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OPTIMELT™ REGENERATIVE THERMO-CHEMICAL HEAT RECOVERY FOR OXY-FUEL GLASS FURNACES

机译:OPTIMELT™氧气玻璃窑炉的再生热化学热回收

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The operation of glass furnaces with oxy-fuel combustion in combination with advanced heat recovery is a compelling low cost solution. Praxair has developed a new heat recovery technology for oxy-fuel fired furnaces in which regenerators are used in a similar way as conventional regenerators, which recover waste heat from the furnace flue gas. The OPTIMELT™ Thermo-Chemical Regenerator (TCR) technology uses the stored waste heat to reform a mixture of natural gas and recirculated flue gas to hot syngas, resulting in efficient heat recovery. The natural gas reacts endothermically in the hot checker pack with the water vapor and CO_2 in the recycled flue gas, forming H_2 and CO as a hot syngas fuel. The OPTIMELT™ TCR system is simple and operated at atmospheric pressure without the need of catalysts or separate steam generation. It reduces fuel consumption of an oxy-fuel fired furnace by about 20% and offers an attractive conversion option for existing air-regenerator furnaces, with more than 30% fuel reduction compared to the air-fuel base case. This technology is currently being demonstrated on a 50 t/d commercial glass furnace at Pavisa. This paper introduces the operating principles of the TCR and highlights some milestones recently achieved at the demonstration site. Initial data from the TCR operation at the host furnace are presented and discussed.
机译:具有氧气-燃料燃烧功能的玻璃熔炉的运行以及先进的热回收技术是一种引人注目的低成本解决方案。普莱克斯已开发出一种用于氧气燃料炉的新的热回收技术,该技术中的蓄热器的使用方式与常规蓄热器类似,后者从炉烟气中回收废热。 OPTIMELT™热化学再生器(TCR)技术利用存储的废热将天然气和再循环烟气的混合物重整为热合成气,从而实现有效的热回收。天然气在热棋盘格中与吸回的烟气中的水蒸气和CO_2发生吸热反应,形成H_2和CO作为热合成气燃料。 OPTIMELT™TCR系统非常简单,并且可以在大气压下运行,而无需催化剂或单独产生蒸汽。它可将含氧燃料的窑炉的燃料消耗降低约20%,并为现有的空气蓄热式窑炉提供有吸引力的转换选项,与基于空气燃料的情况相比,可减少30%以上的燃料。该技术目前正在帕维萨(Pavisa)的50吨/天的商用玻璃熔炉上得到证明。本文介绍了TCR的工作原理,并重点介绍了演示站点最近实现的一些里程碑。介绍并讨论了来自主机炉的TCR操作的初始数据。

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