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The Characteristics of Oxygen-Enriched Gasification for Fluff SRF

机译:Fluff SRF的富氧气化的特征

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In the gasification process, the composition of the syngas and its heating value are influenced by the oxidization agents. The oxidization agents include air, oxygen, oxygen enriched air or steam. A preliminary study on oxygen-enriched gasification of fluff solid refuse fuel (SRF) was carried out in a bench-scale down-draft fixed bed reactor. The purpose of this study is investigation for the influence of the oxygen concentration in the oxidization agent on the gasification characteristics such as syngas heating value, carbon conversion ratio and cold gas efficiency with a bench-scale fixed bed reactor. Low heating values (LHV) of sample 1 and 2 are 3,821 kcal/kg and 4,946 kcal/kg, respectively. The down-draft fixed bed reactor consists of nitrogen, oxygen and air inlet zone, reaction zone, gas purification zone and gas analysis zone. An electric heater with variable power is attached to the fixed bed reactor. The fluff SRF is fed inside the reactor. The dust, tar and moisture in the gas are separated by a cyclone, a venturi scrubber and a water separator. The purified gas was analyzed with gas chromatography (Inficon Micro GC 3000) at an interval of 3 minutes. The concentrations of H2 and CO in the syngas for test 3 were 15.51 % and 19.00%, respectively. However, in the case of test 4 the concentrations of H2 and CO in the syngas were 26.30 % and 23.21%, respectively. Therefore the concentration of combustible gas such as H2, CO and CH4 increased with increasing O2 concentration in the oxidization agent. However syngas cold gas efficiency and carbon conversion ratio was not increased with increasing O2 concentration in the oxidization agent.
机译:在气化过程中,合成气的组成及其加热值受氧化剂的影响。氧化剂包括空气,氧气,富含空气或蒸汽。在稳压固体垃圾燃料(SRF)的富含氧气气化的初步研究是在平坦的下式下式固定床反应器中进行。本研究的目的是对氧化剂中氧浓度对气化特性的影响进行调查,诸如合成气加热值,碳转化率和冷气效率,具有台阶固定床反应器。样品1和2的低加热值(LHV)分别为3,821kcal / kg和4,946kcal / kg。下式固定床反应器由氮气,氧气和空气入口区,反应区,气体净化区和气体分析区组成。具有可变功率的电加热器连接到固定床反应器上。绒毛SRF在反应器内部送入。气体中的灰尘,焦油和水分由旋风,文丘里洗涤器和水分离器分开。用气相色谱(Inficon Micro GC 3000)以3分钟的间隔分析纯化的气体。用于试验3的合成气中H2和Co的浓度分别为15.51%和19.00%。然而,在试验4的情况下,合成气中的H 2和CO的浓度分别为26.30%和23.21%。因此,随着氧化剂中的浓度的增加,诸如H 2,CO和CH4的可燃气体的浓度增加。然而,随着氧化剂中的O2浓度的增加而增加,Syngas冷气效率和碳转化率不会增加。

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