Ebadi Abdol Ghaffar, Hisoriev Hikmat
a Institute of Botany, Plant Physiology and Genetics, Tajik Academy of Sciences , Dushanbe , Tajikistan.
Environ Technol. 2019 Feb;40(6):749-755. doi: 10.1080/09593330.2017.1406538. Epub 2017 Nov 28.
Gasification is one of the most important thermochemical routes to produce both synthesis gas (syngas) and chars. The quality of produced syngas wieldy depends on the operating conditions (temperature, residence time, heating rate, and gasifying agent), hydrodynamic properties of gasifier (particle size, minimum fluidization velocity, and gasifier size), and type of feedstock (coal, biomass, oil, and municipal solid wastes). In the present study, simulation of syngas production via circulating fluidized bed (CFB) gasification of algal biomass (Cladophora glomerata L.) at different gasifying agents and particle sizes was carried out, using Aspen Plus simulator. The model which has been validated by using experimental data of the technical literature was used to evaluate the influence of operating conditions on gas composition and performance parameters. The results show that biomass gasification using pure oxygen as the gasification agent has great potential to improve the caloric value of produced gas and performance indicators. It was also found that the produced gas caloric value, syngas yield, and performance parameters (CCE and CGE) increase with reaction temperature but are inversely proportional to the biomass particle size.
气化是生产合成气(合成气)和焦炭的最重要的热化学途径之一。所生产合成气的质量极易取决于操作条件(温度、停留时间、加热速率和气化剂)、气化炉的流体动力学特性(颗粒尺寸、最小流化速度和气化炉尺寸)以及原料类型(煤、生物质、油和城市固体废物)。在本研究中,使用Aspen Plus模拟器对不同气化剂和颗粒尺寸下藻类生物质(球状刚毛藻)通过循环流化床(CFB)气化生产合成气进行了模拟。该模型已通过使用技术文献的实验数据进行了验证,用于评估操作条件对气体组成和性能参数的影响。结果表明,以纯氧作为气化剂进行生物质气化具有提高产气热值和性能指标的巨大潜力。还发现,产气热值、合成气产率和性能参数(CCE和CGE)随反应温度升高而增加,但与生物质颗粒尺寸成反比。