Role of CO 2 in low to medium enthalpy geothermal systems in the Central Betic Cordillera (Spain)
There is growing interest in geothermal energy, which is considered as an efficient energy solution to mitigate rising atmospheric CO . Besides known high enthalpy geothermal systems, increasing attention is paid to low temperature geothermal systems, as they are suitable for local use. Although geo...
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Veröffentlicht in: | The Science of the total environment 2020-02, Vol.705, p.135652 |
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Sprache: | eng |
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Zusammenfassung: | There is growing interest in geothermal energy, which is considered as an efficient energy solution to mitigate rising atmospheric CO
. Besides known high enthalpy geothermal systems, increasing attention is paid to low temperature geothermal systems, as they are suitable for local use. Although geothermal production seems to be an environmentally advantageous renewable energy, it might result in significant CO
emissions. In this study, we investigate the relationship between temperature, fugacity of CO
(fCO
, and mineral buffers in the reservoir conditions, taking the low- to medium- enthalpy thermal waters in the Central Betic Cordillera as case study. Using geochemical modeling, three main groups of waters have been identified depending on temperature, buffering mineral assemblage, and fCO
in their reservoir. A group of waters with a reservoir temperature ranging from 70 to 90 °C and located in the intramountain sedimentary basins shows a fCO
in depth ranging from ~6 × 10
and 6 × 10
. The reservoir chemistry of this water group seems to be mainly controlled by carbonates and evaporites displaying a fCO
variation between depth and surface (ΔfCO
) of 10
. Another intermediate group of waters, located in an active extension zone, displays lower temperature (50-60 °C) and fCO
in the reservoir (from 10
to 10
). Finally, the third group of waters, located on the metamorphic complexes contacts, show the highest estimated temperatures (130-140 °C) and fCO
in the reservoir (1 to 10
). The two latter groups suggest increasing buffering effect of alumino-silicates, in addition to carbonates and quartz. Therefore, we evidenced a strong relationship between temperature and fCO
in the reservoir as well as the potential mineral buffers. We discussed the potential of geothermal systems as clean energy source based on the estimation of the CO
emissions generated by the investigated thermal systems for a practical case of household heating. |
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ISSN: | 1879-1026 |