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Precombustion CO2 capture by means of phenol-formaldehyde resin-derived carbons: From equilibrium to dynamic conditions

机译:通过酚醛树脂衍生的碳对燃烧前的二氧化碳进行捕集:从平衡到动态条件

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The performance of two phenol-formaldehyde resin-based activated carbons prepared in our laboratory, as potential adsorbents for precombustion CO2 capture has been evaluated under static (adsorption isotherms) and dynamic (adsorption-desorption cycles conducted in a fixed bed) conditions. Most of the literature on CO2 capture with solid sorbents is based on equilibrium CO2 adsorption capacities, determined from CO2 adsorption isotherms at the desired temperature. However, dynamic testing is required to ascertain the extent to which the equilibrium uptake may be translated into breakthrough capacity. CO2 and H2 adsorption isotherms up to 30 bar were determined in a high-pressure magnetic suspension balance. Equilibrium CO2 uptakes at 15 bar of up to 8.5 mmol g~(-1) at 298 K and 7 mmol g~(-1) at 318 K were attained. Adsorption-desorption cycles by means of pressure and temperature swings were conducted with a simulated shifted-syngas in a purpose-built fixed-bed set-up. With a ternary mixture of CO2/ H2/N2, breakthrough capacities at a total pressure of 15 bar reached 6.5 mmol g~(-1) at 298 K and 5.8 mmol g~(-1) at 318 K. These figures point out the suitability of these adsorbents to be applied to precombustion CO2 capture by means of a PSA process.
机译:在静态(吸附等温线)和动态(固定床吸附-解吸循环)条件下,已经评估了在我们实验室中制备的两种基于苯酚-甲醛树脂的活性炭作为预燃烧CO2捕获的潜在吸附剂的性能。关于用固体吸附剂捕集CO2的大多数文献都是基于平衡的CO2吸附能力,该平衡能力是由所需温度下的CO2吸附等温线确定的。但是,需要动态测试以确定平衡吸收可转化为突破容量的程度。在高压磁悬浮天平中确定了高达30 bar的CO2和H2吸附等温线。在15 bar下,在298 K下达到8.5 mmol g〜(-1)的平衡吸收二氧化碳,在318 K下达到7 mmol g〜(-1)的平衡吸收二氧化碳。在专用的固定床装置中,利用模拟的合成气通过压力和温度波动进行吸附-解吸循环。使用CO2 / H2 / N2的三元混合物,在15 bar的总压力下的穿透容量在298 K下达到6.5 mmol g〜(-1),在318 K下达到5.8 mmol g〜(-1)。这些数字指出了这些吸附剂是否适合通过PSA工艺用于燃烧前的CO2捕集。

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