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Optimization of flocculation process and continuous filtration for sea water primary treatment filtration to reduce SDI for entree to reverse osmosis system

机译:优化絮凝工艺和连续过滤以进行海水初级处理过滤,以减少SDI,从而进入反渗透系统

摘要

Today , Providing drinking water and process water is one of the major problems in most countries ; the surface water often need to be treated to achieve necessary quality, and in this way, technological and also financial difficulties cause great restrictions in operating the treatment units. Although water supply by simple and cheap systems has been one of the important objectives in most scientific and research centers in the world, still a great percent of population in developing countries, especially in rural areas, don't benefit well quality water. One of the big and available sources for providing acceptable water is sea water. There are two ways to treat sea water first evaporation and second reverse osmosis system. Nowadays R.O system has been used for desalination because of low budget price and easily to operate and maintenance. The sea water should be pretreated before R.O plants, because there is some difficulties in raw sea water that can decrease yield point of membranes in R.O system. The subject of this research may be useful in this way, and we hope to be able to achieve complete success in design and construction of useful pretreatment systems for R.O plant. One of the most important units in the sea water pretreatment plant is filtration, the conventional method for filtration is pressurized sand filters, and the subject of this research is about new filtration which is called continuous back wash sand filtration (CBWSF). The CBWSF designed and tested in this research may be used more economically with less difficulty. It consists two main parts first shell body and second central part comprising of airlift pump, raw water feeding pipe, air supply hose, backwash chamber and sand washer as well as inlet and outlet connections. The CBWSF is a continuously operating filter, i.e. the filter does not have to be taken out of operation for backwashing or cleaning. Inlet water is fed through the sand bed while the sand bed is moving downwards. The water gets filtered while the sand becomes dirty. Simultaneously, the dirty sand is cleaned in the sand washer and the suspended solids are discharged in backwash water. We analyze the behavior of CBWSF in pretreatment of sea water instead of pressurized sand filter. There is one important factor which is not suitable for R.O membranes, it is bio-fouling. This factor is defined by Silt Density Index (SDI).measured by SDI. In this research has been focused on decreasing of SDI and NTU. Based on this goal, the prototype of pretreatment had been designed and manufactured to test. The system design was done mainly by using the design fundamentals of CBWSF. The automatic backwash sand filter can be used in small and also big water supply schemes. In big water treatment plants, the units of filters perform the filtration and backwash stages separately, and in small treatment plants, the unit is usually compacted to achieve less energy consumption. The analysis of the system showed that it may be used feasibly for water treating, especially for limited population. The construction is rapid, simple and economic, and its performance is high enough because no mobile mechanical part is used in it, so it may be proposed as an effective method to improve the water quality and consequently the hygiene level in the remote places of the country.
机译:如今,提供饮用水和工艺用水已成为大多数国家的主要问题之一;通常需要对地表水进行处理以达到必要的质量,这样一来,技术和财务上的困难就对处理单元的操作造成了很大的限制。尽管通过简单,廉价的系统供水一直是世界上大多数科学研究中心的重要目标之一,但仍然有很大一部分发展中国家的人口,特别是农村地区的人口,没有从优质的水中受益。提供可接受的水的最大可用来源之一是海水。有两种方法来处理海水:第一蒸发和第二反渗透系统。如今,由于价格低廉且易于操作和维护,R.O系统已用于海水淡化。海水应在R.O工厂之前进行预处理,因为原海水中存在一些困难,会降低R.O系统中膜的屈服点。本研究的主题可能会以这种方式有用,并且我们希望能够在R.O工厂的有用预处理系统的设计和构建中取得完全的成功。海水预处理厂中最重要的单元之一是过滤,传统的过滤方法是加压砂滤器,本研究的主题是关于新的过滤方法,称为连续反洗砂滤(CBWSF)。在本研究中设计和测试的CBWSF可以更经济地使用,难度也较小。它由两个主要部分组成,第一壳体和第二中央部分,包括气举泵,原水进料管,空气供应软管,反冲洗室和洗砂机以及入口和出口连接。 CBWS​​F是连续运行的过滤器,也就是说,不必为反洗或清洁而将其停止运行。当砂床向下移动时,进水通过砂床进给。沙子变脏时水被过滤。同时,在洗砂机中清洗脏的沙子,并将悬浮的固体排放到反冲洗水中。我们分析了CBWSF在海水预处理中而不是加压砂滤器中的行为。有一个重要的因素不适合R.O膜,那就是生物污染。该因子由淤泥密度指数(SDI)定义。在这项研究中,重点是减少SDI和NTU。基于此目标,已设计并制造了预处理原型进行测试。系统设计主要通过使用CBWSF的设计基础来完成。自动反冲洗砂滤器可用于小型和大型供水方案。在大型水处理厂中,过滤器单元分别执行过滤和反冲洗阶段,而在小型处理厂中,通常将单元压缩以减少能耗。对系统的分析表明,该系统可用于水处理,特别是有限的人口。该结构快速,简单且经济,并且由于其中不使用移动机械部件,因此其性能足够高,因此可以被建议作为一种改善水质并因此改善偏远地区卫生水平的有效方法。国家。

著录项

  • 作者

    Majidi Mahmoud;

  • 作者单位
  • 年度 2000
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  • 原文格式 PDF
  • 正文语种 fa
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