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    • 1. 发明申请
    • MASS TRANSFER SYSTEMS
    • WO2019115831A1
    • 2019-06-20
    • PCT/EP2018/085300
    • 2018-12-17
    • FJELL BIODRY AS
    • STRAND, AsbjørnROUT, Kumar RanjanCHEN, De
    • B01D53/08B01D53/62B01D53/96B01D53/83
    • B01D53/08B01D53/62B01D53/83B01D53/96B01D2251/606B01D2253/112B01D2253/1124B01D2255/2045B01D2257/504B01D2259/4009B01D2259/402
    • Disclosed herein is a gas capture system comprising: a gas inlet arranged to receive a gas flow into the system; a gas outlet arranged to provide a gas flow out of the system; a gas capture region for mass transfer between a gas and a sorbent of the gas; and a sorbent regeneration region for regenerating the sorbent by heating the sorbent so that the sorbent releases a gas; wherein: the gas capture region is arranged to receive sorbent from the sorbent regeneration region; the sorbent regeneration region is arranged to receive sorbent for regeneration from the gas capture region; the sorbent is a solid sorbent of carbon dioxide gas; and the gas capture region comprises: a sorbent inlet arranged to receive an input of sorbent into the gas capture region; a sorbent outlet arranged to provide an output of sorbent from the gas capture region; one or more mass transfer regions arranged between the sorbent inlet and the sorbent outlet such that, in use, the sorbent is retained within the one or more mass transfer regions as the sorbent moves through the mass transfer regions and the mass transfer between the gas and the sorbent occurs in the one or more mass transfer regions; a first gas chamber; and a second gas chamber, that is different from the first gas chamber; wherein the first gas chamber, second gas chamber and one or more mass transfer regions are arranged such that, in use, there is a flow path for gas that comprises gas flowing from the first gas chamber into one of the one or more mass transfer regions, the gas then flowing from said one of the mass transfer regions into the second gas chamber and the gas then flowing from the second gas chamber back into said one of the mass transfer regions.
    • 4. 发明申请
    • 吸着処理装置
    • 吸附处理装置
    • WO2017170207A1
    • 2017-10-05
    • PCT/JP2017/011965
    • 2017-03-24
    • 東洋紡株式会社
    • 川田 和之加賀田 辰也
    • B01D53/06B01D53/44B01D53/83
    • B01D53/06B01D53/44B01D53/83
    • 吸着処理装置100は、複数の吸着体30が筒孔90aを有する円筒状に配置された筒状ロータ90と、互いに区画された第1領域R1および第2領域R2とを備え、筒状ロータ90の筒軸Cは、水平方向に延在し、筒孔90aは、一端が閉塞し、他端が開口しており、第1領域R1は、内周側流路形成部材4および外周側流路形成部材5に対して複数の吸着体30の一部が気密または液密に連通する領域であり、第2領域R2は、筒孔90aの他端の開口から流出するように、筒状ロータ90の外周側から内周側に向けて流体が吸着体30に導入される領域、または、筒孔90aの他端の開口から流入した流体が、筒状ロータ90の内周側から外周側に向けて、吸着体30に導入される領域である。
    • 吸附处理装置100具备圆筒状的转子90,该圆筒状的转子90将多个吸附体30配置成具有圆筒状的孔90a,第一区域R 1以及第二区域R 2 圆筒形转子90的圆筒轴线C在一端封闭而另一端开口的水平方向上延伸,第一区域R1由内周侧流路 多个吸引体30的一部分以气密或液密的方式与成形部件4和外周流路形成部件5连通,第二区域R 2从圆柱形孔90a的另一端的开口流出 从圆筒状转子90的外周侧向内周侧的流体流入吸附体30的区域或从筒状孔90a的另一端流入的区域流入筒状转子90的区域 并且从内周侧向外周侧导入吸附体30。