RAPID CYCLE SYNGAS PRESSURE SWING ADSORPTION SYSTEM
    1.
    发明申请
    RAPID CYCLE SYNGAS PRESSURE SWING ADSORPTION SYSTEM 有权
    快速循环同步压力旋转吸附系统

    公开(公告)号:US20070125228A1

    公开(公告)日:2007-06-07

    申请号:US11559514

    申请日:2006-11-14

    IPC分类号: B01D53/02

    摘要: Embodiments of a rapid cycle PSA apparatus are described that are useful for producing a hydrogen enriched product gas comprising not more than about 50 ppm carbon monoxide by volume and with a hydrogen gas recovery of at least about 70% by adsorptive separation from a syngas feed gas mixture comprising at least about 50 percent hydrogen and at least about 1 percent carbon monoxide by volume. One disclosed embodiment of a rapid cycle PSA apparatus comprised at least 3 adsorber elements each having at least one thin adsorbent sheet material which comprises at least one adsorbent material therein, and a bed size factor less than about 4.0 seconds. Embodiments of a rapid cycle PSA process also are described that utilize disclosed embodiments of the rapid-cycle PSA device.

    摘要翻译: 描述了一种快速循环PSA装置的实施方案,其可用于生产包含不超过约50ppm体积的一氧化碳和通过从合成气进料气体吸附分离至少约70%的氢气回收的富氢产物气体 包含至少约50%氢气和至少约1%体积的一氧化碳的混合物。 快速循环PSA装置的一个公开的实施方案包括至少3个吸附器元件,每个吸附器元件具有至少一个薄吸附片材料,其包含至少一种吸附材料,以及小于约4.0秒的床尺寸因子。 还描述了利用快速循环PSA装置的公开实施例的快速循环PSA方法的实施方案。

    Rapid cycle syngas pressure swing adsorption system
    3.
    发明授权
    Rapid cycle syngas pressure swing adsorption system 有权
    快速循环合成气变压吸附系统

    公开(公告)号:US07763098B2

    公开(公告)日:2010-07-27

    申请号:US11559514

    申请日:2006-11-14

    IPC分类号: B01D53/02

    摘要: Embodiments of a rapid cycle PSA apparatus are described that are useful for producing a hydrogen enriched product gas comprising not more than about 50 ppm carbon monoxide by volume and with a hydrogen gas recovery of at least about 70% by adsorptive separation from a syngas feed gas mixture comprising at least about 50 percent hydrogen and at least about 1 percent carbon monoxide by volume. One disclosed embodiment of a rapid cycle PSA apparatus comprised at least 3 adsorber elements each having at least one thin adsorbent sheet material which comprises at least one adsorbent material therein, and a bed size factor less than about 4.0 seconds. Embodiments of a rapid cycle PSA process also are described that utilize disclosed embodiments of the rapid-cycle PSA device.

    摘要翻译: 描述了一种快速循环PSA装置的实施方案,其可用于生产包含不超过约50ppm体积的一氧化碳和通过从合成气进料气体吸附分离至少约70%的氢气回收的富氢产物气体 包含至少约50%氢气和至少约1%体积的一氧化碳的混合物。 快速循环PSA装置的一个公开的实施方案包括至少3个吸附器元件,每个吸附器元件具有至少一个薄吸附片材料,其包含至少一种吸附材料,以及小于约4.0秒的床尺寸因子。 还描述了利用快速循环PSA装置的公开实施例的快速循环PSA方法的实施方案。

    High density adsorbent structures
    5.
    发明申请
    High density adsorbent structures 审中-公开
    高密度吸附剂结构

    公开(公告)号:US20050129952A1

    公开(公告)日:2005-06-16

    申请号:US10954251

    申请日:2004-09-29

    摘要: High density adsorbent structures may be constructed in parallel passage contactor configurations using improved high density adsorbent sheets. Improved high density adsorbent sheets may be formed using adsorptively active support or substrate materials upon which adsorbent material is applied, such as by coating processes, so that in the resulting high density adsorbent structure both the substrate and the coated adsorbent material are active in adsorption processes. Alternatively, improved high density adsorbent sheets may be formed comprising precursor materials, such as certain clays, which may be coated onto known support materials and thereafter converted to active adsorbent materials using known conversion techniques. This produces high-density adsorbent sheets comprising adsorbent material without inert binder material fractions. Improved self-supporting adsorbent sheets also may be formed without using support material, resulting in higher adsorbent densities relative to known adsorbent sheets.

    摘要翻译: 高密度吸附剂结构可以使用改进的高密度吸附片材在平行通道接触器构造中构造。 改进的高密度吸附片材可以使用吸附性活性载体或其上施加吸附剂材料的基底材料,例如通过涂布方法形成,使得在所得到的高密度吸附剂结构中,基底和涂覆的吸附剂材料在吸附过程中是有活性的 。 或者,可以形成改进的高密度吸附片,其包含前体材料,例如某些粘土,其可涂覆在已知的载体材料上,然后使用已知的转化技术转化为活性吸附剂材料。 这产生了高密度吸附片材,其包括不含惰性粘合剂材料部分的吸附材料。 也可以在不使用载体材料的情况下形成改进的自支撑吸附片,导致相对于已知的吸附片材具有更高的吸附剂密度。