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Optimization and economic evaluation of industrial gas production and combined heat and power generation from gasification of corn stover and distillers grains

机译:工业气体的优化与经济评价 生产和热电联产 玉米秸秆和酒糟的气化

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摘要

Thermochemical gasification is one of the most promising technologies for converting biomass into power, fuels and chemicals. The objectives of this study were to maximize the net energy efficiency for biomass gasification, and to estimate the cost of producing industrial gas and combined heat and power (CHP) at a feedrate of 2000 kg/h. Aspen Plusbased model for gasification was combined with a CHP generation model, and optimized using corn stover and dried distillers grains with solubles (DDGS) as the biomass feedstocks. The cold gas efficiencies for gas production were 57% and 52%, respectively, for corn stover and DDGS. The selling price of gas was estimated to be $11.49 and $13.08/GJ, respectively, for corn stover and DDGS. For CHP generation, the electrical and net efficiencies were as high as 37% and 88%, respectively, for corn stover and 34% and 78%, respectively, for DDGS. The selling price of electricity was estimated to be $0.1351 and $0.1287/kW h for corn stover and DDGS, respectively. Overall, high net energy efficiencies for gas and CHP production from biomass gasification can be achieved with optimized processing conditions. However, the economical feasibility of these conversion processes will depend on the relative local prices of fossil fuels.
机译:热化学气化是将生物质转化为电力,燃料和化学药品的最有前途的技术之一。这项研究的目的是最大程度地提高生物质气化的净能源效率,并估算以2000 kg / h的进料速度生产工业气体以及热电联产(CHP)的成本。基于Aspen Plus的气化模型与CHP生成模型相结合,并使用玉米秸秆和具有可溶物(DDGS)的干燥酒糟作为生物质原料进行了优化。玉米秸秆和DDGS的产气冷气效率分别为57%和52%。玉米秸秆和DDGS的天然气售价分别估计为11.49美元和13.08美元/ GJ。对于热电联产,玉米秸秆的电效率和净效率分别高达37%和88%,而DDGS的分别为34%和78%。玉米秸秆和DDGS的电价估计分别为0.1351美元/千瓦时和0.1287美元/千瓦时。总体而言,通过优化的处理条件可以实现生物质气化生产天然气和CHP的高净能源效率。但是,这些转化过程的经济可行性将取决于化石燃料的相对本地价格。

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