Suppr超能文献

富氧燃烧排放物及相关风险:科学现状与关键数据缺口。

Emissions and risks associated with oxyfuel combustion: state of the science and critical data gaps.

机构信息

ADA-ES, 9135 Ridgeline Blvd. #200, Highlands Ranch, CO 80129, USA.

出版信息

J Air Waste Manag Assoc. 2013 Jul;63(7):832-43. doi: 10.1080/10962247.2013.791892.

Abstract

UNLABELLED

Oxyfuel combustion is a promising technology that may greatly facilitate carbon capture and sequestration by increasing the relative CO2 content of the combustion emission stream. However, the potential effect of enhanced oxygen combustion conditions on emissions of criteria and hazardous air pollutants (e.g., acid gases, particulates, metals and organics) is not well studied. It is possible that combustion under oxyfuel conditions could produce emissions posing different risks than those currently being managed by the power industry (e.g., by changing the valence state of metals). The data available for addressing these concerns are quite limited and are typically derived from laboratory-scale or pilot-scale tests. A review of the available data does suggest that oxyfuel combustion may decrease the air emissions of some pollutants (e.g., SO2, NO(x), particulates) whereas data for other pollutants are too limited to draw any conclusions. The oxy-combustion systems that have been proposed to date do not have a conventional "stack" and combustion flue gas is treated in such a way that solid or liquid waste streams are the major outputs. Use of this technology will therefore shift emissions from air to solid or liquid waste streams, but the risk management implications of this potential change have yet to be assessed. Truly useful studies of the potential effects of oxyfuel combustion on power plant emissions will require construction of integrated systems containing a combustion system coupled to a CO2 processing unit. Sampling and analysis to assess potential emission effects should be an essential part of integrated system tests.

IMPLICATIONS

Oxyfuel combustion may facilitate carbon capture and sequestration by increasing the relative CO2 content of the combustion emission stream. However, the potential effect of enhanced oxygen combustion conditions on emissions of criteria and hazardous air pollutants has not been well studied. Combustion under oxyfuel conditions could produce emissions posing different risks than those currently being managed by the power industry. Therefore, before moving further with oxyfuel combustion as a new technology, it is appropriate to summarize the current understanding of potential emissions risk and to identify data gaps as priorities for future research.

摘要

未加说明

富氧燃烧是一种很有前途的技术,通过提高燃烧排放流中相对 CO2 的含量,可极大地促进碳捕获和封存。然而,增强氧气燃烧条件对基准和危险空气污染物(例如酸气体、颗粒物、金属和有机物)排放的潜在影响尚未得到很好的研究。在富氧条件下燃烧产生的排放物可能带来不同于电力行业目前正在管理的风险(例如,通过改变金属的价态)。目前用于解决这些问题的数据非常有限,通常来自实验室规模或试点规模的测试。对现有数据的审查表明,富氧燃烧可能会减少一些污染物(例如 SO2、NO(x)、颗粒物)的空气排放,而其他污染物的数据则过于有限,无法得出任何结论。迄今为止提出的富氧燃烧系统没有传统的“烟囱”,燃烧烟道气的处理方式是主要输出固体或液体废物流。因此,这项技术的使用将把排放物从空气转移到固体或液体废物流中,但尚未评估这种潜在变化的风险管理意义。对富氧燃烧对电厂排放的潜在影响进行真正有用的研究,需要建造包含燃烧系统和 CO2 处理单元的集成系统。为了评估潜在排放影响,采样和分析应成为综合系统测试的重要组成部分。

影响

富氧燃烧可通过提高燃烧排放流中相对 CO2 的含量来促进碳捕获和封存。然而,增强氧气燃烧条件对基准和危险空气污染物排放的潜在影响尚未得到很好的研究。在富氧条件下燃烧可能会产生不同于电力行业目前正在管理的风险的排放物。因此,在将富氧燃烧作为一项新技术进一步推进之前,总结对潜在排放风险的现有认识并确定数据差距作为未来研究的优先事项是合适的。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验