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DEPTH STRUCTURE FEATURES OF LARGE ZONES OF HYDROGEN DEGASSING IN GERMANY BY RESULTS OF FREQUENCY-RESONANCE PROCESSING OF SATELLITE AND PHOTOS IMAGES

The results of the application of the mobile direct-prospecting technology of frequency-resonance processing and interpretation of satellite images and photographs in large areas and local areas of hydrogen degassing in German various regions are presented. Experimental reconnaissance studies were carried out to study the features of the deep structure of hydrogen-degassing areas.

Instrumental measurements confirmed the presence of large zones of hydrogen degassing in the areas of basalt volcanoes in Bavaria. Signals at the frequencies of hydrogen, basalts and healing water were recorded at the sites performed for the hydrogen migration. Measurements recorded the facts of hydrogen migration into the atmosphere. When scanning the cross-section, responses from hydrogen are recorded from the upper edges of basaltic volcanoes to their roots. Signals at hydrogen frequencies were also recorded from limestones, dolomites, and marls overlying the basalts from above (including at shallow depths). Experimental studies have also shown that siliceous rocks can be a good seal for hydrogen. There is no hydrogen migration into the atmosphere within basalts, overlapped by siliceous rocks. The obtained results of experimental work are also additional evidence in favour of the "volcanic" model of the formation of various structural elements and the external appearance of the Earth, as well as deposits of combustible and ore minerals (including hydrogen and water).

The use of mobile and low-cost technology will significantly speed up the exploration process for hydrogen, as well as reduce the financial costs for its implementation.

Keywords. Hydrogen,basalts, limestones,healing water, abiogenic genesis,volcano,direct searching,remote sensing data

Details

Author
Nikolay Yakimchuk1, Ignat Korchagin2, Arzu Javadova3
Institutionen
1Institute of Applied Problems of Ecology, Geophysics and Geochemistry, Laboratorny Lane, Kyiv, Ukraine; 2Institute of Geophysics, NAS of Ukraine, 32, Palladin Ave., Kyiv, 03680, Ukraine; 3Micropro GmbH , Germany
Veranstaltung
GeoBerlin 2023
Datum
2023
DOI
10.48380/70ts-3d77