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초록
The particle growth in plasma reactor were investigated by using the discrete-monodisperse (D-M) model for various process conditions. The monodisperse large sized particle distribution predicted by the D-M model are in good agreement with the large sized particles by the discrete-sectional model and also in the experiments by Shiratani et al. (1996). Some fractions of the small size particles are in a neutral state or even charged positively, but most of the large sized monodisperse particles are charged negatively. As the mass generation rate of monomers increases, the large sized particles grow more quickly and the production rate of nanoparticles of 100 nm by plasma reactor increases. As the initial electron concentration or the monomer diameter increases, it takes longer time for the large sized particles to grow up to 100 nm, but the large sized particle concentration of 100 nm increases and the resulting production rate of large sized particles of 100 nm increases. As the residence time increases, the time for the large sized particles to grow up to 100 nm decreases and the large sized particle concentration of 100 nm increases and, as a result, the production rate of large sized particles of 100 nm increases. We propose that the plasma reactor can be a good candidate to produce monodisperse nanoparticles.
키워드
- 제목
- Production of monodisperse nanoparticles and application of discrete-monodisperse model in plasma reactors
- 저자
- Kim, Dong-joo; Kim, Kyo–Seon; Zhao, Qianqiu
- 발행일
- 2003
- 유형
- Article
- 권
- 5
- 호
- 3-4
- 페이지
- 211 ~ 223