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首页> 外文期刊>Biomass & bioenergy >Biomass and fossil fuel conversion by pressurised fluidised bed gasification using hot gas ceramic filters as gas cleaning
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Biomass and fossil fuel conversion by pressurised fluidised bed gasification using hot gas ceramic filters as gas cleaning

机译:通过使用热气陶瓷过滤器作为气体清洁剂的加压流化床气化来转化生物质和化石燃料

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Gasification of biomass and fossil fuels, hot gas cleanup using a ceramic filter and combustion of LCV product gas in a combustor were performed using a 1.5 MWth test rig (pressurised bubbling fluidised bed gasifier) at Delft University and a 10-50 kWth system at Stuttgart University (DWSA) in the framework of experimental research on efficient, environmentally acceptable large-scale power generators based on fluidised bed gasification. The influence of operating conditions (pressure, temperature, stoichiometric ratio) on gasification (gas composition, conversion grades) was studied. The gasifiers were operated in a pressure range of 0.15-0.7 MPa and maximum temperatures of ca. 900℃. The Delft gasifier has a 2m high bed zone (diameter: 0.4m) followed by a freeboard approximately 4m high (diameter: 0.5m). The IVD gasifier has a diameter of 0.1m and a reactor length of 4m. Carbon conversions during wood, miscanthus and brown coal gasification experiments were well above 80%. Fuel-nitrogen conversion to ammonia was above ca. 50% and the highest values were observed for biomass. The results are in line with other investigations with biomass bottom feeding. Deviation occurs compared with top feeding. Measurements are compared with simulation results of a reaction-kinetics-based model, using ASPEN PLUS, related to emission of components like fuel-nitrogen-derived species. Data from literature regarding initial biomass flash pyrolysis in the gasification process are used in the gasifier model and will be compared with simulation results from the FG-DVC model. Measurements and model predictions were in reasonably good agreement with each other.
机译:生物质和化石燃料的气化,使用陶瓷过滤器的热气净化以及燃烧器中LCV产物气的燃烧是通过代尔夫特大学的1.5 MWth试验装置(加压鼓泡流化床气化炉)和斯图加特的10-50 kWth系统进行的大学(DWSA)在基于流化床气化的高效,环境可接受的大型发电机的实验研究框架内。研究了操作条件(压力,温度,化学计量比)对气化(气体成分,转化等级)的影响。气化炉在0.15-0.7 MPa的压力范围内运行,最高温度约为190℃。 900℃。代尔夫特气化炉有一个2m高的床层区域(直径:0.4m),其后是一个干高约4m(直径:0.5m)的干舷。 IVD气化炉的直径为0.1m,反应器长度为4m。木材,芒草和褐煤气化实验过程中的碳转化率远高于80%。燃料氮转化为氨的转化率高于约3。 50%的生物量最高。该结果与生物质底部进料的其他研究一致。与顶部进料相比,出现偏差。使用ASPEN PLUS,将测量结果与基于反应动力学的模型的模拟结果进行了比较,该模型涉及与燃料氮衍生的物质等成分的排放。在气化炉模型中使用文献中有关气化过程中初始生物质闪速热解的数据,并将其与FG-DVC模型的模拟结果进行比较。测量结果和模型预测彼此之间相当合理地吻合。

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