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CO2 capture on activated carbon from PET (polyethylene terephthalate) waste: Kinetics and modeling studies

机译:来自PET(聚对苯二甲酸乙二醇酯)废物的活性炭上的CO2捕获:动力学和建模研究

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摘要

CO2 emissions from flue gases can be restricted via a promising post-combustion capture technique, namely, adsorption. In the present work, behavior of adsorbents, prepared from PET (polyethylene terephthalate) waste, for CO2 capture studies was investigated to understand the fixed bed adsorption dynamics. The effect of activation on textural properties, surface functional groups and elemental composition was studied through nitrogen adsorption/desorption, XPS, FTIR, and EDX analysis. Thermal stability of adsorbent samples was also evaluated. The kinetics of the adsorption process was studied using Lagergren's pseudo-first-order model, pseudo-second, fractional order, Elovich, and Avrami models. Freundlich isotherm fit confirmed the heterogeneous nature of adsorbent's surface. Adsorption column breakthrough profiles were modeled using linear driving force (LDF) approximation for mass transfer. Model equations were solved using the Method of lines in MATLAB environment. Results show that the model closely approximated the column breakthrough curves for different CO2 concentrations (5-12.5%) and different adsorption temperatures (30-100 degrees C).
机译:烟道气的二氧化碳排放可以通过有前燃烧后捕获技术限制,即吸附。在本作的工作中,研究了由PET(聚对苯二甲酸乙二醇酯)废物制备的吸附剂的行为,用于CO 2捕获研究以了解固定床吸附动态。通过氮吸附/解吸,XPS,FTIR和EDX分析研究了活化对纹理性质,表面官能团和元素组合物的影响。还评估吸附剂样品的热稳定性。使用Lagergren的伪第一阶模型,伪二次,分数阶,ELOVICH和AVRAMI模型研究了吸附过程的动力学。 Freundlich等温机构拟合确认了吸附剂表面的异质性质。使用线性驱动力(LDF)近似进行质量传递,建模吸附柱突破性曲线。使用Matlab环境中的线路方法解决了模型方程。结果表明,该模型对不同二氧化碳浓度(5-12.5%)和不同吸附温度(30-100℃)的柱突破性曲线紧密近似。

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