首页> 外国专利> METHOD OF REDUCING THE NOX CONTENT IN THE WASTE GASES LEAVING A FURNACE PRODUCING PLATE-GLASS AND IMPROVED PLATE-GLASS PRODUCING FURNACES

METHOD OF REDUCING THE NOX CONTENT IN THE WASTE GASES LEAVING A FURNACE PRODUCING PLATE-GLASS AND IMPROVED PLATE-GLASS PRODUCING FURNACES

机译:减少留有平板玻璃窑炉和改良平板玻璃窑炉废气中NOx含量的方法

摘要

A method of operating a cross-fired regenerative glass furnace for melting flat glass so as to minimise emission of NOx in waste gases leaving the furnace, the furnace having sealed regenerators which act as heat exchangers, the method comprising supplying fuel in excess of that required for stoichiometric combustion to ensure that glass of the required quality at the required production rate is obtained, and that the waste gases leaving the furnace through the regenerators contain combustible material, and reacting said combustible material with sufficient air to ensure that the waste gases exiting to atmosphere contain permissible levels of combustible material and permissible levels of NOx. Alternatively, the furnace may be operated at substantially stoichiometric conditions and fuel is supplied to the waste gases as they leave the melting chamber. The invention also relates to a cross-fired regenerator glass furnace for use in the method. The invention further provides a method of reducing the emissions of CO in waste gases leaving a cross-fired regenerative glass furnace for melting flat glass, the furnace having sealed regenerators which act as heat exchangers, the method comprising removing CO from the waste gases in the regenerator by combusting CO in around 8% excess air, based on the combustion air for the supplied fuel, at a temperature greater than 650 DEG C. IMAGE
机译:一种操作交叉燃烧式再生玻璃熔炉以熔化平板玻璃以使离开熔炉的废气中的NOx排放最小的方法,该熔炉具有用作热交换器的密封再生器,该方法包括提供超过所需燃料的燃料用于化学计量燃烧,以确保以所需的生产率获得所需质量的玻璃,并且通过再生器离开炉子的废气中含有可燃物,并使该可燃物与足够的空气反应,以确保废气流向大气中包含可允许燃烧的材料和NOx的允许水平。可替代地,炉可以在基本化学计量的条件下运行,并且当废气离开熔化室时将燃料供应至废气。本发明还涉及在该方法中使用的交叉燃烧的蓄热器玻璃炉。本发明还提供一种减少离开交叉燃烧式再生玻璃熔炉以熔化平板玻璃的废气中CO排放的方法,该炉具有用作热交换器的密封再生器,该方法包括从炉中的废气中除去CO。基于供气燃料的燃烧空气,在高于650℃的温度下,在大约8%的过量空气中燃烧CO来使再生器再生。<图像>

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