首页|Reconstruction and recovery of anatase TiO2 from spent selective catalytic reduction catalyst by NaOH hydrothermal method

Reconstruction and recovery of anatase TiO2 from spent selective catalytic reduction catalyst by NaOH hydrothermal method

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The improper disposal of spent selective catalytic reduction(SCR)catalysts causes environmental pollu-tion and metal resource waste.A novel process to recover anatase titanium dioxide(TiO2)from spent SCR catalysts was proposed.The process included alkali(NaOH)hydrothermal treatment,sulfuric acid wash-ing,and calcination.Anatase TiO2 in spent SCR catalyst was reconstructed by forming Na2Ti2O4(OH)2 nanosheet during NaOH hydrothermal treatment and H2Ti2O4(OH)2 during sulfuric acid washing.Anatase TiO2 was recovered by decomposing H2Ti2O4(OH)2 during calcination.The surface pore proper-ties of the recovered anatase TiO2 were adequately improved,and its specific surface area(SSA)and pore volume(PV)were 85 m2·g-1 and 0.40 cm3·g-1,respectively.The elements affecting catalytic abilities(arsenic and sodium)were also removed.The SCR catalyst was resynthesized using the recovered TiO2 as raw material,and its catalytic performance in NO selective reduction was comparable with that of commercial SCR catalyst.This study realized the sustainable recycling of anatase TiO2 from spent SCR catalyst.

TiO2 reconstructionAnatase TiO2 recoveryPore propertiesSpent V2O5-WO3/TiO2 catalyst

Jinlong Liu、Chenye Wang、Xingrui Wang、Chen Zhao、Huiquan Li、Ganyu Zhu、Jianbo Zhang

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CAS Key Laboratory of Green Process and Engineering,National Engineering Research Center of Green Recycling for Strategic Metal Resources,Institute of Process Engineering Chinese Academy of Sciences,Beijing 100190,China

School of Chemical Engineering,University of Chinese Academy of Sciences,Beijing 100049,China

National Natural Science Foundation of ChinaNational Natural Science Foundation of ChinaInnovation Academy for Green Manufacture,Chinese Academy of Sciences

5227441151904287IAGM2022D11

2023

中国化学工程学报(英文版)
中国化工学会

中国化学工程学报(英文版)

CSTPCDCSCD北大核心EI
影响因子:0.818
ISSN:1004-9541
年,卷(期):2023.60(8)
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