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Process Simulation and Environmental Aspects of Dimethyl Ether Production from Digestate-Derived Syngas

机译:从消化衍生的合成气中的二甲醚产生的过程模拟和环境方面

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摘要

The production of dimethyl ether from renewables or waste is a promising strategy to push towards a sustainable energy transition of alternative eco-friendly diesel fuel. In this work, we simulate the synthesis of dimethyl ether from a syngas (a mixture of CO, CO2 and H2) produced from gasification of digestate. In particular, a thermodynamic analysis was performed to individuate the best process conditions and syngas conditioning processes to maximize yield to dimethyl etehr (DME). Process simulation was carried out by ChemCAD software, and it was particularly focused on the effect of process conditions of both water gas shift and CO2 absorption by Selexol® on the syngas composition, with a direct influence on DME productivity. The final best flowsheet and the best process conditions were evaluated in terms of CO2 equivalent emissions. Results show direct DME synthesis global yield was higher without the WGS section and with a carbon capture equal to 85%. The final environmental impact was found equal to −113 kgCO2/GJ, demonstrating that DME synthesis from digestate may be considered as a suitable strategy for carbon dioxide recycling.
机译:来自可再生能源或废物的二甲醚的生产是推动替代环保柴油燃料的可持续能源转型的有希望的策略。在这项工作中,我们模拟了由气化的Syngas(CO,CO 2和H 2的混合物)的二甲醚的合成。特别地,进行热力学分析以分类最佳的工艺条件和合成气调节方法,以最大限度地提高对二甲基ETEHR(DME)的产率。通过ChemCAD软件进行过程仿真,特别关注Selexol®在合成气组合物上的水煤气变换和CO2吸收的工艺条件的影响,直接影响DME生产率。在CO2等效排放方面评估了最终的最佳流程和最佳工艺条件。结果显示,直接DME合成全球产量没有WGS部分,碳捕获等于85%。发现最终的环境影响等于-113 kgco2 / gj,证明了消化的DME合成可以被认为是二氧化碳回收的合适策略。

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