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- Q104269891 description "2020 ވަނަ އަހަރުގެ ޑިސެމްބަރުމަހުގެ 2ވަނަ ދުވަހު ޝާއިރުކުރެވުނު ސައިންޓިފިކް ލިޔުމެއް" @default.
- Q104269891 description "article scientifique publié en 2020" @default.
- Q104269891 description "artículu científicu espublizáu n'avientu de 2020" @default.
- Q104269891 description "scientific article published on 02 December 2020" @default.
- Q104269891 description "wetenschappelijk artikel" @default.
- Q104269891 description "наукова стаття, опублікована 2 грудня 2020" @default.
- Q104269891 name "Feedstock doping using iron rich waste increases the pyrolysis gas yield and adsorption performance of magnetic biochar for emerging contaminants" @default.
- Q104269891 name "Feedstock doping using iron rich waste increases the pyrolysis gas yield and adsorption performance of magnetic biochar for emerging contaminants" @default.
- Q104269891 name "Feedstock doping using iron rich waste increases the pyrolysis gas yield and adsorption performance of magnetic biochar for emerging contaminants" @default.
- Q104269891 type Item @default.
- Q104269891 label "Feedstock doping using iron rich waste increases the pyrolysis gas yield and adsorption performance of magnetic biochar for emerging contaminants" @default.
- Q104269891 label "Feedstock doping using iron rich waste increases the pyrolysis gas yield and adsorption performance of magnetic biochar for emerging contaminants" @default.
- Q104269891 label "Feedstock doping using iron rich waste increases the pyrolysis gas yield and adsorption performance of magnetic biochar for emerging contaminants" @default.
- Q104269891 prefLabel "Feedstock doping using iron rich waste increases the pyrolysis gas yield and adsorption performance of magnetic biochar for emerging contaminants" @default.
- Q104269891 prefLabel "Feedstock doping using iron rich waste increases the pyrolysis gas yield and adsorption performance of magnetic biochar for emerging contaminants" @default.
- Q104269891 prefLabel "Feedstock doping using iron rich waste increases the pyrolysis gas yield and adsorption performance of magnetic biochar for emerging contaminants" @default.
- Q104269891 P1433 Q104269891-28039826-818F-4F1A-8337-471440493769 @default.
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- Q104269891 P2860 Q104269891-BED5B5E4-68CB-4CC7-BD75-F6EAE211072E @default.
- Q104269891 P304 Q104269891-9606051A-EBA4-493E-B583-480252F58EE2 @default.
- Q104269891 P31 Q104269891-E2A23B16-FCD1-4A7D-92BA-FCF25B17C363 @default.
- Q104269891 P356 Q104269891-A9D5581B-BD90-4055-9976-873750095D48 @default.
- Q104269891 P478 Q104269891-B92C2EFB-6854-4505-A296-33A8B5F950D4 @default.
- Q104269891 P577 Q104269891-A566FD9E-CFCB-460A-8E21-E02DD3F7D438 @default.
- Q104269891 P698 Q104269891-E3E2544D-1794-4ADF-B391-62E6524B0282 @default.
- Q104269891 P356 J.BIORTECH.2020.124473 @default.
- Q104269891 P698 33302011 @default.
- Q104269891 P1433 Q2120036 @default.
- Q104269891 P1476 "Feedstock doping using iron rich waste increases the pyrolysis gas yield and adsorption performance of magnetic biochar for emerging contaminants" @default.
- Q104269891 P2093 "Christian Wurzer" @default.
- Q104269891 P2093 "Ondřej Mašek" @default.
- Q104269891 P2860 Q121676896 @default.
- Q104269891 P304 "124473" @default.
- Q104269891 P31 Q13442814 @default.
- Q104269891 P356 "10.1016/J.BIORTECH.2020.124473" @default.
- Q104269891 P478 "321" @default.
- Q104269891 P577 "2020-12-02T00:00:00Z" @default.
- Q104269891 P698 "33302011" @default.