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On the potential for BECCS efficiency improvement through heat recovery from both post-combustion and oxy-combustion facilities

机译:关于通过燃烧后和氧气燃烧设备回收热量来提高BECCS效率的潜力

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In order to mitigate climate change to no more than 2 degrees C, it is well understood that it will be necessary to directly remove significant quantities of CO2, with bioenergy CCS ( BECCS) regarded as a promising technology. However, BECCS will likely be more costly and less efficient at power generation than conventional CCS. Thus, approaches to improve BECCS performance and reduce costs are of importance to facilitate the deployment of this key technology. In this study, the impact of biomass co-firing rate and biomass moisture content on BECCS efficiency with both post-and oxy-combustion CO2 capture technologies was evaluated. It was found that post-combustion capture BECCS ( PCC-BECCS) facilities will be appreciably less efficient than oxy-combustion capture BECCS ( OCC-BECCS) facilities. Consequently, PCC-BECCS have the potential to be more carbon negative than OCC-BECCS per unit electricity generated. It was further observed that the biomass moisture content plays an important role in determining the BECCS facilities' efficiency. This will in turn affect the enthalpic content of the BECCS plant exhaust and implies that exhaust gas heat recovery may be an attractive option at higher rates of co-firing. It was found that there is the potential for the recovery of approximately 2.5 GJ(heat) per t(CO2) at a temperature of 100 degrees C from both PCC-BECCS and OCC-BECCS. On-and off-site applications for this recovered heat are discussed, considering boiler feedwater pre-heating, solvent regeneration and district heating cases.
机译:为了将气候变化减缓至不超过2摄氏度,众所周知,将生物能源CCS(BECCS)视为有前途的技术将是直接去除大量CO2的必要条件。但是,与传统的CCS相比,BECCS的发电成本可能更高,效率更低。因此,改善BECCS性能和降低成本的方法对于促进该关键技术的部署非常重要。在这项研究中,评估了生物质共烧速率和生物质水分含量对燃烧后和富氧燃烧CO2捕集技术对BECCS效率的影响。已发现,燃烧后捕获BECCS(PCC-BECCS)设施的效率将明显低于氧气燃烧捕获BECCS(OCC-BECCS)设施。因此,每产生一单位电,PCC-BECCS具有比OCC-BECCS更负碳的潜力。进一步观察到,生物质水分含量在确定BECCS设施的效率方面起着重要作用。反过来,这将影响BECCS工厂废气的焓含量,并暗示在更高的共烧速率下,废气余热回收可能是有吸引力的选择。发现在100摄氏度的温度下,可能从PCC-BECCS和OCC-BECCS回收每t(CO2)约2.5 GJ(热量)的热量。考虑了锅炉给水的预热,溶剂再生和区域供热的情况,讨论了这种回收热量在现场和非现场的应用。

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