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Reduction of NO.sub.x emissions in a glass melting furnace

机译:减少玻璃熔炉中的NOx排放

摘要

A method of controlling NO.sub.x emissions from a glass melting process in which combustion fuel produces exhaust gas in a melting furnace including NO.sub.x compounds is disclosed. Furnace exhaust gas passes from the melting furnace through a regenerator to a zone downstream from the regenerator. Ammonia is injected into the furnace exhaust gas at the downstream zone while the furnace exhaust gas is within a desired temperature range to reduce the amount of NO.sub.x compounds. Additional gas is introduced into the furnace exhaust gas as it moves from the regenerator to the downstream zone whenever the furnace exhaust gas has a temperature which is outside the desired temperature range at the downstream zone so as to modify the furnace exhaust gas temperature such that the furnace exhaust gas is within the desired temperature range when furnace exhaust gas reaches to the downstream zone. In one particular embodiment of the invention, the additional gas is the exhaust from an excess air burner which is injected into the furnace exhaust gas at a temperature such that the furnace exhaust gas and the injected gas have a combined temperature between about 870 to 1090 C. at the downstream zone.
机译:公开了一种控制来自玻璃熔融过程的NO x排放的方法,其中燃烧燃料在包含NO x化合物的熔融炉中产生废气。炉子废气从熔融炉通过蓄热器到达蓄热器下游的区域。在炉子排气处于所需温度范围内的同时,将氨气注入到炉子下游区域,以减少NO x化合物的量。每当炉子废气的温度在下游区的期望温度范围之外时,就会在炉子废气从再生器向下游区移动时将其他气体引入炉子废气中,从而改变炉子废气的温度,从而当炉废气到达下游区域时,炉废气在期望的温度范围内。在本发明的一个特定实施例中,附加气体是来自过量空气燃烧器的废气,该过量空气燃烧器在一定温度下被注入到炉子废气中,使得炉子废气和注入的气体的总温度在约870至1090℃之间。在下游区域。

著录项

  • 公开/公告号US5893940A

    专利类型

  • 公开/公告日1999-04-13

    原文格式PDF

  • 申请/专利权人 PPG INDUSTRIES INC.;

    申请/专利号US19970851208

  • 发明设计人 YIH-WAN TSAI;

    申请日1997-05-05

  • 分类号C03B5/42;

  • 国家 US

  • 入库时间 2022-08-22 02:08:20

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