CAPTURE OF CARBON DIOXIDE FROM SEWAGE SLUDGE PYROLYSIS GASES IN A FIXED BED OF 13X ZEOLITE

M. O. Lessa, J. F. Sousa, J. A. Oliveira, C. F. Silva, J. Ruiz, M. Pedroza, G. E. G. Vieira, M. Bezerra
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Abstract

Pyrolysis gases can be upgraded through CO2 adsorption. This work shows the pyrolysis of sewage sludge in a 1 kg h−1 rotating cylinder reactor. Non-condensable gases passed through a fixed bed of 13X zeolite at 40 ◦C. Prior to processing actual pyrolysis gases, the equilibrium adsorption capacity of the 13X was evaluated with synthetic CO2 in a magnetic suspension balance to estimate Langmuir, Freundlich and Toth isotherm parameters. Afterwards, a synthetic mixture with composition similar to that of sewage pyrolysis gases was tested in a bench-scale fixed-bed adsorption column to assess both the breakthrough curves for different adsorbent masses (10, 15, and 20 g) and the saturation time of the adsorbent. The dynamic adsorption in the column was modeled as a system of partial differential equations (PDEs), which was transformed into a system of Ordinary Differential Equations (ODEs) via the Method of Lines and, then, solved using DASSL. The ODEs were used to estimate adsorption parameters such as coefficient of axial dispersion, effective diffusivity within the particle, and external coefficient of mass transfer. The synthetic gases were replaced with actual sewage sludge pyrolysis gases in the adsorption column with 13X. The breakthrough curves revealed a quick saturation of the bed by pyrolysis aerosols. Despite its short lifetime in comparison with synthetic gases, the 13X proved effective in adsorbing pyrolysis CO2.
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在13x沸石的固定床上捕获污水污泥热解气体中的二氧化碳
热解气体可以通过吸附CO2进行升级。本研究展示了污水污泥在1kg h−1旋转圆筒反应器中的热解过程。不可冷凝气体通过固定床的13X沸石在40◦C。在处理实际热解气体之前,用合成CO2在磁悬浮天平中评估13X的平衡吸附能力,以估计Langmuir, Freundlich和Toth等温线参数。随后,在固定床吸附柱上测试了组成与污水热解气相似的合成混合物,评估了不同吸附剂质量(10、15和20 g)的突破曲线以及吸附剂的饱和时间。采用偏微分方程(PDEs)对柱内的动态吸附过程进行建模,用直线法将其转化为常微分方程(ode),再用DASSL进行求解。ODEs用于估计吸附参数,如轴向分散系数、颗粒内有效扩散系数和外部传质系数。合成气体用13X代替吸附塔内实际的污泥热解气体。突破曲线显示热解气溶胶对床层的快速饱和。尽管与合成气体相比,13X的寿命较短,但它在吸附热解CO2方面被证明是有效的。
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