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Possibilities for the efficient utilisation of spent geothermal waters

机译:有效利用废地热水的可能性

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摘要

Waters located at greater depths usually exhibit high mineral content, which necessitates the use of closed systems, i.e. re-injecting them into the formation after recovering the heat. This significantly reduces investment efficiency owing to the need to drill absorption wells and to perform anti-corrosion and anti-clogging procedures. In this paper, possibilities for the efficient utilisation of cooled geothermal waters are considered, particularly with respect to open or mixed geothermal water installations. Where cooled water desalination technologies are used, this allows the water to be demineralised and used to meet local needs (as drinking water and for leisure purposes). The retentate left as a by-product of the process contains valuable ingredients that can be used for balneological and/or leisure purposes. Thus, the technology for desalinating spent geothermal waters with high mineral content allows improved water management on a local scale and makes it possible to minimise the environmental threat resulting from the need to dump these waters into waterways or surface water bodies and/or inject them into the formation. The paper is concerned with Polish geothermal system and provides information about the parameters of Polish geothermal waters.
机译:位于更深深度的水通常具有较高的矿物质含量,这需要使用封闭的系统,即在回收热量后将其重新注入地层。由于需要钻吸收井以及执行防腐蚀和防堵塞程序,因此大大降低了投资效率。在本文中,考虑了有效利用冷却的地热水的可能性,特别是在露天或混合地热水装置方面。在使用冷却水淡化技术的地方,这可以对水进行软化处理,并满足当地需求(如饮用水和休闲用途)。该过程的副产品残留物含有有价值的成分,可用于美容和/或休闲用途。因此,用于使具有高矿物质含量的废地热水淡化的技术可以改善局部规模的水管理,并可以最大程度地减少因将这些水倒入水道或地表水体和/或注入水中而造成的环境威胁。它的成形。本文涉及波兰地热系统,并提供有关波兰地热水参数的信息。

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