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燃烧发电厂烟气排放的缓解方法和技术:全面综述。

Mitigation approaches and techniques for combustion power plants flue gas emissions: A comprehensive review.

作者信息

Larki Iman, Zahedi Alireza, Asadi Mahdi, Forootan Mohammad Mahdi, Farajollahi Meisam, Ahmadi Rouhollah, Ahmadi Abolfazl

机构信息

Department of Energy Systems Engineering, School of Advanced Technologies, Iran University of Science and Technology, Tehran, Iran.

Department of Energy Systems Engineering, School of Advanced Technologies, Iran University of Science and Technology, Tehran, Iran.

出版信息

Sci Total Environ. 2023 Dec 10;903:166108. doi: 10.1016/j.scitotenv.2023.166108. Epub 2023 Aug 9.

Abstract

Population growth and urbanization are driving energy demand. Despite the development of renewable energy technologies, most of this demand is still met by fossil fuels. Flue gases are the main air pollutants from combustion power plants. These pollutants include particulate matter (PM), sulfur oxides (SOx), nitrogen oxides (NOx), and carbon oxides (COx). The release of these pollutants has adverse effects on human health and the environment, including serious damage to the human respiratory system, acid rain, climate change, and global warming. In this review, a wide range of conventional and new technologies that have the potential to be used in the combustion power plant sector to manage and reduce flue gas pollutants have been examined. Nowadays, conventional approaches to emissions control and management, which focus primarily on post-combustion techniques, face several challenges despite their widespread use and commendable effectiveness. Therefore, studies that have proposed alternative approaches to achieve improved and more efficient methods are reviewed. The results show that new advances such as novel PM collectors, attaining an efficiency of nearly 100 % for submicron particles, microwave systems, boasting an efficiency of nearly 90 % for NO and over 95 % for SO, electrochemical systems achieving above 90 % efficiency for NOx reduction, non-thermal plasma processes demonstrating an efficiency close to 90 % for NOx, microalgae-based methods with efficiency ranging from 80 % to 99 % for CO, and wet scrubbing, exhibit considerable potential in addressing the shortcomings of conventional systems. Furthermore, the integration of hybrid methods, particularly in regions prioritizing environmental concerns over economic considerations, holds promise for enhanced control and removal of flue gas pollutants with superior efficiency.

摘要

人口增长和城市化正在推动能源需求。尽管可再生能源技术有所发展,但大部分能源需求仍由化石燃料满足。烟道气是燃烧发电厂的主要空气污染物。这些污染物包括颗粒物(PM)、硫氧化物(SOx)、氮氧化物(NOx)和碳氧化物(COx)。这些污染物的排放对人类健康和环境有不利影响,包括对人类呼吸系统的严重损害、酸雨、气候变化和全球变暖。在本综述中,研究了一系列有潜力用于燃烧发电厂部门以管理和减少烟道气污染物的传统技术和新技术。如今,主要侧重于燃烧后技术的传统排放控制和管理方法,尽管广泛使用且效果值得称赞,但仍面临若干挑战。因此,对提出替代方法以实现改进和更高效方法的研究进行了综述。结果表明,新进展如新型PM收集器对亚微米颗粒的捕集效率接近100%、微波系统对NO的去除效率接近90%且对SO的去除效率超过95%、电化学系统对NOx的还原效率达到90%以上、非热等离子体工艺对NOx的去除效率接近90%、基于微藻的方法对CO的去除效率在80%至99%之间以及湿法洗涤,在解决传统系统的缺点方面具有相当大的潜力。此外,混合方法的整合,特别是在优先考虑环境问题而非经济因素的地区,有望以更高的效率增强对烟道气污染物的控制和去除。

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