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NTIS 바로가기Resources recycling = 자원리싸이클링, v.30 no.2, 2021년, pp.68 - 74
한요셉 (한국지질자원연구원 광물자원연구본부 자원회수연구센터) , 전호석 (한국지질자원연구원 광물자원연구본부 자원회수연구센터) , 김성민 (한국지질자원연구원 광물자원연구본부 자원회수연구센터)
This study investigated formaldehyde (HCHO) removal by preparing porous supports using domestic low-grade silica coated with Co-ZSM5 and Cu-ZSM5 as the catalysts. First, the sample of the raw material for the support contained 90% silica with quartz crystal phase, which was confirmed as low-grade si...
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Choi, S., 2009 : Utilization and materialization of domestic low grade silica minerals, Ministry of Knowledge Economy.
Han, Y., Kim, H., and Park, J., 2004 : Characterstics of NOx reduction using V 2 O 5 -TiO 2 catalyst coated on ceramic foam filters, Journal of Korean Society for Atmospheric Environment, 20, pp.773-781.
Kim, Y., Lee. H., Yoo, O., et al., 2020 : 2019/2020 mineral commodity supply and demand, Korea Institute of Geoscience and Mineral Resources (KIGAM).
Ishizaki, K., Komarneni, S., and Nanko, M., 1998 : Porous Materials : Process Technology and Applications, 1-11, London, Kluwer Academic Publishers.
Seo, J., Kim, S., Han, Y., et al., 2013 : Preparation of porous ceramic beads using mine tailings and its applications to catalytic converter, Journal of Korean Inst. of Resources Recycling, 22(4), pp.1-9.
Han, Y., Kim, H., and Tong, M., 2012 : Characterization of stone powder sludge foams and their application to wastewater treatment: Role of pore connectivity, Materials Chemistry and Physics, 134, pp.26-30.
Liang, W., Li, J., Li, J., et al., 2010 : Formaldehyde removal from gas streams by means of NaNO 2 dielectric barrier discharge plasma, Journal of Hazardous Materials, 175, pp.1090-1095.
Chen, H., Lee, H., Chen, S., et al., 2009 : Removal of volatile organic compounds by single-stage and two-stage plasma catalysis systems: a review of the performance enhancement mechanisms, current status, and suitable applications, Environmental Science and Technology, 43(7), pp.2216-2227.
Harling, A., Kim, H., Futamura, S., et al., 2007 : Temperature dependence of plasma-catalysis using a nonthermal, atmospheric pressure packed bed; the destruction of benzene and toluene, The Journal of Physical Chemistry C, 111(13), pp.5090-5095.
Tanada, S., Kawasaki, N., Nakamura, T., et al., 1999 : Removal of formaldehyde by activated carbons containing amino groups, Journal of Colloid Interface Science, 214, pp.106-108.
Zhang, C., He, H., and Tanaka, K., 2005 : Perfect catalytic oxidation of formaldehyde over a Pt/TiO 2 catalyst at room temperature, Catalysis Communications, 6, pp.211-214.
Han, Y., Yang, J., Jung, M., et al., 2020 : Controlling the pore size and connectivity of alumina-particle-stabilized foams using sodium dodecyl sulfate: Role of surfactant concentration, Langmuir, 36, pp.10331-10340.
Han, Y., Kim, S., Kim, H., et al., 2011 : Preparation of sizable and uniform-sized spherical ceramic foams: Drop-in-oil and agar gelation, Journal of the American Ceramic Society, 94, pp.2742-2745.
Han, Y., Choi, J., Kim, H., et al., 2013 : Control of pore and window size of ceramic foams with tri-modal pore structure: Influence of agar concentration, Materials Letters, 110, pp.253-259.
Han, Y., Kim, H., Park, J., et al., 2012 : Influence of Ti doping level on hydrogen adsorption of mesoporous Ti-SBA-15 materials prepared by direct synthesis, International Journal of Hydrogen Energy, 37, pp.14240-14247.
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