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首页> 外文期刊>Journal of Industrial Ecology >Life Cycle Assessment of Carbon Dioxide-Based Production of Methane and Methanol and Derived Polymers
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Life Cycle Assessment of Carbon Dioxide-Based Production of Methane and Methanol and Derived Polymers

机译:基于二氧化碳的甲烷和甲醇和衍生聚合物的生命周期评估

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Previous studies showed that using carbon dioxide (CO2) as a raw material for chemical syntheses may provide an opportunity for achieving greenhouse gas (GHG) savings and a low-carbon economy. Nevertheless, it is not clear whether carbon capture and utilization benefits the environment in terms of resource efficiency. We analyzed the production of methane, methanol, and synthesis gas as basic chemicals and derived polyoxymethylene, polyethylene, and polypropylene as polymers by calculating the output-oriented indicator global warming impact (GWI) and the resource-based indicators raw material input (RMI) and total material requirement (TMR) on a cradle-to-gate basis. As carbon source, we analyzed the capturing of CO2 from air, raw biogas, cement plants, lignite-fired power, and municipal waste incineration plants. Wind power serves as an energy source for hydrogen production. Our data were derived from both industrial processes and process simulations. The results demonstrate that the analyzed CO2-based process chains reduce the amount of GHG emissions in comparison to the conventional ones. At the same time, the CO2-based process chains require an increased amount of (abiotic) resources. This trade-off between decreased GHG emissions and increased resource use is assessed. The decision about whether or not to recycle CO2 into hydrocarbons depends largely on the source and amount of energy used to produce hydrogen.
机译:以前的研究表明,使用二氧化碳(CO2)作为化学合成的原料,可以为实现温室气体(GHG)节省和低碳经济提供机会。然而,目前尚不清楚碳捕获和利用率是否在资源效率方面受益。通过计算输出导向的指示剂全球变暖冲击(GWI)和基于资源的指标原料输入(RMI),通过计算出输出的指示剂和基于资源的指标原料输入(RMI),分析了甲烷,甲醇和合成气作为基础化学品和衍生的聚甲甲基,聚乙烯和聚丙烯作为聚合物,以及基于资源的指标和全部材料要求(TMR)在摇篮到门的基础上。作为碳源,我们分析了来自空气,原料沼气,水泥厂,褐煤电力和市政垃圾焚烧厂的CO2的捕获。风力发电作为氢生产的能源。我们的数据来自工业流程和过程模拟。结果表明,分析的基于二氧化碳的工艺链与常规的CO2的过程链减少了温室气体排放量。同时,基于二氧化碳的过程链需要增加的(非生物)资源。在减少温室气体排放和增加的资源使用之间进行这种权衡。关于是否将二氧化碳再循环到烃中的决定在很大程度上取决于用于生产氢的能量的来源和量。

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