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Flow Measurement of CO2 in a Binary Gaseous Mixture Using an Averaging Pitot Tube and Coriolis Mass Flowmeters

机译:使用平均皮托管和科里奥利质量流量计对二元混合气中的二氧化碳进行流量测量

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摘要

To combat the growing emissions of CO2 from industrial processes, Carbon Capture and Storage (CCS) and Carbon Capture and Utilization technologies (CCU) have been accepted worldwide to address these pressing concerns. So as to efficiently manage material and financial losses across the entire stream, accurate accounting and monitoring through fiscal metering of CO2 in CCS transportation pipelines are core and required features for the CCS technologies. Moreover, these technical requirements are part of the legal compliance schemes and guidelines from various regulatory bodies. The CO2 transportation pipelines will likely have multiple inputs from different capture plants, each with varying composition of CO2 and thus introducing impurities into the CO2 stream. The presence of other ordinary or hydrocarbon gases in the CO2 gas stream could affect the functionality of metering instruments by introducing additional errors, particularly in the case of volumetric flowmeters. In this study, volumetric and direct mass measurement methods for the flow measurement of CO2 mixtures using two totally different metering principles are experimentally evaluated. An Averaging Pitot Tube with Flow Conditioning Wing (APT-FCW) and Coriolis mass flowmeters (CMF) are used to assess the flow metering of CO2 in a binary gaseous mixture. Different gases (nitrogen, air, oxygen, argon and propane) are diluted as contaminants into the pure CO2 gas flow for various mass fractions to produce an adulterated mixture of the CO2 gas. Comparative analysis of the measurement results under these flow conditions relative to that of pure CO2 gas show that the measurement error of the APT-FCW sensor increases with the mass fraction of the diluent component, and gases with density closer to that of CO2 have a much lesser effect on the performance of the APT-FCW flow sensor for smaller mass fractions. The CMF proved to be very reliable in the gas combination processes and as a reference meter for the APT-FCW sensor. Further analytical observations are discussed in detail.
机译:为了应对工业过程中不断增长的二氧化碳排放,碳捕集与封存(CCS)和碳捕集与利用技术(CCU)已被全世界接受以解决这些紧迫的问题。为了有效管理整个流程中的物质和财务损失,CCS运输管道中通过二氧化碳的财政计量进行准确的会计和监控是CCS技术的核心和必要功能。此外,这些技术要求是各个监管机构的法律合规计划和指南的一部分。 CO2输送管道将可能有来自不同捕集工厂的多个输入,每个输入具有不同的CO2组成,因此会将杂质引入CO2流中。 CO2气流中存在其他普通气体或碳氢化合物气体会引起额外的误差,从而影响计量仪表的功能,尤其是在体积流量计的情况下。在这项研究中,实验评估了使用两种完全不同的计量原理对CO2混合物进行流量测量的体积和直接质量测量方法。带流量调节翼的平均皮托管(APT-FCW)和科里奥利质量流量计(CMF)用于评估二元气态混合物中CO2的流量计量。将不同的气体(氮气,空气,氧气,氩气和丙烷)作为污染物稀释成各种质量分数的纯CO2气流,以产生掺假的CO2气体混合物。在这些流动条件下相对于纯CO2气体的测量结果的比较分析表明,APT-FCW传感器的测量误差随稀释剂组分的质量分数而增加,并且密度更接近CO2的气体质量分数较小时,对APT-FCW流量传感器性能的影响较小。 CMF被证明在气体组合过程中非常可靠,并且可以作为APT-FCW传感器的参考仪表。进一步讨论了分析意见。

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