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Thermodynamic analysis of hydrogen production via steam reforming of selected components of aqueous bio-oil fraction

机译:通过蒸汽重整含水生物油馏分的选定成分来生产氢气的热力学分析

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This work presents thermodynamics analysis of hydrogen production via steam reforming of bio-oil components. The model compounds, acetic acid, ethylene glycol and acetone, representatives of the major classes of components present in the aqueous fraction of bio-oil were used for the study. The equilibrium product compositions were investigated in a broad range of conditions like temperature (400-1300 K), steam to fuel ratio (1-9) and pressure (1-20 atm). Any of the three model compounds can be fully reformed even at low temperatures producing hydrogen with maximum yield ranging from 80% to 90% at 900 K. Steam to fuel ratio positively affect the hydrogen content over the entire range of temperature studied. Conversely, higher pressure decreases the hydrogen yield. The formation of solid carbon (graphite) does not constitute a problem provided that reforming temperatures higher than 600 K and steam to fuel ratios higher than 4 for acetic acid and ethylene glycol and 6 for acetone are to be used. Thermal decomposition of the bio-oil components is thermodynamically feasible, forming a mixture containing C_((s)), CH_4, H_2, CO, CO_2, and H_2O at various proportions depending on the specific nature of the compound and the temperature. Material and energy balances of complete reforming system demonstrated that the production of 1 kmol/s hydrogen from bio-oil steam reforming requires almost the same amount of energy as with natural gas reforming.
机译:这项工作提出了通过生物油组分的蒸汽重整制氢的热力学分析。研究中使用的是模型化合物,乙酸,乙二醇和丙酮,它们是生物油含水部分中主要成分的代表。在广泛的条件下,例如温度(400-1300 K),蒸汽与燃料的比率(1-9)和压力(1-20 atm),研究了平衡产物的组成。即使在低温下,这三种模型化合物中的任何一种都可以完全重整,从而在900 K时产生氢的最大产率为80%至90%。蒸汽/燃料比对整个研究温度范围内的氢含量均产生积极影响。相反,较高的压力降低了氢气的产率。固态碳(石墨)的形成不构成问题,只要使用的重整温度高于600 K,且蒸汽和燃料的比率对于乙酸和乙二醇而言应高于4,对于丙酮而言应高于6。生物油成分的热分解在热力学上是可行的,取决于化合物的具体性质和温度,形成包含各种比例的C_(CH),CH_4,H_2,CO,CO_2和H_2O的混合物。完整重整系统的材料和能量平衡表明,由生物油蒸汽重整生产1 kmol / s氢气所需的能量几乎与天然气重整相同。

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