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Design considerations for a solar-powered desalination system for remote communities in Australia

机译:澳大利亚偏远社区太阳能淡化系统的设计注意事项

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摘要

Water in many areas of Australia is scarce and of poor quality. In some areas high levels of treatment are required either due to contamination of waters or due to high salinity. Nanofiltration (NF) and low-pressure reverse osmosis membranes are well-recognized technologies to treat waters of qualities ranging from low salinity surface water to high salinity seawater. In remote communities the operation of such facilities may be limited by the availability of electricity. Solar, or photovoltaic, energy is the ideal source of renewable energy in Australia to overcome this problem. This paper considers the various options for a small system, designed to deliver a permeate flow of 400–1000 l/d from brackish wells. The most suitable membrane for salt retention and very high organics retention was selected and the pump energy requirements calculated. A submerged ultrafiltration (UF) membrane is used as an alternative to the traditional sand and/or prefilter cartridges. The removal of natural organics is important where disinfection of the water is required, as chlorination of waters containing natural organics may produce potentially carcinogenic by-products.
机译:澳大利亚许多地区的水稀缺且质量较差。在某些地区,由于水的污染或高盐度,需要高水平的处理。纳滤(NF)和低压反渗透膜是公认的技术,用于处理从低盐度地表水到高盐度海水的各种质量的水。在偏远社区,此类设施的运营可能会受到电力供应的限制。太阳能是澳大利亚克服该问题的理想可再生能源。本文考虑了小型系统的各种选择,这些系统旨在从微咸水井中输送400-1000 l / d的渗透水。选择最适合保留盐和非常高的有机物保留的膜,并计算泵的能量需求。浸没式超滤(UF)膜可替代传统的沙子和/或预滤器滤芯。在需要对水进行消毒的地方,去除天然有机物很重要,因为含天然有机物的水氯化会产生潜在的致癌副产物。

著录项

  • 作者

    Richards B.S.; Schäfer Andrea;

  • 作者单位
  • 年度 2002
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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