-360, 2016
1072016
Destination of organic pollutants during electrochemical oxidation of biologically-pretreated dye wastewater using boron-doped diamond anode
X Zhu, J Ni, J Wei, X Xing, H Li
Journal of Hazardous Materials 189 (1-2), 127-133, 2011
1052011
Contamination of neonicotinoid insecticides in soil-water-sediment systems of the urban and rural areas in a rapidly developing region: Guangzhou, South China
C Zhang, X Yi, C Chen, D Tian, H Liu, L Xie, X Zhu, M Huang, GG Ying
Environment international 139, 105719, 2020
982020
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