Literature DB >> 28440615

Monolith-Supported Amine-Functionalized Mg2(dobpdc) Adsorbents for CO2 Capture.

Lalit A Darunte1, Yuri Terada1, Christopher R Murdock1, Krista S Walton1, David S Sholl1, Christopher W Jones1.   

Abstract

The potential of using an amine-functionalized metal organic framework (MOF), mmen-M2(dobpdc) (M = Mg and Mn), supported on a structured monolith contactor for CO2 capture from simulated flue gas is explored. The stability of the unsupported MOF powders under humid conditions is explored using nitrogen physisorption and X-ray diffraction analysis before and after exposure to humidity. Based on its superior stability to humidity, mmen-Mg2(dobpdc) is selected for further growth on a honeycomb cordierite monolith that is wash-coated with α-alumina. A simple approach for the synthesis of an Mg2(dobpdc) MOF film using MgO nanoparticles as the metal precursor is used. Rapid drying of MgO on the monolith surface followed by a hydrothermal treatment is demonstrated to allow for the synthesis of a MOF film with good crystallite density and favorable orientation of the MOF crystals. The CO2 adsorption behavior of the monolith-supported mmen-Mg2(dobpdc) material is assessed using 10% CO2 in helium and 100% CO2, demonstrating a CO2 uptake of 2.37 and 2.88 mmol/g, respectively. Excellent cyclic adsorption/desorption performance over multiple cycles is also observed. This is one of the first examples of the deployment of an advanced MOF adsorbent in a scalable, low-pressure drop gas-solid contactor. Such demonstrations are critical to the practical application of MOF materials in adsorptive gas separations, as structured contactors have many practical advantages over packed or fluidized beds.

Entities:  

Keywords:  CO2 adsorption; MOF synthesis scale up; Mg2(dobpdc); dimethyl ethylene diamine (mmen); honeycomb cordierite monolith; oriented crystal growth

Year:  2017        PMID: 28440615     DOI: 10.1021/acsami.7b02035

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  2 in total

1.  Sub-Ambient Temperature Direct Air Capture of CO2 using Amine-Impregnated MIL-101(Cr) Enables Ambient Temperature CO2 Recovery.

Authors:  Guanhe Rim; Fanhe Kong; Mingyu Song; Cornelia Rosu; Pranjali Priyadarshini; Ryan P Lively; Christopher W Jones
Journal:  JACS Au       Date:  2022-02-09

2.  Scalable Formation of Diamine-Appended Metal-Organic Framework Hollow Fiber Sorbents for Postcombustion CO2 Capture.

Authors:  Wenying Quan; Hannah E Holmes; Fengyi Zhang; Breanne L Hamlett; M G Finn; Carter W Abney; Matthew T Kapelewski; Simon C Weston; Ryan P Lively; William J Koros
Journal:  JACS Au       Date:  2022-05-16
  2 in total

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