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Low-nitrogen oxides combustion of dried sludge using a pilot-scale cyclone combustor with recirculation

机译:使用带再循环的中试旋风燃烧器燃烧干燥污泥的低氮氧化物

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摘要

Recently, numerical and experimental studies have been conducted to develop a moderate or intense low-oxygen dilution (MILD) combustion technology for solid fuels. The study results demonstrated that intense recirculation inside the furnace by high-momentum air is a key parameter to achieve the MILD combustion of solid fuels. However, the high-velocity air requires a significant amount of electricity consumption. A cyclone-type MILD combustor was therefore designed and constructed in the authors' laboratory to improve the recirculation inside the combustor. The laboratory-scale tests yielded promising results for the MILD combustion of dried sewage sludge. To achieve pilot-scale MILD combustion of dried sludge in this study, the effects of geometric parameters such as the venturi tube configuration, the air injection location, and the air nozzle diameter were investigated. With the optimized geometric and operational conditions, the pilot-scale cyclone combustor demonstrated successful MILD combustion of dried sludge at a rate of 75 kg/hr with an excess air ratio of 1.05.
机译:近来,已经进行了数值和实验研究以开发用于固体燃料的中等或强烈的低氧稀释(MILD)燃烧技术。研究结果表明,高动量空气在炉内进行强烈的再循环是实现固体燃料轻度燃烧的关键参数。但是,高速空气需要大量的电力消耗。因此,在作者的实验室中设计并制造了旋风式MILD燃烧器,以改善燃烧器内部的再循环。实验室规模的测试对于干燥污泥的轻度燃烧产生了可喜的结果。为了在本研究中实现干污泥的中试规模MILD燃烧,研究了诸如文丘里管构型,空气注入位置和空气喷嘴直径等几何参数的影响。通过优化的几何和运行条件,中试规模的旋风燃烧室证明了干污泥以75千克/小时的速度和1.05的过量空气比率成功进行了MILD燃烧。

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    Environmental and Energy Research Division, Korea Institute of Machinery & Materials, Daejeon, Korea;

    Environmental and Energy Research Division, Korea Institute of Machinery & Materials, Daejeon, Korea;

    Department of Environmental Engineering, Chungbuk National University, Cheongju, 361-763, Korea;

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