首页> 外国专利> Washing hollow fiber membranes and inner or outer skin of filtration installation comprises introducing water to be treated by feeding conduit, collecting treated water by collector, and evacuating water by waste collector

Washing hollow fiber membranes and inner or outer skin of filtration installation comprises introducing water to be treated by feeding conduit, collecting treated water by collector, and evacuating water by waste collector

机译:清洗中空纤维膜和过滤设备的内层或外层包括通过进水导管引入要处理的水,通过收集器收集处理过的水以及通过废物收集器抽空

摘要

The method for washing hollow fiber membranes and inner or outer skin of a filtration installation comprises introducing a water to be treated by a feeding conduit (1) on which modules are connected in parallel or in groups, collecting the treated water by a collector, and evacuating the water by a waste collector parallelly connected on sweeping outlet of the modules. The installation comprises three modules or groups of modules in which each module comprises parallelly branched hollow fibers (3). Ends of the fibers are closed during filtration. The method for washing hollow fiber membranes and inner or outer skin of a filtration installation comprises introducing a water to be treated by a feeding conduit (1) on which modules are connected in parallel or in groups, collecting the treated water by a collector, and evacuating the water by a waste collector parallelly connected on sweeping outlet of the modules. The installation comprises three modules or groups of modules in which each module comprises parallelly branched hollow fibers (3). Ends of the fibers are closed during filtration. The collector comprises a valve for production of all downstream modules. The washing is obtained by sweeping or flushing on the surface of concentrated fibers when the collector of treated liquid is closed. Fixing of an upstream valve takes place between each module or group of modules and feeding conduit, while a downstream valve is fixed between each module or group of modules and the waste water collector. The sweeping of a module or group of modules is carried out by closing the downstream valves of other modules and the valve for production of treated water and by keeping the downstream valve and the upstream valve of a module to be sweeped open, so that the complete flow crosses the single module or group of modules. During sweeping, the water is introduced to an axial end of fibers of module and evacuated to the other axial end through the open downstream valve towards the waste collector. The fibers are laid in closed casing and sweeping takes place on the outer surface of fibers by introducing water at one end of the casing and recovery of water at the other end of the casing. A counter pressure is exerted around the hollow fibers or inner side of hollow fibers to prevent a filtration occurs in areas of fiber placed in greater pressure of the concentrate side than permeate side, and to create a mini-backwash along the entire length of fibers. Rising of the sweeping speed is obtained without the raise of nominal flow of the installation, by carrying out that sweeping in the filtration modules one after the others. The groups of modules are constituted of several modules hydraulically connected in parallel or in series, in a same casing or in the different casings. The sweeping with counter pressure corresponding to a pressure in the treated water greater than the pressure in the water to be treated is carried out along the entire length of the membranes. The counter pressure is obtained by a tank under pressure and through a liquid stock and an extra pump. The counter pressure is based on losses by the upstream valve of the module by flushing and the upstream valve of other modules is open. Conducting a series of flush allowing a flush of all modules for a balance between different modules, begins with a module different for each series. The sweeping of the membrane surfaces is carried out by a diphasic gas mixture such as air and water. An independent claim is included for a device.
机译:洗涤中空纤维膜和过滤设备的内部或外部蒙皮的方法包括:通过进料导管(1)引入要处理的水,在进料导管上并联或成组地连接模块;通过收集器收集处理后的水;以及通过平行连接在模块清扫出口处的废物收集器排空水。该设备包括三个模块或模块组,其中每个模块均包含平行分支的中空纤维(3)。在过滤过程中,纤维的末端是封闭的。洗涤中空纤维膜和过滤设备的内部或外部蒙皮的方法包括:通过进料导管(1)引入要处理的水,在进料导管上并联或成组地连接模块;通过收集器收集处理后的水;以及通过平行连接在模块清扫出口处的废物收集器排空水。该设备包括三个模块或模块组,其中每个模块均包含平行分支的中空纤维(3)。在过滤过程中,纤维的末端是封闭的。集热器包括一个用于生产所有下游模块的阀。当处理液体的收集器关闭时,可通过在浓缩纤维的表面上扫掠或冲洗来获得洗涤效果。上游阀的固定发生在每个模块或模块组与进料管道之间,而下游阀则固定在每个模块或模块组与废水收集器之间。一个模块或一组模块的清扫是通过关闭其他模块的下游阀和用于处理水的阀并保持待清扫模块的下游阀和上游阀打开来完成的。流跨越单个模块或模块组。在清扫期间,水被引入模块纤维的轴向端,并通过打开的下游阀朝着废物收集器排空至另一轴向端。将纤维置于密闭的壳体中,并通过在壳体的一端引入水并在壳体的另一端回收水来在纤维的外表面上进行清扫。在中空纤维或中空纤维的内侧周围施加反压,以防止在浓缩物侧压力高于渗透侧的纤维区域中发生过滤,并在整个纤维长度上产生小型反冲洗。通过在过滤模块中依次进行清扫,可以在不增加设备标称流量的情况下提高清扫速度。模块组由液压地并联或串联连接在同一壳体或不同壳体中的几个模块组成。沿膜的整个长度进行反压吹扫,该反压对应于处理后的水中的压力大于待处理的水中的压力。背压是通过在压力下的储罐,储液罐和额外的泵获得的。背压基于模块上游阀通过冲洗的损失而其他模块的上游阀处于打开状态。进行一系列冲洗,允许对所有模块进行冲洗,以在不同模块之间保持平衡,从每个系列不同的模块开始。膜表面的清扫是通过两相气体混合物(例如空气和水)进行的。设备随附独立声明。

著录项

  • 公开/公告号FR2909291A1

    专利类型

  • 公开/公告日2008-06-06

    原文格式PDF

  • 申请/专利权人 AQUASOURCE SOCIETE ANONYME;

    申请/专利号FR20060010523

  • 发明设计人 BOURDIOL DANIEL;COELHO FRANZ;

    申请日2006-12-01

  • 分类号B01D29/66;B01D63/02;B01D65/02;C02F1;

  • 国家 FR

  • 入库时间 2022-08-21 19:47:08

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