The Experts below are selected from a list of 66 Experts worldwide ranked by ideXlab platform

Hisao Suzuki - One of the best experts on this subject based on the ideXlab platform.

  • improved filtration performance of continuous alumina fiber reinforced mullite composites for hot gas cleaning
    Journal of the American Ceramic Society, 2004
    Co-Authors: Satoshi Kitaoka, Naoki Kawashima, Yoshinobu Komatsubara, Akira Yamaguchi, Hisao Suzuki
    Abstract:

    The effect of filtration layer morphology on filtration performance at 673 K was investigated for continuous alumina-fiber-reinforced mullite composite filters that capture fly ash on their outer surfaces. Two types of filtration layers were prepared on the outer surfaces: a mono-layer consisting of mullite agglomerated particulates and a bi-layer, with mullite whiskers formed by a vapor-phase reaction and strongly adhered to the particulates exposed on the outer surfaces. For filters with mono-filtration layers, the filtration efficiency was improved slightly by increasing the filtration layer thickness. However, the Maximum Differential Pressure increased during the filtration tests. Adhesion of whiskers to the outer surface decreased the Maximum Differential Pressure to about one-third less than that with the mono-filtration layer. This low Differential Pressure remained constant throughout the duration of the test, with corresponding increases in filtration efficiency.

  • Improved Filtration Performance of Continuous Alumina‐fiber‐reinforced Mullite Composites for Hot‐Gas Cleaning
    Journal of the American Ceramic Society, 2004
    Co-Authors: Satoshi Kitaoka, Naoki Kawashima, Yoshinobu Komatsubara, Akira Yamaguchi, Hisao Suzuki
    Abstract:

    The effect of filtration layer morphology on filtration performance at 673 K was investigated for continuous alumina-fiber-reinforced mullite composite filters that capture fly ash on their outer surfaces. Two types of filtration layers were prepared on the outer surfaces: a mono-layer consisting of mullite agglomerated particulates and a bi-layer, with mullite whiskers formed by a vapor-phase reaction and strongly adhered to the particulates exposed on the outer surfaces. For filters with mono-filtration layers, the filtration efficiency was improved slightly by increasing the filtration layer thickness. However, the Maximum Differential Pressure increased during the filtration tests. Adhesion of whiskers to the outer surface decreased the Maximum Differential Pressure to about one-third less than that with the mono-filtration layer. This low Differential Pressure remained constant throughout the duration of the test, with corresponding increases in filtration efficiency.

Satoshi Kitaoka - One of the best experts on this subject based on the ideXlab platform.

  • improved filtration performance of continuous alumina fiber reinforced mullite composites for hot gas cleaning
    Journal of the American Ceramic Society, 2004
    Co-Authors: Satoshi Kitaoka, Naoki Kawashima, Yoshinobu Komatsubara, Akira Yamaguchi, Hisao Suzuki
    Abstract:

    The effect of filtration layer morphology on filtration performance at 673 K was investigated for continuous alumina-fiber-reinforced mullite composite filters that capture fly ash on their outer surfaces. Two types of filtration layers were prepared on the outer surfaces: a mono-layer consisting of mullite agglomerated particulates and a bi-layer, with mullite whiskers formed by a vapor-phase reaction and strongly adhered to the particulates exposed on the outer surfaces. For filters with mono-filtration layers, the filtration efficiency was improved slightly by increasing the filtration layer thickness. However, the Maximum Differential Pressure increased during the filtration tests. Adhesion of whiskers to the outer surface decreased the Maximum Differential Pressure to about one-third less than that with the mono-filtration layer. This low Differential Pressure remained constant throughout the duration of the test, with corresponding increases in filtration efficiency.

