Browse > Article
http://dx.doi.org/10.4191/KCERS.2002.39.11.1042

Dispersion Characteristics of Slurry and Preparation of Ceramic Paper  

Yoo, Yoon-Jong (Functional Materials Research Center, Korea Institute of Energy Research)
Kim, Joon-Soo (Functional Materials Research Center, Korea Institute of Energy Research)
Kim, Hong-Soo (Functional Materials Research Center, Korea Institute of Energy Research)
Ahn, Young-Soo (Functional Materials Research Center, Korea Institute of Energy Research)
Han, Moon-Hee (Functional Materials Research Center, Korea Institute of Energy Research)
Jang, Gun-Eik (Department of Materials Engineering, Chungbuk National University)
Publication Information
Abstract
The sedimentation characteristics of ceramic fiber were analyzed when viscosity of the slurry for ceramic paper formation was varied and zeta potential change and degree of dispersion with pH were studied as well. The proper viscosity of the slurry for dispersion of fibers was between 28 and 31 cps. Zeta potential of the slurry was sensitively changed with pH adjustment and showed maximum value of -35~-36 mV at ph 7.5~9.5, which indicated better dispersion of ceramic fiber as zeta potential of the slurry was increased. The sedimentation rate of ceramic fiber in a slurry was reported minimum at the maximum zeta potential. Water content of the casted paper should be lower than 83% after vacuum dehydration for retention of binder and lower than 62% after press rolling for wet paper handling. The obtained ceramic paper had tensile strength and basis weight, $102 kgf/cm^2$ and $98 g/m^2$, respectively.
Keywords
Ceramic paper; Ceramic sheet; Honeycomb adsorbents; Honeycomb rotor;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 H. Ichiura, 'Preparation of Zeolite Sheet Using a Paper-making Technique(in Jpn.),' J. Mater. Sci. Jpn., 36 4921-26(2001)   DOI   ScienceOn
2 T. Kuma, 'A Gas Adsorption Element, its Manufacture Method and Usage,' European Patent Application, 91-3,114,468
3 T. Kuma, 'Method of Manufacturing a Gas Absorption Element or a Catalyst Carrier having a Honeycomb Structure,' US Patent, 5,194,414
4 H. Matsuoka, 'Manufacturing Method of Ceramic Paper,' Jpn. Patent Open Laid 5-163695 (1993)
5 'Consideration and Understanding of Interface Phenomena Using Zeta Potential,' Otsuka Electronics Technical Paper, LS-N006
6 'Flocculation and Dispersion of Ceramic Particles by Polymer Addition,' Otsuka Electronics TechnicaI Paper, LS N014
7 'pH Titration Measurement of Mixed Ceramics,' Otsuka Etectronics Technical Paper, LS-N013
8 H. S. Kim, 'The Effect of Slurry Composition on the Tensile Strength of Ceramic Sheet for VOC Abatement(in Kor.),' Kor. Soc. Energy Eng., Autumn Academic Meeting, 197-204 (1999)
9 H. S. Kim, 'The Manufacturing Process of Adsorbent Sheet for VOC Abatement and its Characteristics,' The 1st Symp. on Greenhouse Gas Reduction technologies, 120-25 (1999)
10 Y. J. Yoo, 'Coagulation Characteristics of Ceramic Paper Slurry and Zeta Potential Change during Slurry Preparation(in Kor.),' Kor. Ceram. Soc., Spring Academic Meeting, P-119 (2002)
11 Y. Mitsuma, 'Performance of Thermal Swing Honeycomb VOC Concentrators(in Jpn.),' J. Chem. Eng. Jpn., 31 [3] 482-84 (1998)   DOI   ScienceOn
12 T. Kuma, 'Removal Efficiency of Volatik Organic Compounds, VOCs, by Ceramic Honeycomb Rotor Adsorbents,' Fundamentals of Adsorption, M. D. LeVan, Kliwer Academic Publishers, Boston, Massachusetts (1966)
13 K. Nakamura, 'Ceramic Sheet with Catalyst and its Manufacturing Method,' US Patent, 5,504,051
14 T. Kuma, 'Reformation of Honeycomb Adsorbent and Scale-up Technology for Thermal Swing Type VOC Concentrator(in Jpn.),' J. Chem. Eng. Jpn., 24 [2] 248-53(1998)