1 Palomino, M., "Zeolite Rho: A Highly Selective Adsorbent forSeparation Induced by a Structural Phase Modification" 48 : 215-217, 2012
2 McBain, J. W., "The Sorption of Gases and Vapors by Solids, G" Routledge & Sons 1-577, 1932
3 Wigley, T. M. L., "The Kyoto Protocol: ,and Climate Implications" 25 : 2285-2288, 1998
4 UNEP (the United Nations Environment Programme), "The Emissions Gap Report 2012: A UNEP Synthesis Report" 2012
5 Phan, A., "Synthesis, Structure and Carbon Dioxide Capture Properties of Zeolitic Imidazolate Frameworks" 43 : 58-67, 2010
6 Huo, Q., "Synthesis and Characterization of a Novel Extra Large Ring of Aluminophosphate JDF-20" 875-876 : 1992
7 Rezaei, F., "Structured Adsorbents in Gas Separation Processes" 70 : 243-256, 2010
8 Miller, S. R., "Structural Transformations and Adsorption of Fuel-Related Gases of a Structurally Responsive Nickel Phosphonate Metal-Organic Framework, Ni-STA-12" 130 : 15967-15981, 2008
9 Demessence, A., "StrongBinding in a Water-Stable, Triazolate-Bridged Metal-Organic Framework Functionalized with Ethylenediamine" 131 : 8784-8785, 2009
10 Cheon, Y. E., "Selective Gas Adsorption in a Magnesium-Based Metal-Organic Framework" 5436-5438, 2009
1 Palomino, M., "Zeolite Rho: A Highly Selective Adsorbent forSeparation Induced by a Structural Phase Modification" 48 : 215-217, 2012
2 McBain, J. W., "The Sorption of Gases and Vapors by Solids, G" Routledge & Sons 1-577, 1932
3 Wigley, T. M. L., "The Kyoto Protocol: ,and Climate Implications" 25 : 2285-2288, 1998
4 UNEP (the United Nations Environment Programme), "The Emissions Gap Report 2012: A UNEP Synthesis Report" 2012
5 Phan, A., "Synthesis, Structure and Carbon Dioxide Capture Properties of Zeolitic Imidazolate Frameworks" 43 : 58-67, 2010
6 Huo, Q., "Synthesis and Characterization of a Novel Extra Large Ring of Aluminophosphate JDF-20" 875-876 : 1992
7 Rezaei, F., "Structured Adsorbents in Gas Separation Processes" 70 : 243-256, 2010
8 Miller, S. R., "Structural Transformations and Adsorption of Fuel-Related Gases of a Structurally Responsive Nickel Phosphonate Metal-Organic Framework, Ni-STA-12" 130 : 15967-15981, 2008
9 Demessence, A., "StrongBinding in a Water-Stable, Triazolate-Bridged Metal-Organic Framework Functionalized with Ethylenediamine" 131 : 8784-8785, 2009
10 Cheon, Y. E., "Selective Gas Adsorption in a Magnesium-Based Metal-Organic Framework" 5436-5438, 2009
11 Li, J. R., "Selective Gas Adsorption and Separation in Metal-Organic Frameworks" 38 : 1477-1504, 2009
12 Yaghi, O. M., "Selective Binding and Removal of Guests in a Microporous Metal-Organic Framework" 378 : 703-706, 1995
13 Lee, K. B., "Reversible Chemisorbents for Carbon Dioxide and Their Potential Applications" 47 : 8048-8062, 2008
14 Dasgupta, S., "Recovery from Mixtures with Nitrogen in a Vacuum Swing Adsorber Using Metal Organic Framework Adsorbent: A Comparative Study" 7 : 225-229, 2012
15 Cote, A. P., "Porous, Crystalline, Covalent Organic Frameworks" 310 : 1166-1170, 2005
16 Loiseau, T., "Oxyfluorinated Microporous Compounds: VII. Synthesis and Crystal Structure of ULM-5, a New Fluorinated Gallophosphate , ,with 16-Membered Rings and Both Bonding and Encapsulated F" 111 : 403-415, 1994
17 Tagliabue, M., "Natural Gas Treating by Selective Adsorption: Material Science and Chemical Engineering Interplay" 155 : 553-566, 2009
18 Comotti, A., "Nanochannels of Two Distinct Cross-Sections in a Porous Al-Based Coordination Polymer" 130 : 13664-13672, 2008
19 Jadhav, P. D., "Monoethanol Amine Modified Zeolite 13X forAdsorption at Different Temperatures" 21 : 3555-3559, 2007
