...
首页> 外文期刊>International Journal of Greenhouse Gas Control >Comparative environmental life cycle assessment of carbon capture for petroleum refining, ammonia production, and thermoelectric power generation in the United States
【24h】

Comparative environmental life cycle assessment of carbon capture for petroleum refining, ammonia production, and thermoelectric power generation in the United States

机译:美国石油炼制,氨生产和热电发电的碳捕获的比较环境生命周期评估

获取原文
获取原文并翻译 | 示例

摘要

Understanding opportunities for carbon capture and storage (CCS) across sectors is important for choosing among greenhouse gas mitigation strategies. This study explores the cradle-to-gate life cycle environmental impacts of amine solvent based carbon capture systems on U.S. ammonia production, petroleum refineries, supercritical and subcritical pulverized coal power plants, and natural gas combined cycle plants. We use publicly available data to create comprehensive life cycle inventories for petroleum refining and ammonia production for 2014. We use these processes and additional modeled carbon capture processes to compare carbon capture on ammonia production and petroleum refining to inventories for coal and natural gas fired electricity with carbon capture. This analysis found that particulate matter formation potential, eutrophication potential, and water consumption increase in all sectors as a result of installation and operation of CCS technologies per kg CO(2)e abated, while the effect on acidification potential and particulate mater formation potential is mixed. The differences in tradeoffs among systems are driven primarily by three factors: the combustion emissions from fuel used to operate the capture unit, the upstream supply chain to obtain that fuel, and the relative impact of the carbon capture unit on baseline flue gas emissions (i.e. possible co-benefits from capture).
机译:了解跨部门碳捕获和储存(CCS)的机会对于在温室气体缓解策略中选择的重要性是重要的。本研究探讨了雄性溶剂基碳捕获系统对美国氨生产,石油炼油厂,超临界和亚临临粉煤发电厂和天然气联合循环厂的摇篮到栅极寿命周期环境影响。我们使用公开的数据来创建2014年石油精炼和氨生产的综合生命周期清单。我们使用这些过程和额外的建模碳捕获过程,以比较氨生产和石油炼油对煤炭和天然气燃烧电力的碳捕获的碳捕获碳捕获。该分析发现,由于每千克CO(2)E e的CCS技术的安装和操作,所有部门的颗粒物质形成电位,富营养化潜力和耗水量增加,而对酸化电位和颗粒形成势的影响是混合。系统之间的权衡的差异主要是三个因素:来自用于操作捕获单元的燃料的燃烧排放,上游供应链获得该燃料,以及碳捕获单元对基线烟气排放的相对影响(即可能来自捕获的合作效益)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号