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A novel polygeneration process to co-produce ethylene and electricity from shale gas with zero CO_2 emissions via methane oxidative coupling

机译:一种新的多联产工艺,可通过甲烷氧化偶联从页岩气中以零CO_2排放量联产乙烯和电力

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摘要

A techno-economic analysis of a novel process to co-produce ethylene and electricity using a recently developed methane oxidative coupling catalyst is presented. Several design variants are considered, featuring the use of traditional gas turbines, chemical looping combustion, and 100% carbon dioxide capture. Mass and energy balance simulations were carried out using Aspen Plus simulations, and particle swarm optimization was used to determine the optimal process design under a variety of market scenarios. A custom model for the gas turbine section was used to ensure that the negative impacts of various cooling strategies were factored into the analysis. The results show that by synergistically co-producing power and ethylene using this catalyst, ethylene can be produced at costs close to traditional steam cracking methods with nearly zero carbon dioxide emissions, even when factoring in the relatively poor conversion and selectivity of the chosen catalyst.
机译:本文介绍了使用最近开发的甲烷氧化偶联催化剂联产乙烯和电力的新工艺的技术经济分析。考虑了几种设计变体,包括使用传统燃气轮机,化学循环燃烧和100%的二氧化碳捕集。使用Aspen Plus模拟进行了质量和能量平衡模拟,并使用粒子群优化方法确定了各种市场情况下的最佳工艺设计。使用燃气轮机部分的定制模型来确保将各种冷却策略的负面影响纳入分析。结果表明,通过协同使用该催化剂联产电力和乙烯,即使考虑到所选催化剂相对较差的转化率和选择性,也可以以接近传统蒸汽裂化方法的成本生产乙烯,二氧化碳的排放量几乎为零。

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