首页> 外文会议>IMECE2009;ASME international mechanical engineering congress and exposition >INVESTIGATION OF THE FEASIBILITY AND FEEDSTOCK MANAGEMENT STRATEGIES OF A FLEXIBLE BIOMASS TO ETHANOL PLANT VIA PROCESS SIMULATION
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INVESTIGATION OF THE FEASIBILITY AND FEEDSTOCK MANAGEMENT STRATEGIES OF A FLEXIBLE BIOMASS TO ETHANOL PLANT VIA PROCESS SIMULATION

机译:通过过程模拟研究柔性生物质在乙醇厂中的可行性和饲料管理策略

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Current US transportation sector mainly relies on liquid hydrocarbon derived from petroleum oil and about 60% of the petroleum oil consumed is from areas where supply may be disturbed by regional instability. This has led to serious concerns on global warming and energy security. To address these issues, numerous alternative energy carriers have been proposed. Among them, second generation biofuel is one of the most promising technologies. Gasification based thermo-chemical conversion can utilize a wide range of biomass wastes and residues and bring flexibility to both feedstock and production sides of a plant, thus presents an attractive technical route. In this paper, a flexible feedstock thermo-chemical ethanol production process is investigated. This research focuses mainly on the evaluation of the feasibility of the process through numerical simulation. An existing thermo-chemical ethanol production model developed by NREL has been updated to handle the cases when different biomass feedstock and feedstock combinations are used. It is found that the ethanol yield is positively proportional to the feedstock feeding rate, while the total conversion efficiency is negatively proportional to the feeding rate. To demonstrate a feedstock management strategy, a plant located near a major city with a population of 200,000 and above is considered and MSW, legume straw and wood chips are selected as potential feedstock. Simulation results indicate that with wood chips as the backup feedstock the plant can be operated under extreme conditions when legume straw availability is significantly reduced without major equipment modification.
机译:当前的美国运输部门主要依靠源自石油的液态烃,所消耗的石油中约60%来自区域不稳定可能会扰乱供应的地区。这引起了对全球变暖和能源安全的严重关注。为了解决这些问题,已经提出了许多替代能源载体。其中,第二代生物燃料是最有前途的技术之一。基于气化的热化学转化可以利用各种生物质废物和残渣,并为工厂的原料和生产方带来灵活性,因此提供了一条有吸引力的技术路线。本文研究了一种灵活的原料热化学乙醇生产工艺。这项研究主要集中在通过数值模拟评估该过程的可行性。由NREL开发的现有热化学乙醇生产模型已经更新,可以处理使用不同生物质原料和原料组合的情况。发现乙醇产率与原料进料速率成正比,而总转化效率与进料速率成负比。为了展示一种原料管理策略,考虑了在一个人口超过200,000的大城市附近的工厂,并选择了城市固体废弃物,豆类秸秆和木片作为潜在的原料。仿真结果表明,使用木屑作为备用原料时,无需修改主要设备即可显着降低豆类秸秆的利用率,从而使工厂可以在极端条件下运行。

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