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Biomass thermochemical gasification: Experimental studies and modeling.

机译:生物质热化学气化:实验研究和建模。

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he overall goals of this research were to study the biomass thermochemical gasification using experimental and modeling techniques, and to evaluate the cost of industrial gas production and combined heat and power generation.;This dissertation includes an extensive review of progresses in biomass thermochemical gasification. Product gases from biomass gasification can be converted to biopower, biofuels and chemicals. However, for its viable commercial applications, the study summarizes the technical challenges in the gasification and downstream processing of product gas.;Corn stover and dried distillers grains with solubles (DDGS), a non-fermentable byproduct of ethanol production, were used as the biomass feedstocks. One of the objectives was to determine selected physical and chemical properties of corn stover related to thermochemical conversion. The parameters of the reaction kinetics for weight loss were obtained. The next objective was to investigate the effects of temperature, steam to biomass ratio and equivalence ratio on gas composition and efficiencies. DDGS gasification was performed on a lab-scale fluidized-bed gasifier with steam and air as fluidizing and oxidizing agents. Increasing the temperature resulted in increases in hydrogen and methane contents and efficiencies.;A model was developed to simulate the performance of a lab-scale gasifier using Aspen Plus(TM) software. Mass balance, energy balance and minimization of Gibbs free energy were applied for the gasification to determine the product gas composition. The final objective was to optimize the process by maximizing the net energy efficiency, and to estimate the cost of industrial gas, and combined heat and power (CHP) at a biomass feedrate of 2000 kg/h. The selling price of gas was estimated to be
机译:这项研究的总体目标是利用实验和建模技术研究生物质热化学气化,并评估工业气体生产以及热电联产的成本。;本文对生物质热化学气化的进展进行了广泛的综述。来自生物质气化的产物气体可以转化为生物能,生物燃料和化学物质。然而,对于可行的商业应用,该研究总结了气化和产物气的下游处理中的技术挑战。玉米秸秆和干燥的酒糟含可溶物(DDGS)被用作乙醇生产中不可发酵的副产物。生物质原料。目标之一是确定与热化学转化有关的玉米秸秆的选定物理和化学性质。获得了失重的反应动力学参数。下一个目标是研究温度,蒸汽与生物质之比和当量比对气体组成和效率的影响。 DDGS气化是在实验室规模的流化床气化炉上进行的,其中蒸汽和空气作为流化剂和氧化剂。温度升高导致氢气和甲烷含量和效率提高。;使用Aspen Plus™软件开发了一个模型来模拟实验室规模的气化炉的性能。质量平衡,能量平衡和吉布斯自由能的最小化被用于气化以确定产物气体组成。最终目标是通过最大程度地提高净能源效率来优化流程,并估算工业气体的成本以及在2000 kg / h的生物质进料速度下的热电联产(CHP)。天然气的售价估计为

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