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Carbon capture in molten salts

机译:熔融盐中的碳捕获

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AbstractCapture and storage of fossil carbon emitted to the atmosphere from anthropogenic sources has been identified as a key technology for keeping human-induced global warming below 2°C. Available technologies have not achieved widespread impact due to costs related to increased energy consumption and expensive, large process equipment. Here, we show how molten inorganic halide salt-based mixtures containing CaO may be utilized for selective capture and subsequent controlled release of carbon dioxide from diluted flue gases. Highly efficient absorption is demonstrated in a fluoride-based liquid, absorbing close to 100% of the CO2 from a simulated flue gas with an absorbing column height of only 10 cm. Greater than 90% carbonation with 80% regeneration to CaO was recorded. Excellent cyclability has been achieved with a chloride-based liquid with 60% carbonation and 100% regeneration to CaO during four cycles. The high efficiencies may enable extraction of CO2 from highly diluted gas mixtures.
机译:摘要人为来源排放到大气中的化石碳的捕获和储存已被确定为将人类引起的全球变暖保持在2°C以下的关键技术。由于与能耗增加和昂贵的大型工艺设备相关的成本,可用技术尚未获得广泛的影响。在这里,我们显示了如何将包含CaO的熔融无机卤化物盐基混合物用于选择性捕获和随后从稀烟道气中二氧化碳的受控释放。在氟化物基液体中证明了高效吸收,从模拟烟道气中吸收了近100%的CO 2 ,吸收塔高度仅为10cm。记录到大于90%的碳酸化,> 80%的CaO再生。用氯化物基液体在四个循环中具有60%的碳酸化和100%的CaO再生能力,实现了出色的循环性。高效能可以从高度稀释的气体混合物中提取CO 2

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