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Adsorption separation of oxidative coupling of methane effluent gases. Mini-plant scale experiments and modeling

机译:甲烷流出物气体氧化偶联的吸附分离。 迷你植物规模实验和建模

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摘要

This work explored the use of a zeolite molecular sieve as adsorbent material in the separation of effluent gases from an oxidative coupling of methane (OCM) process. The molecular sieve granules were synthesized, characterized, and evaluated as adsorbent material at the mini-plant scale. Dynamic adsorption experiments were performed at different feed temperatures (298, 308, 328 K), with pure and mixed gases (ethylene, ethane, oxygen, nitrogen and carbon dioxide), and at different absolute pressures (2 and 6 bar). The breakthrough curves and the corresponding dynamic temperature profiles from the adsorption system were obtained under the different experimental conditions. According to results pressure swing adsorption can be used as a de-methanizing alternative during the OCM downstream separation, and even as an ethane/ethylene separation alternative. The adsorption capacities for the different gases, per unit mass of adsorbent, at 303 K and 5 bar were: 0.138 kgCO2/kg, 0.094 kg C2H4/kg, 0.082 kgC2H6/kg, and 0.020 kgCH4/kg. A model of the process was implemented within Aspen Adsorption software, and the transport parameters were adjusted to fit experimental observations. The computer model agreed with experimental results, and it can be used for further process up-scaling and techno-economic evaluation.
机译:这项工作探讨了在甲烷(OCM)工艺的氧化偶联中分离出污水偶联时的吸附材料作为吸附材料。在迷你植物量表上合成,特征和评价分子筛颗粒作为吸附材料。在不同的饲料温度(298,308,328k)下进行动态吸附实验,具有纯的和混合气体(乙烯,乙烷,氧,氮和二氧化碳),以及不同的绝对压力(2和6巴)。在不同的实验条件下获得了来自吸附系统的突破曲线和来自吸附系统的相应动态温度谱。根据结果​​,压力摆动可在OCM下游分离期间用作脱甲烷化替代品,甚至作为乙烷/乙烯分离替代方案。每单位质量吸附剂,303k和5巴的不同气体的吸附容量为:0.138kgco2 / kg,0.094kg C 2 H 4 / kg,0.082kgc2h6 / kg和0.020kgch4 / kg。该过程的模型在Aspen吸附软件中实现,调整运输参数以适应实验观察。计算机模型同意实验结果,可用于进一步处理上调和技术经济评估。

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