  • Improved Filtration Performance of Continuous Alumina‐fiber‐reinforced Mullite Composites for Hot‐Gas Cleaning
    Journal of the American Ceramic Society, 2004
    Co-Authors: Satoshi Kitaoka, Naoki Kawashima, Yoshinobu Komatsubara, Akira Yamaguchi, Hisao Suzuki
    Abstract:

    The effect of filtration layer morphology on filtration performance at 673 K was investigated for continuous alumina-fiber-reinforced mullite composite filters that capture fly ash on their outer surfaces. Two types of filtration layers were prepared on the outer surfaces: a mono-layer consisting of mullite agglomerated particulates and a bi-layer, with mullite whiskers formed by a vapor-phase reaction and strongly adhered to the particulates exposed on the outer surfaces. For filters with mono-filtration layers, the filtration efficiency was improved slightly by increasing the filtration layer thickness. However, the Maximum Differential Pressure increased during the filtration tests. Adhesion of whiskers to the outer surface decreased the Maximum Differential Pressure to about one-third less than that with the mono-filtration layer. This low Differential Pressure remained constant throughout the duration of the test, with corresponding increases in filtration efficiency.

Naoki Kawashima - One of the best experts on this subject based on the ideXlab platform.

  • improved filtration performance of continuous alumina fiber reinforced mullite composites for hot gas cleaning
    Journal of the American Ceramic Society, 2004
    Co-Authors: Satoshi Kitaoka, Naoki Kawashima, Yoshinobu Komatsubara, Akira Yamaguchi, Hisao Suzuki
    Abstract:

    The effect of filtration layer morphology on filtration performance at 673 K was investigated for continuous alumina-fiber-reinforced mullite composite filters that capture fly ash on their outer surfaces. Two types of filtration layers were prepared on the outer surfaces: a mono-layer consisting of mullite agglomerated particulates and a bi-layer, with mullite whiskers formed by a vapor-phase reaction and strongly adhered to the particulates exposed on the outer surfaces. For filters with mono-filtration layers, the filtration efficiency was improved slightly by increasing the filtration layer thickness. However, the Maximum Differential Pressure increased during the filtration tests. Adhesion of whiskers to the outer surface decreased the Maximum Differential Pressure to about one-third less than that with the mono-filtration layer. This low Differential Pressure remained constant throughout the duration of the test, with corresponding increases in filtration efficiency.

  • Improved Filtration Performance of Continuous Alumina‐fiber‐reinforced Mullite Composites for Hot‐Gas Cleaning
    Journal of the American Ceramic Society, 2004
    Co-Authors: Satoshi Kitaoka, Naoki Kawashima, Yoshinobu Komatsubara, Akira Yamaguchi, Hisao Suzuki
    Abstract:

    The effect of filtration layer morphology on filtration performance at 673 K was investigated for continuous alumina-fiber-reinforced mullite composite filters that capture fly ash on their outer surfaces. Two types of filtration layers were prepared on the outer surfaces: a mono-layer consisting of mullite agglomerated particulates and a bi-layer, with mullite whiskers formed by a vapor-phase reaction and strongly adhered to the particulates exposed on the outer surfaces. For filters with mono-filtration layers, the filtration efficiency was improved slightly by increasing the filtration layer thickness. However, the Maximum Differential Pressure increased during the filtration tests. Adhesion of whiskers to the outer surface decreased the Maximum Differential Pressure to about one-third less than that with the mono-filtration layer. This low Differential Pressure remained constant throughout the duration of the test, with corresponding increases in filtration efficiency.

Yoshinobu Komatsubara - One of the best experts on this subject based on the ideXlab platform.

  • improved filtration performance of continuous alumina fiber reinforced mullite composites for hot gas cleaning
    Journal of the American Ceramic Society, 2004
    Co-Authors: Satoshi Kitaoka, Naoki Kawashima, Yoshinobu Komatsubara, Akira Yamaguchi, Hisao Suzuki
    Abstract:

    The effect of filtration layer morphology on filtration performance at 673 K was investigated for continuous alumina-fiber-reinforced mullite composite filters that capture fly ash on their outer surfaces. Two types of filtration layers were prepared on the outer surfaces: a mono-layer consisting of mullite agglomerated particulates and a bi-layer, with mullite whiskers formed by a vapor-phase reaction and strongly adhered to the particulates exposed on the outer surfaces. For filters with mono-filtration layers, the filtration efficiency was improved slightly by increasing the filtration layer thickness. However, the Maximum Differential Pressure increased during the filtration tests. Adhesion of whiskers to the outer surface decreased the Maximum Differential Pressure to about one-third less than that with the mono-filtration layer. This low Differential Pressure remained constant throughout the duration of the test, with corresponding increases in filtration efficiency.

