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author:

Lu, Ping (Lu, Ping.) [1] | Qi, Zhaoyang (Qi, Zhaoyang.) [2] | Chen, Jie (Chen, Jie.) [3] | Ye, Changshen (Ye, Changshen.) [4] | Qiu, Ting (Qiu, Ting.) [5]

Indexed by:

EI

Abstract:

High-efficiency adsorption of aromatic sulfur-containing compounds from liquid hydrocarbon fuels over metal-organic frameworks (MOFs) is challenging because of inert metal sites. A new method, the Ce-enhanced modulation of MOFs’ microenvironment, is proposed to modulate the –COO···Cu(II)– coordination microenvironment of Hong Kong University of Science and Technology (HKUST-1) using Ce(III) as a molecular scalpel for fabricating abundant high-efficiency Cu(I) and Cu-coordination-unsaturated sites and improving the pore structures around adsorptive sites. The optimal CH-250 thus exhibits adsorptive capacities for 20.2, 28.0, and 58.3 mg S g–1 of thiophene, benzo-thiophene, and dibenzothiophene, respectively, which are superior to most reported MOFs, zeolites, and nanoporous carbons. The constructed Cu(I) sites show stronger affinity for dibenzothiophene (−0.86 eV) than the initial Cu(II) (−0.74 eV) for out-of-plane adsorption. Further, they are far stronger in-plane adsorption interactions in DBT/CH-250 (−0.90 eV) than those in DBT/HKUST-1 (−0.37 eV). Thus, molecular engineering for modulating the coordination microenvironment of MOFs shows great potential for adsorption desulfurization. © 2023 Wiley-VCH GmbH.

Keyword:

Adsorption Aromatic hydrocarbons Cerium compounds Copper compounds Desulfurization Efficiency Metal-Organic Frameworks Pore structure Thiophene Zeolites

Community:

  • [ 1 ] [Lu, Ping]School of Chemical Engineering, Fuzhou University, Fujian, Fuzhou; 350108, China
  • [ 2 ] [Lu, Ping]Qingyuan Innovation Laboratory, Fujian, Quanzhou; 362801, China
  • [ 3 ] [Lu, Ping]Engineering Research Center of Reactive Distillation, Fujian Province Higher Education Institutes, Fujian, Fuzhou; 350108, China
  • [ 4 ] [Qi, Zhaoyang]Qingyuan Innovation Laboratory, Fujian, Quanzhou; 362801, China
  • [ 5 ] [Qi, Zhaoyang]Engineering Research Center of Reactive Distillation, Fujian Province Higher Education Institutes, Fujian, Fuzhou; 350108, China
  • [ 6 ] [Chen, Jie]School of Chemical Engineering, Fuzhou University, Fujian, Fuzhou; 350108, China
  • [ 7 ] [Chen, Jie]Qingyuan Innovation Laboratory, Fujian, Quanzhou; 362801, China
  • [ 8 ] [Chen, Jie]Engineering Research Center of Reactive Distillation, Fujian Province Higher Education Institutes, Fujian, Fuzhou; 350108, China
  • [ 9 ] [Ye, Changshen]School of Chemical Engineering, Fuzhou University, Fujian, Fuzhou; 350108, China
  • [ 10 ] [Ye, Changshen]Qingyuan Innovation Laboratory, Fujian, Quanzhou; 362801, China
  • [ 11 ] [Ye, Changshen]Engineering Research Center of Reactive Distillation, Fujian Province Higher Education Institutes, Fujian, Fuzhou; 350108, China
  • [ 12 ] [Qiu, Ting]School of Chemical Engineering, Fuzhou University, Fujian, Fuzhou; 350108, China
  • [ 13 ] [Qiu, Ting]Qingyuan Innovation Laboratory, Fujian, Quanzhou; 362801, China
  • [ 14 ] [Qiu, Ting]Engineering Research Center of Reactive Distillation, Fujian Province Higher Education Institutes, Fujian, Fuzhou; 350108, China
  • [ 15 ] [Qiu, Ting]Fuzhou University International Joint Laboratory of Thermochemical Conversion of Biomass, Fujian, Fuzhou; 350108, China

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Source :

Small

ISSN: 1613-6810

Year: 2023

Issue: 49

Volume: 19

1 3 . 0

JCR@2023

1 3 . 0 0 0

JCR@2023

JCR Journal Grade:1

CAS Journal Grade:1

Cited Count:

WoS CC Cited Count:

SCOPUS Cited Count: 4

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 0

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