首页> 外文期刊>International Journal of Greenhouse Gas Control >Total organic acid adsorption using alginate/clay hybrid composite for industrial lean amine reclamation using fixed-bed: Parametric study coupled with foaming
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Total organic acid adsorption using alginate/clay hybrid composite for industrial lean amine reclamation using fixed-bed: Parametric study coupled with foaming

机译:使用固定床使用藻酸盐/粘土杂种复合材料的藻酸盐/粘土杂交复合材料的总有机酸吸附:参数学研究与发泡相结合

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摘要

The technical feasibility of removing heat stable salts (HSS) such as total organic acids (TOA) from industrial lean methyldiethanolamine (MDEA) solutions using calcium alginate/clay hybrid (CAH) composite adsorbent in a continuous fixed bed adsorber has been investigated. The effect of process parameters such as bed diameter, bed height, feed flow rate, and flow direction on breakthrough time, adsorption capacity, and exhaustion time of the fixed-bed sorption system was analyzed. Experimental results showed that higher bed diameter and height, lower flow rate along with up-flow column mode resulted in increased uptake capacity and breakthrough time. Progressive reduction in adsorption capacity from 3.6 mg/g to 2.83 mg/g after three adsorption/desorption cycles using 4.0 wt. % CaCl2 confirmed the practicability of the adsorbent. Simulation of breakthrough curves using general reaction rate models such as Bohart-Adams and Yoon-Nelson yielded a high correlation coefficient (R-2 > 0.93), and thus validating the applicability of these models to predict the break through curves under various operating conditions. Furthermore, foaming experiments confirmed the vital role of CAH composite in reducing the foamability of lean MDEA solutions through the synergistic effect of successive biosorption and robustness of the saturated composites to multiple in-situ regeneration using CaCl2.
机译:研究了在连续固定床吸附器中使用藻酸钙/粘土杂交(CAH)复合吸附剂的产业贫甲基二乙醇胺(MDEA)溶液中除去热稳定盐(HSS)的技术可行性。分析了工艺参数如床直径,床高,进给流速和流动方向对固定床吸附系统的突破时间,吸附容量和耗尽时间的影响。实验结果表明,床直径和高度,较低的流速以及上流柱模式导致增加的摄取能力和突破时间。使用4.0重量%的吸附/解吸循环后,吸附容量从3.6mg / g的吸附容量降低到2.83mg / g。 %CaCl2证实了吸附剂的实用性。使用诸如Bohart-Adams和Yoon-Nelson等一般反应速率模型的突破性曲线的仿真产生了高的相关系数(R-2> 0.93),从而验证了这些模型的适用性在各种操作条件下通过曲线预测断裂。此外,发泡实验证实了CAH复合材料在通过饱和复合材料的连续生物吸附和鲁棒性与使用CaCl 2的多种原位再生的协同作用降低了瘦MDEA溶液的发泡性的重要作用。

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