首页> 外文会议>TMS Annual Meeting amp;amp;amp;amp;amp;amp;amp;amp;amp; Exhibition >Prototyping of a Laboratory-Scale Cyclone Separator for Biofuel Production from Biomass Feedstocks Using a Fused Deposition Modeling Printer
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Prototyping of a Laboratory-Scale Cyclone Separator for Biofuel Production from Biomass Feedstocks Using a Fused Deposition Modeling Printer

机译:使用熔融沉积建模打印机从生物量原料生产的生物燃料生产的实验室范围旋风分离器的原型

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Nowadays, additive manufacturing (AM) enables research institutions and companies to make a prototype of a complex apparatus in a timely and cost-effective manner. In this study, a cyclone separator is designed and built, using one of AM technologies [i.e., fused deposition modeling (FDM)] for removal of solid contaminants. The FDM-printed cyclone has been integrated and empirically verified on the catalytic fast pyrolysis conversion process for bioproducts (e.g., bio-oil and biochar) production from biomass feedstocks. The Pyrolysis process is near commercial ready, yet requires further research to address shortcomings (e.g., process yield and product quality) in the major components, such as feed system, reactor, cyclone, and condenser. Lab-scale, three-dimensional (3D) printed prototypes can, in turn, accelerate the evaluation process before developing the final conversion process components. AM is one of the promising approaches for prototyping a complicated apparatus in bioenergy production process.
机译:如今,添加剂制造业(AM)使研究机构和公司能够及时且经济高效地制作复杂设备的原型。在本研究中,使用AM技术之一设计和构建一个旋风分离器,用于去除固体污染物的一个技术[即融合沉积建模(FDM)。 FDM印刷的旋风内已被整合并凭经验验证了生物量原料的生物产物(例如,生物油和BioChar)生产的催化快速热解转换方法。热解过程在商业准备附近,需要进一步研究主要部件中的缺点(例如,过程产量和产品质量),例如饲料系统,反应器,旋风器和冷凝器。实验室规模,三维(3D)印刷原型可以在开发最终转换过程组件之前加速评估过程。 AM是原型设计生物能源生产过程中复杂仪器的有希望的方法之一。

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