海藻酸钙基碳复合吸附剂用于贫甲基二乙醇胺回收:实验室到中试规模的测试和验证

P. Kannan, Pal Priyabrata, F. Banat, Satyadileep Dara, I. Khan, Eisa AlJenaibi, Marwan AlAwlqi
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引用次数: 0

摘要

海藻酸钙基碳复合材料(CAC)吸附剂可以有效去除天然气脱硫装置中作为溶剂的贫甲基二乙醇胺(MDEA溶剂)中的HSS阴离子、金属离子和有机降解产物中的总有机酸阴离子。在材料开发阶段,合成了CAC吸附剂,并利用实验室规模的吸附装置去除各种污染物,包括热稳定盐(HSS)、有机降解产物和贫MDEA中的重金属离子。在此基础上,设计了一个“示范规模”固定床吸附装置,并利用吸附模型对其进行了模拟,以预测突破行为。本研究考察了CAC吸附剂对HSS和总有机酸阴离子的去除效果。对处理后样品的分析表明,在植物规模条件下,吸附剂的去除效率。进一步的实验表明,该吸附剂在去除MDEA样品中的比辛方面是有效的。这项工作为未来在实际工厂条件下对吸附剂进行精益MDEA回收的测试和综合工艺性能评估提供了一个框架。通过这项工作,验证了先前开发的固定床吸附器的快速、简单、可靠的放大过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Calcium Alginate-Based Carbon Composite Adsorbents for Lean Methyldiethanolamine Reclamation: Laboratory to Pilot Scale Testing and Validation
Calcium alginate-based carbon composite (CAC) adsorbents have been proved to effectively remove total organic acid anions as HSS anions, metal ions, and organic degraded products from lean methyldiethanolamine (MDEA solvents) used as solvent in natural gas sweetening unit. During the material developmental phase, the CAC adsorbent was synthesized and utilized to remove various contaminants, including heat stable salts (HSS), organic degraded products, and heavy metal ions from lean MDEA using a lab-scale adsorption setup. Based on the results, a "demo-scale" fixed bed adsorption unit was designed and simulated using adsorption model to predict breakthrough behavior. In the current work, the efficiency of the CAC adsorbent in removing HSS and total organic acid anions were investigated. Analysis of treated samples demonstrated the removal efficiency of the adsorbent under plant scale conditions. Further experiments performed at lab scale indicated the effectiveness of the adsorbent in the removal of bicine from lean MDEA samples. This work provides a framework for future testing and comprehensive process performance evaluation of adsorbents for lean MDEA reclamation in actual plant conditions. A fast, simple, and reliable scale up procedure for fixed bed adsorber developed earlier was validated through this work.
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