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Design of Refractory Linings for Balanced Energy Efficiency, Uptime, and Capacity in Lime Kilns

机译:石灰窑中平衡能量效率,正常运行时间和产能的耐火衬里设计

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摘要

Kilns used to regenerate lime in the Kraft process are very energy intensive. Throughout the 90's, in response to increasing fuel prices, the pulp and paper industry used back up insulation in conjunction with the high alumina brick to line the calcining zones of their kilns. Due to the dramatic decline in the price of natural gas in combination with mounting pressures to increase production of existing assets, in some areas, over the last decade, many mills are currently focusing more on increasing uptime and capacity as opposed to energy savings. To this end, a growing number of mills are using basic (magnesia based) brick instead of high alumina brick to line the calcining zone of the kiln. While the use of basic brick can increase the uptime and reduce the cost to maintain the refractory lining, it can dramatically increase the shell temperatures and heat losses. There are tradeoffs between energy efficiency, capacity and uptime. In this work a computer model is used to examine how refractory linings using both high alumina and basic refractory bricks impact kiln operations. Recommendations are made based on the results of this work to help mill personnel to design a refractory lining that is optimized for their specific situation.
机译:在牛皮纸工艺中用于再生石灰的窑炉非常耗能。在整个90年代,为响应不断上涨的燃料价格,制浆造纸业将后备保温材料与高铝砖结合起来,用于窑炉的煅烧区域。在过去的十年中,由于天然气价格的急剧下跌以及增加现有资产产量的不断增加的压力,在许多地区,许多钢厂目前更加注重增加正常运行时间和产能,而不是节约能源。为此,越来越多的工厂正在使用基本(镁基)砖代替高铝砖来衬砌窑炉的煅烧区。虽然使用基本砖可以增加正常运行时间并降低维护耐火衬里的成本,但它可以显着增加壳体温度和热量损失。在能源效率,容量和正常运行时间之间需要权衡取舍。在这项工作中,使用计算机模型来检查使用高铝和基本耐火砖的耐火炉衬如何影响窑炉操作。根据这项工作的结果提出建议,以帮助工厂人员设计针对他们的具体情况进行了优化的耐火衬里。

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