Mochamad Iqbal , M. Arif Al-Hassan , Niniek Rina Herdianita , Bella Restu Juliarka
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引用次数: 0
Abstract
The Ulubelu geothermal field is located in Lampung Province, Indonesia, about 125 km west of Bandar Lampung City. This field is utilized as a power plant with an installed capacity of 220 MW operated since 2012. The Ulubelu geothermal system is a high enthalpy water-dominated reservoir and has temperature around 265 °C. This study aims to determine the elevation of the recharge area in the Ulubelu geothermal system based on the values of δ2H and δ18O isotopes to support the geothermal use sustainability. Major ions, δ2H, δ18O, and δ13C(DIC) isotopes analysis were carried out on hot springs, lake water, cold springs, and rainwater. The content of the major anions and cations indicates that the hot springs from the Way Panas Group are chloride-type water originating from the reservoir meanwhile the Danau Hijau and Pagar Alam groups are condensates acid-sulphate fluids. Moreover, the calculation using a Na/K and silica geothermometer shows that the reservoir has a temperature around 229 ± 4 °C. Analysis of the δ2H and δ18O isotopes content informs that the origin meteoric water seeped into the geothermal reservoir was δ18O −6.65‰ and δ2H −39.5‰ ranging from 1108 to 1570 masl elevation. Overlaying with the surface terrain map depicts that the recharge area originates from the peak of Mt. Rendingan in the north of Ulubelu and Mt. Sula in the west with 42.9 km2 total area. In conclusion, this study elucidates the recharge area elevation in the Ulubelu geothermal system, offering crucial insights for sustainable geothermal resource management and reservoir origin understanding, thus highlighting its potential for sustainable energy production.
期刊介绍:
Applied Geochemistry is an international journal devoted to publication of original research papers, rapid research communications and selected review papers in geochemistry and urban geochemistry which have some practical application to an aspect of human endeavour, such as the preservation of the environment, health, waste disposal and the search for resources. Papers on applications of inorganic, organic and isotope geochemistry and geochemical processes are therefore welcome provided they meet the main criterion. Spatial and temporal monitoring case studies are only of interest to our international readership if they present new ideas of broad application.
Topics covered include: (1) Environmental geochemistry (including natural and anthropogenic aspects, and protection and remediation strategies); (2) Hydrogeochemistry (surface and groundwater); (3) Medical (urban) geochemistry; (4) The search for energy resources (in particular unconventional oil and gas or emerging metal resources); (5) Energy exploitation (in particular geothermal energy and CCS); (6) Upgrading of energy and mineral resources where there is a direct geochemical application; and (7) Waste disposal, including nuclear waste disposal.