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首页> 外文期刊>Waste Management >Feeding spent coffee grounds into reactors: TFM simulation of a non-mechanical spouted bed type feeder
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Feeding spent coffee grounds into reactors: TFM simulation of a non-mechanical spouted bed type feeder

机译:将废咖啡液送入反应堆:TFM模拟非机械喷射床型饲养器

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摘要

Due to the increasing coffee production, Spent Coffee Grounds' (SCGs) generation has grown dramatically, hence appropriate management of this solid biomass waste is imperative. SCGs can be used as feedstocks for renewable energy and fuel generation provided that a stable feeding of powders to reactors is maintained. Recently, a non-mechanical spouted bed feeder proved itself an excellent alternative in feeding SCGs to a pilot-scale circulating fluidized bed reactor. Nonetheless, further studies are necessary for the feeder's implementation in commercial applications. Here the feeding of SCGs with the spouted bed feeder is addressed by using Computational Fluid Dynamics. Firstly, a Two-Fluid Model (TFM) is validated against experimental data, and then the effects of five operating and design parameters were analyzed aiming at improving the handling of SCGs. The solids flowrate (W_S) in the reactor could be stably controlled from 4 to 30 g/s depending on the settings. The feeder performance is enhanced by operating it under high gas flowrate (Q), high entrainment length (z), and high mass of solids in the feeder (H_S). Using feeders with low cone angle (γ) or reactors with large diameter (D_R) increases W_S, which is appealing for the operation of medium-to large-scale units. The proposed TFM is a cost-effective tool for implementing spouted bed feeders in commercial applications. With the feeder coupled to the process, SCGs are treated continuously in the reactor for energy generation, thus reducing the disposal problems associated with this waste and improving the management of SCGs globally.
机译:由于咖啡生产的增加,花费咖啡厅(SCGS)的生成急剧增长,因此适当管理这种固体生物质废物是必要的。 SCG可用作可再生能量和燃料的原料,并且提供了保持粉末与反应器的稳定进料。最近,非机械喷射的床馈线证明了将SCG送到先导循环流化床反应器的优异替代方案。尽管如此,进一步的研究是饲养者在商业应用中实施的必要条件。这里通过使用计算流体动力学来解决与喷射床馈线的SCG的馈送。首先,针对实验数据验证了双流体模型(TFM),然后分析了五种操作和设计参数的影响,旨在改善SCG的处理。反应器中的固体流量(W_S)可以根据设置稳定地控制4至30g / s。通过在高气体流量(Q),高夹带长度(Z)和进料器(H_S)中的大量固体中通过操作来提高进料器性能。使用具有低锥角(γ)或具有大直径(D_R)的反应器的馈电器增加了W_S,这是对介质到大规模单元的操作吸引力。所提出的TFM是一种成本效益的工具,用于在商业应用中实施喷射的床馈线。通过耦合到该方法的进料器,SCG在反应器中连续处理,以便能量产生,从而降低与此废物相关的处理问题,并在全球范围内提高SCG的管理。

著录项

  • 来源
    《Waste Management》 |2020年第5期|161-170|共10页
  • 作者单位

    ARC Research Hub for Computational Particle Technology Chemical Engineering Department Monash University Clayton VIC 3800 Australia Drying Center for Pastes Suspensions and Seeds Chemical Engineering Department Federal University of Sao Carlos P.O. Box 676 13565-905 Sao Carlos Brazil;

    Drying Center for Pastes Suspensions and Seeds Chemical Engineering Department Federal University of Sao Carlos P.O. Box 676 13565-905 Sao Carlos Brazil;

    ARC Research Hub for Computational Particle Technology Chemical Engineering Department Monash University Clayton VIC 3800 Australia;

    ARC Research Hub for Computational Particle Technology Chemical Engineering Department Monash University Clayton VIC 3800 Australia Centre for Simulation and Modelling of Particulate Systems Southeast University-Monash University Joint Research Institute Suzhou 215123 PR China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Feeding device; Spent coffee grounds; Two-fluid model; Spouted bed; CFD;

    机译:喂食装置;花咖啡渣;双流体模型;喷床;差价合约;

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