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首页> 外文期刊>Separation and Purification Technology >High pressure CO2 absorption from natural gas using piperazine promoted 2-amino-2-methyl-1-propanol in a packed absorption column
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High pressure CO2 absorption from natural gas using piperazine promoted 2-amino-2-methyl-1-propanol in a packed absorption column

机译:在填充吸收塔中使用哌嗪促进的2-氨基-2-甲基-1-丙醇从天然气中高压吸收CO2

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Monoethanolamine (MEA) is the most established solvent used in CO2 absorption studies at low-pressure conditions. However, it has several limitations, such as a low CO2 loading capacity, high degradation, and a tendency to corrode processing equipment. Therefore, this study reports the absorption performance of an alternative absorbent: the Piperazine (PZ) promoted 2-Amino-2-Methyl-1-Propanol (AMP) blended solvent for use in the removal of CO2 from natural gas (NC) in high pressure conditions. The performance of the PZ + AMP blended solvent was compared with the MEA solvent according to various operating pressures (0.1-4.0 MPa), in percentage terms of CO2 removal efficiency, as well as the overall volumetric mass transfer coefficient for the gas phase based on unit mol fraction driving force (K(y)a(v)). The absorption experiments were conducted in an absorption column packed with Sulzer metal gauze packing for the effects of total gas flow rate (33-51 kmol/m(2) h), liquid flow rate (2.89-3.97 m(3)/m(2) h), MEA concentration (20-40 wt%) and liquid temperature (30-45 degrees C). From this study, the K(y)a(v) value of the 7 wt% PZ + 23 wt% AMP blended solvent was higher than the value for 30 wt% MEA solvent. Nonetheless, the K(y)a(v) values for both solvents increased from a rising operating pressure, most notably at operating pressures greater than 2.0 MPa. (C) 2015 Elsevier B.V. All rights reserved.
机译:单乙醇胺(MEA)是低压条件下用于CO2吸收研究的最成熟的溶剂。但是,它具有一些局限性,例如低的CO2装载量,高降解性和腐蚀加工设备的趋势。因此,本研究报告了另一种吸收剂的吸收性能:哌嗪(PZ)促进了2-氨基-2-甲基-1-丙醇(AMP)混合溶剂用于从天然气(NC)中去除高浓度二氧化碳压力条件。根据各种工作压力(0.1-4.0 MPa),CO2去除效率的百分比以及气相的总体积传质系数,将PZ + AMP混合溶剂的性能与MEA溶剂进行了比较。单位摩尔分数驱动力(K(y)a(v))。吸收实验在装有Sulzer金属丝网填料的吸收塔中进行,以求出总气体流速(33-51 kmol / m(2)h),液体流速(2.89-3.97 m(3)/ m( 2)h),MEA浓度(20-40 wt%)和液体温度(30-45摄氏度)。根据这项研究,7 wt%PZ + 23 wt%AMP混合溶剂的K(y)a(v)值高于30 wt%MEA溶剂的K(y)a(v)值。尽管如此,两种溶剂的K(y)a(v)值都随着操作压力的升高而增加,最显着的是在大于2.0 MPa的操作压力下。 (C)2015 Elsevier B.V.保留所有权利。

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