Direct gas recirculation heater for optimal desorption of gases in cryogenic gas storage containers
    7.
    发明申请
    Direct gas recirculation heater for optimal desorption of gases in cryogenic gas storage containers 有权
    直接气体循环加热器,用于在低温气体储存容器中最佳解吸气体

    公开(公告)号:US20070261552A1

    公开(公告)日:2007-11-15

    申请号:US11434384

    申请日:2006-05-15

    IPC分类号: B01D53/02

    摘要: A cryogenic gas storage system for optimal desorption of adsorbed gases, wherein a gas storage material is subjected to enhanced, ample selected recirculation of gas of the same type as the adsorbed gas, at suitable temperature and pressure, so as to supply of heat energy to the material and thereby provide optimal desorption of the gas. Output gas is heated by ambient heat or dissipation heat utilizing at least one heat exchanger. A portion of the output gas goes to a gas consumer, the remainder is fed back to the container.

    摘要翻译: 一种用于吸附气体的最佳解吸的低温气体存储系统,其中气体储存材料在合适的温度和压力下经受与吸附气体相同类型的气体的增强,充分选择的再循环,以便将热能供应到 从而提供气体的最佳解吸附。 利用至少一个热交换器,通过环境热或散热来加热输出气体。 输出气体的一部分进入气体消耗器,其余部分被反馈回容器。

    Direct gas recirculation heater for optimal desorption of gases in cryogenic gas storage containers
    10.
    发明授权
    Direct gas recirculation heater for optimal desorption of gases in cryogenic gas storage containers 有权
    直接气体循环加热器,用于在低温气体储存容器中最佳解吸气体

    公开(公告)号:US07611566B2

    公开(公告)日:2009-11-03

    申请号:US11434384

    申请日:2006-05-15

    IPC分类号: F17C11/00 B01D53/14

    摘要: A cryogenic gas storage system for optimal desorption of adsorbed gases, wherein a gas storage material is subjected to enhanced, ample selected recirculation of gas of the same type as the adsorbed gas, at suitable temperature and pressure, so as to supply of heat energy to the material and thereby provide optimal desorption of the gas. Output gas is heated by ambient heat or dissipation heat utilizing at least one heat exchanger. A portion of the output gas goes to a gas consumer, the remainder is fed back to the container.

    摘要翻译: 一种用于吸附气体的最佳解吸的低温气体存储系统,其中气体储存材料在合适的温度和压力下经受与吸附气体相同类型的气体的增强,充分选择的再循环,以便将热能供应到 从而提供气体的最佳解吸附。 利用至少一个热交换器,通过环境热或散热来加热输出气体。 输出气体的一部分进入气体消耗器,其余部分被反馈回容器。