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CCD Series No-15: simple design batch SWRO-CCD units of high recovery and low energy without ERD for wide range flux operation of high cost-effectiveness

机译:CCD系列No-15:简单设计的批量生产的SWRO-CCD单元,具有高回收率和低能耗而无需ERD,可在宽范围的光通量下运行,具有较高的成本效益

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Closed-circuit desalination (CCD) is a batch process of low energy without need for an energy recovery device (ERD), high recovery irrespective of the number of elements per module, and wide range flux independent of cross-flow and/or recovery, which can be made continuous by the engagement of a side conduit for brine replacement with fresh feed. Batch units for seawater desalination (SWRO-CCD) of the general NMEn (n=1-3) design, where N stands for the number of modules and n for the number of elements per module, are low-cost systems since avoid the need for ERD and the valves means for the making such a process continuous. Such SWRO-CCD batch units, which pose for recharge between desalination steps, can supply 10 -> 1,200m(3)/d low-cost seawater permeates sufficient for communities of 100 -> 12,000 resident on the basis of 100L/d/person and for much larger communities if supplied permeates used primarily for drinking and cooking applications. Batch SWRO-CCD units are ideal for small seashore communities with access to shallow beach wells in light of their low-energy consumption and great operational flexibility such as of low flux energy saving mode during night time of low demand with increased production as function of demand at higher flux and greater energy expense during daytime. The wide range flux performance capability of the referred batch units make them ideal for integration with renewable energy sources through solar panels and/or small wind turbines. The energy consumption and permeates quality (parenthesis) as function of flux for the referred units with ME3 (E=SWC6-MAX) modules' designs for ocean seawater (35,000ppm) operation of 50% recovery using pressurizing means of 85% efficiency are as follows: 1.79kWh/m(3) (595ppm) at 13Lmh; 1.97kWh/m(3) (388ppm) at 20Lmh; 2.12kWh/m(3) (309ppm)at 25Lmh; and 2.25kWh/m(3) (259ppm)at 30Lmh. The experimentally confirmed cited energy figures, even at high flux, manifest high-energy conversion efficiency unattainable by conventional SWRO techniques.
机译:闭路海水淡化(CCD)是一种低能耗的分批过程,不需要能量回收装置(ERD),无论每个模块的元素数量如何,回收率都很高,并且宽通量与横流和/或回收率无关,可以通过将侧导管接合以用新鲜饲料代替盐水来使其连续。 NMEn(n = 1-3)常规设计的海水淡化批处理单元(SWRO-CCD)是低成本系统,因为其中N代表模块数量,n代表每个模块中元素的数量,因此避免了使用用于ERD的阀门和用于使该过程连续进行的阀门装置。这样的SWRO-CCD批处理单元在淡化步骤之间进行补给,可以提供10-> 1,200m(3)/ d的低成本海水,足以容纳100-> 12,000居民的社区(以100L / d /人为基础)对于更大的社区,如果提供的渗透物主要用于饮用和烹饪应用。批次式SWRO-CCD装置具有能耗低,操作灵活性强(例如在需求低迷的夜间低通量节能模式,产量随需求增加而变化)的特点,因此是能够进入浅滩海滩的小型海滨社区的理想之选在白天会有更高的通量和更大的能源消耗。所述批处理单元的大范围通量性能使其成为通过太阳能电池板和/或小型风力涡轮机与可再生能源整合的理想之选。对于ME3(E = SWC6-MAX)模块的参考单元,其能量消耗和渗透质量(括号)与ME3(E = SWC6-MAX)模块的设计有关,其中海洋海水(35,000ppm)使用效率为85%的加压装置进行了50%的回收如下:在13Lmh时为1.79kWh / m(3)(595ppm); 20Lmh时为1.97kWh / m(3)(388ppm); 25Lmh时为2.12kWh / m(3)(309ppm); 30Lmh时为2.25kWh / m(3)(259ppm)。实验证实的引用能量数据,即使在高通量下,也显示出常规SWRO技术无法达到的高能量转换效率。

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