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首页> 外文期刊>Energy >Can 'negative net CO_2 emissions' from decarbonised biogas-to-electricity contribute to solving Poland's carbon capture and sequestration dilemmas?
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Can 'negative net CO_2 emissions' from decarbonised biogas-to-electricity contribute to solving Poland's carbon capture and sequestration dilemmas?

机译:脱碳沼气发电产生的“负净CO_2排放量”是否有助于解决波兰的碳捕获和封存难题?

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The article analyses to what extent 'negative net CO_2 emissions' from decarbonised biogas-to-electricity can contribute to solving Poland's carbon capture and sequestration dilemmas. From the criteria-based evaluation of low-carbon power technologies it is found, that biogas-to-electricity is among technologies having increasing production potential in Poland. Therefore, in future biogas will be able to contribute to solving Poland's CCS dilemmas, because it offers carbon-neutral electricity. Moreover, by applying CCS into biogas-to-electricity the 'negative net CO_2 emissions' can be achieved. The article examines three biogas-to-electricity technologies involving CO_2 capture, i.e. biogas-to-biomethane, biogas-to-CHP and biogas-to-electricity via the ORFC cycle. It is emphasised that the ORFC cycle offers low-cost CO_2 separation from a CO2-H2 mixture, low O_2-intensity, and the opportunities for advanced mass and energy integration of involved processes. Besides, energy conversion calculations show that the ORFC cycle can offer comparable cycle efficiency with air- and oxy-combustion combined cycles. In regard to the design of biogas-based energy systems it is recommended to include (i) distributed production of biogas in order to avoid costs of long-distance transportation of high-moisture content biomass and (ii) centralised large-scale decarbonised biogas-to-electricity power plants since costs of pipeline transportation of gases are low but large-scale plants could benefit from increased energy and CCS efficiencies.
机译:这篇文章分析了脱碳沼气发电产生的“负净CO_2排放量”在多大程度上有助于解决波兰的碳捕获和封存难题。从基于标准的低碳电力技术评估中可以发现,沼气发电是波兰具有不断增长的生产潜力的技术之一。因此,由于沼气提供碳中和电力,因此将来沼气将有助于解决波兰的CCS困境。此外,通过将CCS应用于沼气发电,可以实现“负净CO_2排放”。本文研究了通过ORFC循环涉及CO_2捕集的三种沼气发电技术,即沼气发电沼气,沼气发电CHP和沼气发电技术。要强调的是,ORFC循环提供了从CO2-H2混合物中进行低成本的CO_2分离,低的O_2强度以及所涉及过程的高级质量和能量集成的机会。此外,能量转换计算表明,ORFC循环可与空气和氧气燃烧联合循环提供可比的循环效率。关于基于沼气的能源系统的设计,建议包括(i)沼气的分布式生产,以避免长途运输高水分生物质的成本,以及(ii)集中式大型脱碳沼气-到发电厂,因为气体管道运输的成本较低,但大型发电厂可受益于能源和CCS效率的提高。

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