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Influence of alkylaromatic hydrocarbons on the efficiency of linear alkylbenzene sulfonic acid synthesis

机译:烷基芳烃对线性烷基苯磺酸合成效率的影响

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ASA is the main ingredient of many commercial formulations for industrial and domestic synthetic detergents. Studying the work of the technological equipment that is used for manufacturing of the linear ASA allow us to conclude that alkylaromatic hydrocarbons in the product flow to hydrogenation reactor have significant impact on all technological stages. The aim of this work was to estimate the quantitative impact of alkyl components on ASA manufacturing efficiency and to improve the performance of the main equipment. The performed infrared (IR) and gas chromatography-mass spectrometry (GC-MS) analysis of the linear alkylbenzenes (LAB) and ASA samples indicate that the viscous components are tetralines and sultones as a part of unsulphonated matter. The developed mathematical model was used to reveal the following results and regularities of equipment modes: if the hydrogen/feedstock molar ratio at dehydrogenation stage equals 6/1, it is less optimal due to coke formation and requires increasing water supply. An increase of aromatics content in alkylation product flow leads to an increase in HF flow rate to the regeneration column. The optimal SO3/LAB molar ratio increases along with content of aromatics in raw materials. The developed model of sulfonation process predicts the duration of reactor inter-washing period. (C) 2017 Elsevier B.V. All rights reserved.
机译:ASA是工业和国内合成洗涤剂的许多商业配方的主要成分。研究用于制造线性ASA的技术设备的工作允许我们得出结论,产物流中的烷基芳芳烃对氢化反应器具有显着影响所有技术阶段。这项工作的目的是估算烷基成分对ASA制造效率的定量影响,提高主设备的性能。直链烷基苯(实验室)和ASA样品的所需红外(IR)和气相色谱 - 质谱(GC-MS)分析表明粘性组分是Tetralines和Sultones作为未经金属的一部分。开发的数学模型用于揭示设备模式的以下结果和规律:如果脱氢阶段的氢/原料摩尔比等于6/1,则由于焦炭形成而较低,需要增加供水。烷基化产物流动中的芳烃含量的增加导致再生塔的HF流速的增加。最佳SO3 /实验室摩尔比随着原料中的芳烃含量增加。磺化过程的开发模型预测了反应器间洗涤期的持续时间。 (c)2017 Elsevier B.v.保留所有权利。

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