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Co-gasification of sewage sludge and lignite coal in supercritical water for H2 production: a thermodynamic modelling approach

机译:H2生产超临界水中污水污泥和褐煤煤的协同气化:热力学建模方法

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A non-stoichiometry thermodynamic approach based on Gibbs free energy minimization is developed to predict the performance of hydrogen production from gasification of sewage sludge in supercritical water(SCWG).The study focuses on predicting of the influence of operating conditions on SCWG performance.It was done by varying the reaction temperature(400°C,500°C,600°C,700°C,800°C),feedstock concentration(5%-50%),and reaction pressure(25 MPa,30 MPa,and 35 MPa).The potential addition of lignite coal into the process also has been investigated.The prediction results showed that the reaction temperature and feedstock concentration had a stronger influence than the reaction pressure.The higher temperature and lower feedstock concentration favored the hydrogen yield and cold gas efficiency.The addition of lignite coal during gasification of sewage sludge in supercritical water slightly influence to the H2 yield and cold gas efficiency.It was expected that the present work is very helpful for evaluating and optimizing the performance of gasification process in supercritical water.
机译:开发了一种基于GIBBS自由能量最小化的非化学计量热力学方法,以预测超临界水(SCWG)中污水污泥气化的氢化的性能。本研究致力于预测对SCWG性能的运行条件影响。它是通过改变反应温度(400℃,500℃,600℃,700℃,800℃),原料浓度(5%-50%)和反应压力(25MPa,30MPa和35 MPA)。还研究了褐煤煤的潜在加入过程。预测结果表明,反应温度和原料浓度比反应压力更强。较高的温度和低原料浓度赞成氢屈服和冷煤气效率。超临界水中污水污泥气化过程中的褐煤略微影响H2产量和冷气效率。预计本作本作非常有用超临界水中气化过程的性能评估和优化。

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