20 Wang, Q. M., "Metallo-Organic Molecular Sieve for Gas Separation and Purification" 55 : 217-230, 2002
21 Millward, A. R., "Metal-Organic Frameworks with Exceptionally High Capacity for Storage of Carbon Dioxide at Room Temperature" 127 : 17998-17999, 2005
22 Stockholm Environment Institute, "Issues and Options for Benchmarking Industrial GHG Emissions" 2010
23 US EPA, "Inventory of U.S. Greenhouse Gas Emissions and Sinks: 1990-2011" 2013
24 Llewellyn, P. L., "How Hydration Drastically Improves Adsorption Selectivity foroverin the Flexible Chromium Terephthalate MIL-53" 45 : 7751-7754, 2006
25 Llewellyn, P. L., "High Uptakes ofandin Mesoporous Metal-Organic Frameworks MIL-100 and MIL-101" 24 : 7245-7250, 2008
26 ASME, "General Position Statement on Technology and Policy Recommendations and Goals for Reducing Carbon Dioxide Emissions in the Energy Sector" 2009
27 Park, K. S., "Exceptional Chemical and Thermal Stability of Zeolitic Imidazolate Frameworks" 103 : 10186-10191, 2006
28 El-Kaderi, H. M., "Designed Synthesis of 3D Covalent Organic Frameworks" 316 : 268-272, 2007
29 Banerjee, R., "Control of Pore Size and Functionality in Isoreticular Zeolitic Imidazolate Frameworks and Their Carbon Dioxide Selective Capture Properties" 131 : 3875-3877, 2009
30 Chowdhury, P., "Comparison of Adsorption Isotherms on Cu-BTC Metal Organic Frameworks Synthesized from Different Routes" 117 : 406-413, 2009
31 Lobo, R. F., "Characterization of the Extra-Large-Pore Zeolite UTD-1" 119 : 8474-8484, 1997
32 김문현, "Catalytic reduction of N2O by H2 over well-characterized Pt surfaces" 한국화학공학회 23 (23): 908-918, 2006
33 Wang, Q., "Capture by Solid Adsorbents and Their Applications: Current Status and New Trends" 4 : 42-55, 2011
34 Wagner, P., "CIT-5: A High-Silica Zeolite with 14-Ring Pores" 2179-2180, 1997
35 Sircar, S., "Basic Research Needs for Design of Adsorptive Gas Separation Processes" 45 : 5435-5448, 2006
36 Yuan, D., "An Isoreticular Series of Metal-Organic Frameworks with Dendritic Hexacarboxylate Ligands and Exceptionally High Gas-Uptake Capacity" 49 : 5357-5361, 2010
37 Couck, S., "An Amine-Functionalized MIL-53 Metal Organic Framework with Large Separation Power forand" 131 : 6326-6327, 2009
38 Liang, Z., "Adsorption-Based Separation by Metal Organic Framework (Cu-BTC) versus Zeolite (13X)" 23 : 2785-2789, 2009
39 Siriwardane, R. V., "Adsorption ofon Molecular Sieves and Activated Carbon" 15 : 279-284, 2001
40 Yong, Z., "Adsorption of Carbon Dioxide on Chemically Modified High Surface Area Carbon-Based Adsorbents at High Temperature" 7 : 41-50, 2001
41 Prez-Pellitero, J., "Adsorption of , , andon Zeolitic Imidazolate Frameworks: Experiments and Simulations" 16 : 1560-1571, 2010
42 Yang, R. T., "Adsorbents: Fundamental and Applications" John Wiley & Sons 1-410, 2003
43 Chae, H. K., "A Route to High Surface Area, Porosity and Inclusion of Large Molecules in Crystals" 427 : 523-527, 2004
44 Bastin. L., "A Microporous Metal Organic Framework for Separation ofandby Fixed-Bed Adsorption" 112 : 1575-1581, 2008
45 Freyhardt, C. C., "A High-Silica Zeolite with a 14-Tetrahedral- Atom Pore Opening" 381 : 295-298, 1996
46 Krishna, R., "A Comparison of theCapture Characteristics of Zeolites and Metal-Organic Frameworks" 87 : 120-126, 2012
47 McEwen, J., "A Comparative Study of ,andAdsorption in ZIF-8, Zeolite-13X and BPL Activated Carbon" 412 : 72-76, 2013
48 Chui, S. S. Y., "A Chemically Functionalizable Nanoporous Material" 283 : 1148-1150, 1999