利用固体和水吸附剂从大气中捕集二氧化碳的新工艺

Akash Talapatra
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引用次数: 0

摘要

直接从空气中捕集二氧化碳的工艺已在中试工厂发展到商业规模。这样做是为了通过应用直接空气捕获(DAC)过程,从空气中捕获的二氧化碳可以用作生产无碳可再生燃料的原料或原材料。在中试装置中,使用一些固体和水吸附剂是不可能实现这种捕获方式的。这个捕获过程的成功取决于主要和次要工厂操作的适当配置。热量和质量平衡必须有助于发现每个中试工厂的数据。这个过程的设计模型是这样的,以便捕获的二氧化碳可以以15MPa的速度输送到中试工厂,为此,能量输入要求分别约为8.81GJ或5.25GJ的天然气和0千瓦时或336千瓦时的电力。然后对中试接触器、反应器、煅烧炉的所有结果进行优化,以降低捕集过程的处理成本。在过程结束后观察到,从周围空气中捕获每吨二氧化碳的运行成本在50美元到100美元之间,而整个过程的总平衡成本在94美元到232美元/t-CO2之间。如果它考虑到其他具体的选择,如金融安全、环境和生态安排等,那么这个DAC过程将是未来几十年从空气中捕获二氧化碳的最可靠的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Process of Capturing Carbon Dioxide Gas From The Atmosphere Using Solid and Aqueous Sorbents in Pilot Plant
The capturing process of CO2 directly from air has been developed largely considering with commercial scale in pilot plants. This is done so that the capture CO2 from air can be used as a feedstock or raw material for producing carbon free renewable fuels by applying direct air capture (DAC) process. This way of capturing is gone to be possible with using some solid & aqueous sorbents in pilot plant. The success of this capturing process is depended on the appropriate configurations of both major & minor plant operations. Heat & mass balance are required necessarily to contribute on the finding of each pilot plants data. The design of this process is modeled like this so that the captured CO2 can be delivered at 15MPa into the pilot plant & for this, the requirements of energy inputs are about 8.81GJ or 5.25GJ of natural gas & 0 KWHr or 336KWHr of electricity respectively. Then all the results finding from the pilot contactor, reactor, calciner are optimized to reduce the processing cost of the capturing process. It is observed after the ending of the process that the amount of operating cost is ranged between 50$ to 100$ to capture per ton of CO2 from surrounding air where the total levelized cost of the whole process ranges between 94$ to 232$/t-CO2. If it considers the other specific choices such as financial safety, environ mental & ecological arrangements etc. then this DAC process would be the best reliable solution to capture the CO2 from air in upcoming decades.
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