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    • 52. 发明申请
    • THE FLUIDIZED BIOFILM MEDIAS
    • 流体生物膜介质
    • WO2007043733A1
    • 2007-04-19
    • PCT/KR2006/001505
    • 2006-04-21
    • HAN, Sang bae
    • HAN, Sang bae
    • C02F3/10
    • C02F3/10B01J19/30B01J2219/30207B01J2219/30408B01J2219/30416Y02W10/15
    • A fluidized biofilm media formed by two or more outer mesh media, each medium having a vessel- shaped structure formed with a plurality of tubular pores or through holes of a variety of shapes in order to have a large specific surface, and for the water current and bubbles to smoothly communicate, a spacing formed by the media and filled with a microorganism contact material having a large specific surface and porosity, wherein one or more of a group comprising the first and second outer media and the microorganism contact material is formed with one or more materials out of synthetic resin substance and ceramic substance having a relatively larger specific gravity, and the other one or more is formed with synthetic resin substance having a relatively smaller specific gravity, such that a weighted average specific gravity of the assembly- completed biofilm media can be accurately adjusted to cater to the fluidity, and the outer media is disposed with a plurality of assembly holes and assembly rods, enabling to simply and fixedly couple the first and second outer media.
    • 由两个或更多个外部网状介质形成的流化生物膜介质,每个介质具有形成有多个管状孔或多个形状的通孔的容器状结构以具有大的比表面积,并且对于水流 和气泡平滑连通,由介质形成的间隔,并填充有比表面积和孔隙率大的微生物接触材料,其中包含第一和第二外部介质和微生物接触材料的组中的一个或多个形成有一个 或更多的比例重量的合成树脂物质和陶瓷物质的材料,另外一种或多种由具有相对较小比重的合成树脂物质形成,使得组装完成的生物膜的加权平均比重 可以精确地调节介质以适应流动性,并且外部介质设置有多个组装孔和a 组合杆,使得能够简单且牢固地连接第一和第二外部介质。
    • 57. 发明申请
    • SADDLE STRUCTURE FOR REACTIVE DISTILLATION
    • 用于反应蒸馏的三元结构
    • WO98058721A1
    • 1998-12-30
    • PCT/US1998/013326
    • 1998-06-25
    • B01J8/02B01J19/30B01D3/00
    • B01J8/02B01J19/30B01J2219/30203B01J2219/30257B01J2219/30408B01J2219/30416B01J2219/30466
    • A hollow, saddle-shaped packing structure (14) includes a pair of porous outer and inner semi-cylindrical side walls (22, 34) that are spaced from one another to define an interior space, and a particulate catalyst component retained in the interior space between the side walls. The packing structure may be formed by a pair of saddle-shaped shell elements (16, 18), each of which presents one of the side walls and a pair of radially opposed laterally extending flanges (26, 38). The flanges are connected together by tabs (30, 32), welding, or the like, and the interior space between axially spaced marginal edges (24, 36) of the outer and inner shell elements is closed off to retain the particulate catalyst component between the side walls.
    • 中空的马鞍形填料结构(14)包括彼此间隔开以限定内部空间的一对多孔外部和内部半圆柱形侧壁(22,34),以及保留在内部的颗粒状催化剂组分 侧墙之间的空间。 包装结构可以由一对鞍状壳体元件(16,18)形成,每个鞍形壳体元件(16,18)都具有一个侧壁和一对径向相对的横向延伸的凸缘(26,38)。 凸缘通过接头(30,32),焊接等连接在一起,并且外壳和内壳元件的轴向间隔开的边缘(24,36)之间的内部空间被封闭以将颗粒催化剂组分保持在 侧墙。