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首页> 外文期刊>International Journal of Greenhouse Gas Control >Towards ‘green’ geothermal energy: Co-mineralization of carbon and sulfur in geothermal reservoirs
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Towards ‘green’ geothermal energy: Co-mineralization of carbon and sulfur in geothermal reservoirs

机译:走向“绿色”地热能:地热储层中碳和硫的共矿化

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Geothermal fluid utilization is considered one of the green energy sources. Yet, mitigation strategies must be applied to reduce the associated pollutants like carbon dioxide (CO2) and toxic hydrogen sulfide (H2S) emissions. One suggested method is the re-injection of the two gases back into the geothermal reservoir wherein carbon and sulfur are expected to mineralize naturally for a long-term underground storage. However, CO2and H2S mineralization rates for natural systems are not well defined. To address the feasibility of such sequestration, experiments were conducted at 250?°C for several reservoir rock types, ranging from basaltic to silicic. Analysis of solution composition and secondary mineralogy confirmed the precipitation of Fe-Ca carbonates and Fe sulfide for all the rocks within days. The measured mineralization rates indicate that ~0.2–0.5?t of CO2, and ~0.03–0.05?t of H2S can be sequestrated annually per cubic meter of rock, depending on reservoir lithology and surface area. Calculations show that a total rock sequestration capacity of ~0.03?km3would be sufficient to store the annual world CO2and H2S geothermal emissions. These findings indicate efficient abatement of CO2and H2S at field conditions, confirming the strategy potential for at least the typical 50 years-lifetime of geothermal power plants.
机译:地热流体利用被认为是绿色能源之一。然而,必须施加缓解策略以减少二氧化碳(CO2)和毒性硫化物(H2S)排放等相关污染物。一种建议的方法是将两个气体重新注入到地热储层中,其中预期碳和硫在很长期地下储存中自然矿化。然而,CO2ARD天然系统的矿化率没有明确定义。为了解决这种封存的可行性,实验在250°C下进行几种储层岩石类型,从玄武岩到硅。溶液组合物和继发性矿物学的分析证实了在几天内所有岩石的Fe-Ca碳酸酯和Fe硫化物的沉淀。测量的矿化速率表明,每立方米岩石每立方米,每立方米〜0.2-0.5℃的CO 2,〜0.03-0.05μl的〜0.03-0.05℃,取决于水库岩性和表面积。计算表明,总岩石封存能力〜0.03?KM3将足以储存年度世界CO2和H2S地热排放。这些发现表明在现场条件下有效地减轻CO2和H2S,确认至少典型50年的地热发电厂的终身潜力。

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