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An Initial Laboratory Prototype Experiment for Sequestration of Atmospheric CO2

机译:隔离大气二氧化碳的初始实验室原型实验

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An initial phase of laboratory investigation has been completed in pursuit of a global-scale methodology for reduction of CO2 in ambient air through direct air capture (DAC). The methodology presented previously by Agee, Orton, and Rogers provides the background for this study. The laboratory prototype experiment presented has been designed to assess the potential for removing CO2 from ambient air by snow deposition. The approach consists of refrigeration to achieve the required CO2 deposition temperature of 135 K at 1 bar of pressure. The refrigerant of choice is liquid nitrogen (LN2) with cooling (77 K) at the top of a cylindrical 26.5-L Pyrex glass sequestration chamber. A highly conductive aluminum base with 14 instrumentation ports rests at the interface between the LN2 reservoir and the sequestration chamber. The cooling and mixing through Rayleigh-Taylor instability achieves uniform deposition temperature. Insulation to maintain the cooling process is provided to sustain CO2 depletion phase change at 135 K. The coldest temperature achieved in experimentation was 125 K. The required cooling period was 4.5 h, with an additional hour to achieve uniform chamber temperatures = 135 K through top-down convective mixing. Experimental measurements showed a reduction of CO2 in the chamber air from initial values of similar to 500 ppmv down to 35 ppmv. Discussion is given to the issue of chamber CO2 frost versus CO2 snowflake formation, as well as the overall relevance of the experiment to DAC through refrigeration and storage in Antarctica to reduce atmospheric CO2.
机译:为了寻求一种通过直接空气捕获(DAC)减少环境空气中的二氧化碳的全球方法,实验室研究的初始阶段已经完成。 Agee,Orton和Rogers先前提出的方法论为这项研究提供了背景。提出的实验室原型实验旨在评估通过积雪从环境空气中清除CO2的潜力。该方法包括制冷,以在1 bar的压力下达到135 K的所需CO2沉积温度。选择的制冷剂是液氮(LN2),在圆柱形26.5-L派热克斯玻璃隔离室的顶部具有冷却(77 K)。 LN2储罐和隔离室之间的接口处有一个具有14个仪器端口的高导电铝制底座。通过瑞利泰勒不稳定性的冷却和混合实现了均匀的沉积温度。提供保温材料以维持冷却过程,以维持CO 2耗尽相的变化为135K。在实验中达到的最冷温度为125K。所需的冷却时间为4.5 h,另外需要一个小时才能达到均匀的室温度<= 135 K自上而下的对流混合。实验测量结果表明,室内空气中的CO2排放量已从初始值(约500 ppmv)减少到35 ppmv。讨论了室内CO2霜与CO2雪花形成之间的关系,以及该实验通过在南极冷冻和储存以减少大气中CO2与DAC的总体相关性。

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