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Numerical study of the effect of oxidation zone inlet air temperature variation on municipal solid waste pellet gasification process on downdraft type reactor characteristics

机译:氧化区入口空气温度变化对下游型反应器特性的氧化区入口空气温度变化的数值研究

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Gasification is an efficient technology to extract energy from MSW biomass into energy in the form of syngas.One of the most influential paramerers to improve syngas quality is temperature,so the development of the design and operation of the downdraft type reactor is done by heating the inlet air of the oxidation zone through an external heater.Research with numerical studies was carried out on the effect of the inlet air in the oxidation zone to determine the temperature distribution and syngas composition along the reactor.Based on experimental research,heating the inlet air of the oxidation zone with external heaters in this study was carried out with 5 temperature variations,namely 80 °C,110 °C,150 °C,180 °C,and 200 °C.The modeling used is the standard model k-epsilon,Radiation PI,the transport species model with turbulence used is finite-rate/eddy-dissipation,and Discrete Phase Model(DPM).The results obtained from this study were that the highest air temperature was obtained at 200°C at 1004 °C in the oxidation zone.The composition of syngas CO,H2,and CH4 at temperature increases of 80-200 °C increased from 21.64%,9.24%,and 2.86% to 22.65%,10.49%,and 3.10%.Then increasing the LHV syngas from 4,757.20 kJ/m~3 to 5,106.02 kJ/m~3.Cold gas efficiency increased from 72.17% to 79.31%.
机译:气化是一种有效的技术,可以从MSW生物量提取能量以合成气的形式提取能量。最具影响力的参数器,以提高合成气质量的是温度,因此通过加热来完成下行型反应器的设计和操作的开发通过外部加热器的氧化区的入口空气。在氧化区中的入口空气的影响下进行了数值研究的研究,以确定沿反应器的温度分布和合成气组成。基于实验研究,加热入口空气在本研究中的外部加热器的氧化区用5个温度变化进行,即80℃,110℃,150℃,180℃和200℃。使用的建模是标准型K-Epsilon ,辐射PI,使用湍流的运输物种模型是有限速率/涡流和离散相模型(DPM)。从该研究中获得的结果是在2中获得最高的空气温度氧化区00℃。氧化区的1004℃。在80-200℃的温度增加的合成气CO,H 2和CH4的组成增加到21.64%,9.24%和2.86%至22.65%,10.49%和提高4,757.20 kJ / m〜3至5,106.02 kJ / m〜3.电气效率从72.17%增加到79.31%,增加了3.10%。

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