VIAF

Virtual International Authority File

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Leader     00000nz a2200037n 45 0
001     WKP|Q56941070  (VIAF cluster)  (Authority/Source Record)
003     WKP
005     20241120235753.0
008     241120nneanz||abbn n and d
035 ‎‡a  (WKP)Q56941070‏
024 ‎‡a  0000-0003-4979-4895‏ ‎‡2  orcid‏
024 ‎‡a  57190074260‏ ‎‡2  scopus‏
035 ‎‡a  (OCoLC)Q56941070‏
100 0 ‎‡a  Lu Wang‏ ‎‡c  researcher (ORCID 0000-0003-4979-4895)‏ ‎‡9  en‏
670 ‎‡a  Author's An insight into the removal of fluoroquinolones in activated sludge process: Sorption and biodegradation characteristics.‏
670 ‎‡a  Author's Anoxic biodegradation of triclosan and the removal of its antimicrobial effect in microbial fuel cells‏
670 ‎‡a  Author's Biodegradation of sulfadiazine in microbial fuel cells: Reaction mechanism, biotoxicity removal and the correlation with reactor microbes‏
670 ‎‡a  Author's Efficient oxidation and sorption of arsenite using a novel titanium‏
670 ‎‡a  Author's Efficient oxidation and sorption of arsenite using a novel titanium(IV)-manganese(IV) binary oxide sorbent.‏
670 ‎‡a  Author's Enhanced removal of arsenite and arsenate by a multifunctional Fe-Ti-Mn composite oxide: Photooxidation, oxidation and adsorption‏
670 ‎‡a  Author's Highly effective oxidation of roxarsone by ferrate and simultaneous arsenic removal with in situ formed ferric nanoparticles‏
670 ‎‡a  Author's Highly efficient removal of trace thallium from contaminated source waters with ferrate: Role of in situ formed ferric nanoparticle‏
670 ‎‡a  Author's Interpreting the effects of natural organic matter on antimicrobial activity of Ag2S nanoparticles with soft particle theory‏
670 ‎‡a  Author's Rapid degradation of sulphamethoxazole and the further transformation of 3-amino-5-methylisoxazole in a microbial fuel cell.‏
909 ‎‡a  (scopus) 57190074260‏ ‎‡9  1‏
909 ‎‡a  (orcid) 0000000349794895‏ ‎‡9  1‏
919 ‎‡a  highlyeffectiveoxidationofroxarsonebyferrateandsimultaneousarsenicremovalwithinsituformedferricnanoparticles‏ ‎‡A  Highly effective oxidation of roxarsone by ferrate and simultaneous arsenic removal with in situ formed ferric nanoparticles‏ ‎‡9  1‏
919 ‎‡a  enhancedremovalofarseniteandarsenatebyamultifunctionalfetimncompositeoxidephotooxidationoxidationandadsorption‏ ‎‡A  Enhanced removal of arsenite and arsenate by a multifunctional Fe-Ti-Mn composite oxide: Photooxidation, oxidation and adsorption‏ ‎‡9  1‏
919 ‎‡a  efficientoxidationandsorptionofarseniteusinganoveltitanium4manganese4binaryoxidesorbent‏ ‎‡A  Efficient oxidation and sorption of arsenite using a novel titanium(IV)-manganese(IV) binary oxide sorbent.‏ ‎‡9  1‏
919 ‎‡a  efficientoxidationandsorptionofarseniteusinganoveltitanium‏ ‎‡A  Efficient oxidation and sorption of arsenite using a novel titanium‏ ‎‡9  1‏
919 ‎‡a  biodegradationofsulfadiazineinmicrobialfuelcellsreactionmechanismbiotoxicityremovalandthecorrelationwithreactormicrobes‏ ‎‡A  Biodegradation of sulfadiazine in microbial fuel cells: Reaction mechanism, biotoxicity removal and the correlation with reactor microbes‏ ‎‡9  1‏
919 ‎‡a  rapiddegradationofsulphamethoxazoleandthefurthertransformationof3amino5methylisoxazoleinamicrobialfuelcell‏ ‎‡A  Rapid degradation of sulphamethoxazole and the further transformation of 3-amino-5-methylisoxazole in a microbial fuel cell.‏ ‎‡9  1‏
919 ‎‡a  interpretingtheeffectsofnaturalorganicmatteronantimicrobialactivityofag2snanoparticleswithsoftparticletheory‏ ‎‡A  Interpreting the effects of natural organic matter on antimicrobial activity of Ag2S nanoparticles with soft particle theory‏ ‎‡9  1‏
919 ‎‡a  highlyefficientremovaloftracethalliumfromcontaminatedsourcewaterswithferrateroleofinsituformedferricnanoparticle‏ ‎‡A  Highly efficient removal of trace thallium from contaminated source waters with ferrate: Role of in situ formed ferric nanoparticle‏ ‎‡9  1‏
919 ‎‡a  insightintotheremovaloffluoroquinolonesinactivatedsludgeprocesssorptionandbiodegradationcharacteristics‏ ‎‡A  An insight into the removal of fluoroquinolones in activated sludge process: Sorption and biodegradation characteristics.‏ ‎‡9  1‏
919 ‎‡a  anoxicbiodegradationoftriclosanandtheremovalofitsantimicrobialeffectinmicrobialfuelcells‏ ‎‡A  Anoxic biodegradation of triclosan and the removal of its antimicrobial effect in microbial fuel cells‏ ‎‡9  1‏
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997 ‎‡a  0 0 lived 0 0‏ ‎‡9  1‏