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Selection of amine combination for CO2 capture in a packed bed scrubber

机译:填充床洗涤塔 中用于捕获CO 2 的胺组合的选择

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This investigation was to test different blends of tertiary amine; triethanolamine (TEA) into primary amine; Monoethanolamine (MEA) used to capture CO2 in packed bed scrubber with recycle stream. Four different operating parameters: Amine Combination (A), Dilution Water (B), Liquid Flow rate (C), and Gas Flow rate (D) were varied to study the behavior of the system. Moreover, Taguchi method was employed to establish the order of importance of different parameters in the process. A 4 factor and 3 level was chosen for the study and it was explored using L9 (34) orthogonal array design. According to 3-level design 0%, 20% and 30% were chosen for A, 10%, 20% and 30% for B, 1?Lmin?1, 1.5?Lmin?1 and 2?Lmin?1 for C, 8?Lmin?1, 16?Lmin?1 and 20?Lmin?1 for D. To understand the effectiveness order of different operating parameters, three factors namely Absorption efficiency (E), Absorption Rate (RA), and Scrubbing Factor (E) were calculated upon which the order was compared. The highest efficiency of 92.2% was achieved with 20% TEA. However, with 30% of TEA and 20% solvent mix maximum scrubbing factor (E) of 0.63?mol-CO2/mol-Solvent was achieved. As per Taguchi analysis the significance sequence for absorption efficiency (?) was B?>?C?>?D?>?A; for absorption rate C?>?B?>?D?>?A and for scrubbing factor it was C?>?B?>?D?>?A. The blending of tertiary amine seemed advantageous for carbon dioxide capture process.
机译:这项研究是为了测试叔胺的不同混合物。将三乙醇胺(TEA)转化为伯胺;单乙醇胺(MEA)用于利用循环流捕获填充床洗涤塔中的CO 2 。改变了四个不同的操作参数:胺组合(A),稀释水(B),液体流速(C)和气体流速(D),以研究系统的性能。此外,Taguchi方法被用来确定过程中不同参数的重要性顺序。选择4因子和3水平进行研究,并使用L9(3 4 )正交阵列设计对其进行探索。根据三级设计,A分别选择0%,20%和30%,B分别选择10%,20%和30%,1?Lmin ?1 ,1.5?Lmin ?。 C分别为1 和2?Lmin ?1 ,8?Lmin ?1 ,16?Lmin ?1 和20?Lmin D的?1 。为了解不同操作参数的有效性顺序,计算了三个因素,即吸收效率(E),吸收率(RA)和洗涤因子(E),其顺序为比较。使用20%的TEA可获得92.2%的最高效率。然而,在30%的TEA和20%的溶剂混合下,最大洗涤因子(E)为0.63?mol-CO 2 / mol-溶剂。根据田口分析,吸收效率的显着性次序(△)为B 1> C 2> D D> A。吸收率C≥> B >>D≥> A,擦洗系数为C >>B≥> D >> A。叔胺的共混对于二氧化碳捕获过程似乎是有利的。

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