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首页> 外文期刊>Desalination and water treatment >Desalination of brackish groundwater and concentrate disposal by deep well injection
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Desalination of brackish groundwater and concentrate disposal by deep well injection

机译:通过深井注水淡化微咸水和浓缩液

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In the province of Friesland (in the Northern part of The Netherlands), problems have arisen with the abstraction of fresh groundwater due to salinization of wells by upcoming of brackish water. A solution to this problem is to intercept (abstract) the upcoming brackish water, desalinate it with a brackish water reverse osmosis installation, and dispose the concentrate in a deeper, confined aquifer. The fresh-brackish interface in the source aquifer is stabilized by simultaneous abstraction of the fresh and brackish parts. After desalination, the abstracted brackish water provides an additional source for drinking water. To demonstrate the feasibility of this concept a pilot study was set up. In one year about 220.000 m~3 of concentrate was produced and injected. The reverse osmosis installation was carried out under anaerobic conditions without pretreatment and antiscalant dosing. Despite the high iron concentrations (40 mg Fe/1) in the feed water, the installation performed was very stable. Although the concentrate was supersaturated toward carbonate and phosphate minerals (SI > 1), scaling or fouling of the membranes did not occur at recoveries of 50, 70, and 75%. The mass transfer coefficient or normalized flux (at 10℃) was stable at 0.85-10~(-8) m s~(-1) kPa~(-1). Water quality changes in the target aquifer were monitored by two observation wells, at 12 and 24 m distances from the injection well. Also the injection of the supersaturated concentrate did not lead to mineral precipitation in the target aquifer, indicating that deep well injection is technically feasible without risks of injection well or aquifer clogging. The fresh-brackish water interface in the source aquifer remained stable by the simultaneous abstraction of fresh and brackish water. This showed that the so called "fresh-keeper" concept works in practise, providing a successful remedy against salinization of fresh water abstraction wells. Overall, the pilot study showed that brackish groundwater provides an excellent, additional source for drinking water in The Netherlands or in other coastal areas worldwide, where fresh ground-water is scarce or where fresh water wells are threatened by salinization.
机译:在弗里斯兰省(位于荷兰北部),由于咸水的涌入使井盐化,因此抽取新鲜地下水引起了问题。解决此问题的方法是,拦截(提取)即将到来的微咸水,用微咸水反渗透装置淡化淡水,然后将浓缩液处理在更深,更密闭的含水层中。通过同时提取新鲜部分和微咸的部分来稳定源含水层中的新鲜微咸的界面。脱盐后,提取的微咸水为饮用水提供了额外的来源。为了证明该概念的可行性,我们进行了初步研究。一年内生产并注入了约220.000 m〜3的精矿。反渗透装置是在无氧条件下进行的,无需进行预处理和添加防垢剂。尽管进水中铁浓度很高(40 mg Fe / 1),但安装非常稳定。尽管浓缩液对碳酸盐和磷酸盐矿物过饱和(SI> 1),但在回收率分别为50%,70%和75%时,膜并未结垢或结垢。传质系数或归一化通量(10℃时)稳定在0.85-10〜(-8)m s〜(-1)kPa〜(-1)。在距注入井12和24 m处的两个观察井中,监测目标含水层中的水质变化。同样,过饱和浓缩物的注入也不会导致目标含水层中的矿物沉淀,这表明深井注入在技术上是可行的,没有注入井或含水层堵塞的风险。通过同时提取淡水和微咸水,源含水层中的淡微咸水界面保持稳定。这表明所谓的“保鲜”概念在实践中起作用,为防止淡水抽取井的盐碱化提供了成功的补救措施。总体而言,该初步研究表明,在荷兰或全球其他沿海地区(淡水稀少或盐碱化威胁着淡水井),咸淡的地下水为饮用水提供了极佳的额外来源。

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