On emerging furnace design methodology that provides substantial energy savings and drastic reductions in CO2, CO and NOx emissions

燃烧 燃烧室 氮氧化物 天然气 化学 废物管理 体积热力学 煤气燃烧器 喷油器 工业气体 甲烷 燃烧室 环境科学 工程类 热力学 机械工程 燃气轮机 有机化学 物理
作者
Roman Weber,A. Lverlaan,Stefano Orsino,N. Lallemant
出处
期刊:Journal of The Institute of Energy [Elsevier]
卷期号:72 (492): 77-83 被引量:21
摘要

Recent developments in heat recovery systems allow for preheating of combustion air up to temperatures of 1300 °C and, thus, fuel savings up to 60% are achievable. In conventional burner/furnace designs, the higher the combustion air temperature the higher the NO x emissions. However, the most recent developments allow for low NO x combustion using high temperature combustion air. The objective of this paper is to establish conditions under which industrial furnaces should be operated in order to maximize the efficiency and minimize the pollutant emissions including carbon dioxide. To this end, semi-industrial scale experiments have been carried out using natural gas and vitiated air at 1300 °C. A Nippon Furnace Kogyo burner that features a central air jet and two fuel gas injectors was used. Comprehensive in-furnace measurements of velocities, temperature, gas composition (O 2 , CO 2 , CO, H 2 , NO, CH 4 ) and radiation have been carried out. The furnace was operated under conditions resembling a well-stirred reactor; the temperature and chemistry fields were uniform all over the furnace. Almost the whole furnace volume was filled with combustion products containing 2-3% oxygen at temperatures in the range 1350-1450 °C, despite the high temperature (1300 °C) of the vitiated air. The natural gas jets entrained many of the combustion products before they mixed with combustion air. This mode of combustion resulted in high and uniform heat fluxes and low NO x and CO emissions. It was concluded that industrial furnaces of tomorrow are likely to be designed as well-stirred reactors equipped with high efficiency heat regenerators. Conventional burners will be either replaced with individual fuel and air injectors or substantially redesigned to facilitate uniformity of Combustion conditions within the furnace.

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