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首页> 外文期刊>International Journal of Greenhouse Gas Control >Investigation of carbon dioxide capture with aqueous piperazine on a post combustion pilot plant-Part I: Energetic review of the process
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Investigation of carbon dioxide capture with aqueous piperazine on a post combustion pilot plant-Part I: Energetic review of the process

机译:燃烧试验厂水性哌嗪对二氧化碳捕获的研究 - 第一部分:对过程的能量综述

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摘要

37.6 wt% piperazine (7 molal) was investigated in a PCC-test facility on the power plant in Durnrohr, Austria. Through the use of real power plant flue gas and the well-conceived dimensions of the test facility, industry-related conditions for full scale applications can be provided. Deviations from measurement results, generated on other test facilities in which piperazine was tested, are discussed scientifically. The specific energy consumption for solvent regeneration can be reduced to 3.17 Glit(co2) (without absorber intercooler and multi-stage flash), resulting in an energy saving of 14% in comparison to 30 wt% MEA. The low CO2 absorption heat of piperazine and the low sensible heat are crucial for the low energy consumption. The optimal solvent flow rate is 20% lower in comparison to that of 30 wt% MEA, resulting in less pumping and cooling demand.
机译:在奥地利州达尔布尔的PCC-Test设施中研究了37.6wt%哌嗪(7莫尔)。 通过使用实际发电厂烟气和测试设施的良好构思尺寸,可以提供与全面应用的行业相关条件。 在测试中,在测试哌嗪的其他测试设施上产生的测量结果偏离,科学地讨论。 溶剂再生的具体能耗可以减少到3.17粘度(CO2)(没有吸收器中冷却器和多级闪光),导致节能与30wt%的MEA相比为14%。 哌嗪的低二氧化碳吸收热量和低可溶性热对低能耗至关重要。 与30wt%的MEA相比,最佳溶剂流速比较低20%,导致泵送和冷却需求较小。

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