  • Improved Filtration Performance of Continuous Alumina‐fiber‐reinforced Mullite Composites for Hot‐Gas Cleaning
    Journal of the American Ceramic Society, 2004
    Co-Authors: Satoshi Kitaoka, Naoki Kawashima, Yoshinobu Komatsubara, Akira Yamaguchi, Hisao Suzuki
    Abstract:

    The effect of filtration layer morphology on filtration performance at 673 K was investigated for continuous alumina-fiber-reinforced mullite composite filters that capture fly ash on their outer surfaces. Two types of filtration layers were prepared on the outer surfaces: a mono-layer consisting of mullite agglomerated particulates and a bi-layer, with mullite whiskers formed by a vapor-phase reaction and strongly adhered to the particulates exposed on the outer surfaces. For filters with mono-filtration layers, the filtration efficiency was improved slightly by increasing the filtration layer thickness. However, the Maximum Differential Pressure increased during the filtration tests. Adhesion of whiskers to the outer surface decreased the Maximum Differential Pressure to about one-third less than that with the mono-filtration layer. This low Differential Pressure remained constant throughout the duration of the test, with corresponding increases in filtration efficiency.

Akira Yamaguchi - One of the best experts on this subject based on the ideXlab platform.

  • improved filtration performance of continuous alumina fiber reinforced mullite composites for hot gas cleaning
    Journal of the American Ceramic Society, 2004
    Co-Authors: Satoshi Kitaoka, Naoki Kawashima, Yoshinobu Komatsubara, Akira Yamaguchi, Hisao Suzuki
    Abstract:

    The effect of filtration layer morphology on filtration performance at 673 K was investigated for continuous alumina-fiber-reinforced mullite composite filters that capture fly ash on their outer surfaces. Two types of filtration layers were prepared on the outer surfaces: a mono-layer consisting of mullite agglomerated particulates and a bi-layer, with mullite whiskers formed by a vapor-phase reaction and strongly adhered to the particulates exposed on the outer surfaces. For filters with mono-filtration layers, the filtration efficiency was improved slightly by increasing the filtration layer thickness. However, the Maximum Differential Pressure increased during the filtration tests. Adhesion of whiskers to the outer surface decreased the Maximum Differential Pressure to about one-third less than that with the mono-filtration layer. This low Differential Pressure remained constant throughout the duration of the test, with corresponding increases in filtration efficiency.

  • Improved Filtration Performance of Continuous Alumina‐fiber‐reinforced Mullite Composites for Hot‐Gas Cleaning
    Journal of the American Ceramic Society, 2004
    Co-Authors: Satoshi Kitaoka, Naoki Kawashima, Yoshinobu Komatsubara, Akira Yamaguchi, Hisao Suzuki
    Abstract:

    The effect of filtration layer morphology on filtration performance at 673 K was investigated for continuous alumina-fiber-reinforced mullite composite filters that capture fly ash on their outer surfaces. Two types of filtration layers were prepared on the outer surfaces: a mono-layer consisting of mullite agglomerated particulates and a bi-layer, with mullite whiskers formed by a vapor-phase reaction and strongly adhered to the particulates exposed on the outer surfaces. For filters with mono-filtration layers, the filtration efficiency was improved slightly by increasing the filtration layer thickness. However, the Maximum Differential Pressure increased during the filtration tests. Adhesion of whiskers to the outer surface decreased the Maximum Differential Pressure to about one-third less than that with the mono-filtration layer. This low Differential Pressure remained constant throughout the duration of the test, with corresponding increases in filtration efficiency.