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Simulation analysis of flue-dust thermal treatment in microfluid furnace

机译:微流控炉烟尘热处理模拟分析

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Caustic and sintered magnesia are the main products of magnesite thermal treatment. Caustic magnesia is generated by decomposition of MgCO to MgO and CO. Sintered magnesia is generated at high temperatures at which a liquid phase is produced. Caustic magnesia is broadly used product. Because of high basicity, MgO is very convenient for reduction of water and environment acidity. The production of caustic magnesia is currently performed in rotary and multistage furnaces. The production in rotary furnaces comes with a high quantity of flue-dust - up to 35 %. The flue-dust consists of calcinated and partially calcinated particles and of magnesite dust particles with a high proportion of MgO. The flue-dust generated by current technology is captured in dust chambers, cyclones and fiber filters. The captured material is partly used for sinter magnesia production. Rest of the material is commercialized as waste with adequate low prices. In the developing technology, dust is separated from flue-gas and is directly treated in the microfluidic furnace. In the present development stage, the mathematical model of microfluidic furnace based on elementary balance method was created. A model adequacy was carried out on experimental furnace. The pilot microfluidic furnace was developed based on the simulations. The experiments of the flue dust calcination of rotary furnace were executed.
机译:苛性碱和烧结镁砂是菱镁矿热处理的主要产品。苛性氧化镁是通过将MgCO分解为MgO和CO生成的。烧结氧化镁是在产生液相的高温下生成的。苛性氧化镁是广泛使用的产品。由于碱度高,MgO非常适合减少水和环境酸度。目前,苛性镁的生产是在旋转炉和多级炉中进行的。旋转炉的生产中会产生大量的烟尘-高达35%。烟尘由煅烧和部分煅烧的颗粒以及镁矿粉和高含量的MgO组成。当前技术产生的烟尘被收集在集尘室,旋风分离器和纤维过滤器中。捕获的材料部分用于烧结氧化镁生产。其余材料以低廉的价格商业化为废物。在开发技术中,灰尘与烟气分离,并直接在微流炉中进行处理。在目前的发展阶段,建立了基于基本平衡法的微流控炉数学模型。在实验炉上进行模型充分性测试。在模拟的基础上开发了中试微流炉。进行了旋转炉烟气粉尘煅烧的实验。

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