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Prospects of Autonomous Volcanic Monitoring Stations: Experimental Investigation on Thermoelectric Generation from Fumaroles

机译:自主火山监测站的前景:喷气孔热电发电的实验研究

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摘要

Fumaroles represent evidence of volcanic activity, emitting steam and volcanic gases at temperatures between 70 and 100 . Due to the well-known advantages of thermoelectricity, such as reliability, reduced maintenance and scalability, the present paper studies the possibilities of thermoelectric generators, devices based on solid-state physics, to directly convert fumaroles heat into electricity due to the Seebeck effect. For this purpose, a thermoelectric generator composed of two bismuth-telluride thermoelectric modules and heat pipes as heat exchangers was installed, for the first time, at Teide volcano (Canary Islands, Spain), where fumaroles arise in the surface at 82 . The installed thermoelectric generator has demonstrated the feasibility of the proposed solution, leading to a compact generator with no moving parts that produces a net generation between 0.32 and per module given a temperature difference between the heat reservoirs encompassed in the 69–86 range. These results become interesting due to the possibilities of supplying power to the volcanic monitoring stations that measure the precursors of volcanic eruptions, making them completely autonomous. Nonetheless, in order to achieve this objective, corrosion prevention measures must be taken because the hydrogen sulfide contained in the fumaroles reacts with steam, forming sulfuric acid.
机译:喷气孔代表火山活动的证据,在70至100之间的温度下会散发蒸汽和火山气体。由于热电的众所周知的优点(例如可靠性,减少维护和可扩展性),因此本文研究了基于塞贝克效应的热电发电机(基于固态物理学的设备)将喷气孔热直接转化为电的可能性。为此,在泰德火山(西班牙加那利群岛)首次安装了由两个碲化铋热电模块和热管组成的热电发电机,该处的富马mar出现在82。已安装的热电发电机已经证明了所提出解决方案的可行性,从而导致了紧凑型发电机,没有活动部件,产生的净发电量在0.32至0.52之间。 给定每个模块的热量,其热库之间的温差在69-86之间。由于有可能向测量火山爆发前兆的火山监测站供电,从而使它们完全自主,因此这些结果变得有趣。然而,为了实现该目的,必须采取防腐蚀措施,因为喷气孔中所含的硫化氢与蒸汽反应形成硫酸。

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