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Kinetic analysis of Wood residues and Gorse (Ulex europaeus) pyrolysis under non-isothermal conditions: A case of study in Bogotá, Colombia

机译:非等温条件下木材残留物和金雀花(欧洲油松)热解的动力学分析:以哥伦比亚波哥大为例

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Thermal degradation and kinetic for biomass materials wood residues and Gorse ( Ulex europaeus ) have been evaluated under pyrolysis (N2) conditions, using a non-isothermal thermogravimetric method (TGA) from 25°C to 900°C at different heating rates of 10, 20, 30 and 40°C min~(-1). In DTG curves the temperature peaks at maximum weight loss rate changed with increasing heating rate. The maximum rate of weight loss (%s~(-1)) was obtained at a heating rate of 40°C/min of 0,38 and 0,46 (%s~(-1)) for wood residues and Gorse, respectively. Activation energy calculations were based on selected non-isothermal methods (Kissinger, FWO, KAS, and Starink). For Gorse, the energy activation was 195.41, 194.44, 214.39 and 179.42 kJmol~(-1)by Kissinger, FWO, KAS, and Starink methods, respectively. In the other hand, the energy activation for wood residues was 176.03, 221.75, 243.08 and 198.26 kJmol~(-1)by Kissinger, FWO, KAS, and Starink methods, respectively. The results showed that Gorse has a lower activation energy than wood residues, which represents a great potential to be used as a feedstock in thermochemical technologies. The Levelized Cost of Electricity (LCOE) was calculated for gasification of wood residues and Gorse, which was 186 and 169 USD/MWh, respectively.
机译:在25°C至900°C的温度下,采用非等温热重法(TGA),在10的不同加热速率下,采用热解(N2)条件对生物质材料中的木材残留物和马斯(Ulex europaeus)的热降解和动力学进行了评估,最低20、30和40°C(-1)。在DTG曲线中,最大失重率下的温度峰随加热速率的增加而变化。在40°C / min的加热速率下,木材残余物和Gorse的最大失重率(%s〜(-1))为0.38和0.46(%s〜(-1))。分别。活化能的计算基于选定的非等温方法(Kissinger,FWO,KAS和Starink)。对于高斯来说,基辛格,FWO,KAS和Starink方法的能量活化分别为195.41、194.44、214.39和179.42 kJmol〜(-1)。另一方面,用基辛格法,FWO法,KAS法和Starink法测得的木材残渣的能量活化分别为176.03、221.75、243.08和198.26 kJmol〜(-1)。结果表明,高斯(Gorse)的活化能比木材残余物低,这代表了在热化学技术中用作原料的巨大潜力。计算出的木渣和气化炉气化的平均电力成本(LCOE)分别为186美元/兆瓦时和169美元/兆瓦时。

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