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A Messinian model explains the salt contamination of the Mediterranean Coastal Springs

机译:Messinian模型解释了地中海沿海泉水的盐污染

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Mediterranean submarine karst springs could feed millions of persons in areas that suffer from scarcity of water but they are brackish which limits their use. The water comes from deep karst galleries which were explored by cave divers. There were many attempts to catch the water by building dams or bells to prevent sea intrusion in the cave, or to augment the water head for lowering the haline interface, according to the Ghyben-Herzberg relation. They failed as the water remained brackish upstream to the works. Recent studies show that salinity is acquired at a very important depth ( 200 m) by mixing of fresh water and sea water in deep zones where karst galleries were dug during the Messinian salinity crisis (5.9-5.3 Ma), when the sea level dropped down to 1500-2500 m. The validation of this Messinian model is a starting point for the use of this water resource by drilling deep wells, upstream of the galleries junction or by blocking the intrusion in the Messinian galleries.
机译:地中海潜艇喀斯特斯普林斯可以在患有水资源稀缺的地区饲养数百万人,但它们是淡淡的,限制了他们的使用。水来自洞穴潜水员探索的深喀斯特画廊。根据Ghyben-Herzberg的关系,有许多尝试通过建造水坝或钟声来防止洞穴入侵,或增加水头以降低哈林界面。他们失败了,因为水仍然是作品上游的淡淡。最近的研究表明,通过在喀斯特盐度危机(5.9-5.3MA)中挖出的深处地区,在淡水和海水中挖出淡水和海水(5.9-5.3 mA)时,在淡水和海水中挖出淡水和海水,在非常重要的深度(> 200米)中获得盐度。低至1500-2500米。该Messinian模型的验证是通过钻井深井,画廊交界处的上游或阻挡Messinian画廊的入侵来使用这种水资源的起点。

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