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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Design of a membrane facility for water potabilization and its application to Third World countries
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Design of a membrane facility for water potabilization and its application to Third World countries

机译:膜膜化水设施的设计及其在第三世界国家的应用

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The origin of this work is the necessity of guaranteeing water quality in underdeveloped countries where the population is supplied with water from rivers, lakes, etc. This water contains a certain number ofviruses, bacteria and other microorganisms, which can cause some diseases. In these countries water disinfection methods are not usually applied or cannot be ensured an appropriate effectiveness. On many occasions water is used in the same condition as it is found at the source. This fact causes a high rate of infection that, although not grave in most cases, has been the origin of major epidemics in some circumstances. Membrane technology that allows disinfection on the basis of molecular size of particles is proposed as an option to the current system of treatment. Membrane processes carry out disinfection by means of size exclusion. At the end of the treatment, chlorination at low doses can be away of keeping water in good condition for long periods of time. The aim of this work is design an ultrafiltration membrane treatment sufficient water disinfection. The proposed membrane module can be extended to N units, with a consequent increment of treated product, adapting the system to demand. An alternative for the design described has been considered. This option consists of a tubular module of manual operation. This facility intends to provide small communities that are geographically isolated from important urban centres with high-quality water.
机译:这项工作的起源是必须保证不发达国家的水质,这些国家的人民从河流,湖泊等那里获得水。这种水中含有一定数量的病毒,细菌和其他微生物,可能引起某些疾病。在这些国家中,通常不使用水消毒方法或无法确保水消毒方法具有适当的有效性。在很多情况下,水的使用条件与水源处的条件相同。这一事实导致很高的感染率,尽管在大多数情况下并不严重,但在某些情况下却已成为主要流行病的起源。膜技术允许根据颗粒的分子大小进行消毒,是目前治疗系统的一种选择。膜工艺通过尺寸排阻进行消毒。在处理结束时,低剂量氯化可能会使水长时间保持良好状态。这项工作的目的是设计一种能对水进行充分消毒的超滤膜处理。所提出的膜组件可以扩展到N个单元,从而增加处理产品的数量,从而使系统适应需求。已经考虑了上述设计的替代方案。该选件包括一个手动操作的管状模块。该设施旨在为与重要城市中心地理隔离的小社区提供优质水。

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