Adsorption of volatile organic compounds over MIL-125-NH2.

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Title: Adsorption of volatile organic compounds over MIL-125-NH2.
Authors: Kim, Bomi1, Lee, Yu-Ri1, Kim, Hee-Young1, Ahn, Wha-Seung1 whasahn@inha.ac.kr
Source: Polyhedron. Nov2018, Vol. 154, p343-349. 7p.
Subjects: Volatile organic compounds, Adsorption isotherms, Photochemistry, Metal-organic frameworks, Temperature effect
Abstract: Graphical abstract Adsorption of volatile organic compounds (VOCs) over MIL-125-NH 2 was investigated by measuring their adsorption isotherms. Significant amounts of the VOCs were adsorbed, and their adsorption capacities followed the order of increasing polarity. Abstract Volatile organic compounds (VOCs) cause environmental and health problems by forming photochemistry smog, and development of an effective adsorbent for their removal is important. In this work, adsorption of a series of selected VOCs over an amine-functionalized metal organic framework, MIL-125-NH 2 , was investigated by measuring their adsorption isotherms at three different temperatures. Significant amounts of the VOCs were adsorbed, and their adsorption capacities increased with the increasing order of polarity (p -xylene < toluene < benzene < acetone < isopropanol). In addition, formaldehyde breakthrough capacities were measured and MIL-125-NH 2 , exhibited a clearly superior performance to other MOFs, probably because of the synergistic effects provided by the amine groups that strongly interacting with the formaldehyde and the small micropores in MIL-125-NH 2. [ABSTRACT FROM AUTHOR]
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Database: Engineering Source
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Abstract:Graphical abstract Adsorption of volatile organic compounds (VOCs) over MIL-125-NH 2 was investigated by measuring their adsorption isotherms. Significant amounts of the VOCs were adsorbed, and their adsorption capacities followed the order of increasing polarity. Abstract Volatile organic compounds (VOCs) cause environmental and health problems by forming photochemistry smog, and development of an effective adsorbent for their removal is important. In this work, adsorption of a series of selected VOCs over an amine-functionalized metal organic framework, MIL-125-NH 2 , was investigated by measuring their adsorption isotherms at three different temperatures. Significant amounts of the VOCs were adsorbed, and their adsorption capacities increased with the increasing order of polarity (p -xylene < toluene < benzene < acetone < isopropanol). In addition, formaldehyde breakthrough capacities were measured and MIL-125-NH 2 , exhibited a clearly superior performance to other MOFs, probably because of the synergistic effects provided by the amine groups that strongly interacting with the formaldehyde and the small micropores in MIL-125-NH 2. [ABSTRACT FROM AUTHOR]
ISSN:02775387
DOI:10.1016/j.poly.2018.08.010