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首页> 外文期刊>Journal of Manufacturing Processes >Manufacturing Process Design of a Micro-Scale Liquid-Liquid Extractor and Multi-phase Separator
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Manufacturing Process Design of a Micro-Scale Liquid-Liquid Extractor and Multi-phase Separator

机译:微级液体液液提取器和多相分离器的制造工艺设计

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Advances in process innovation within the chemical process industry are impeded by the cost of producing new innovative components. In this paper, various manufacturing process routes were evaluated for scaling up a micro-scale liquid-liquid extractor and multi-phase separator capable of separating immiscible phases that are used for the extraction of a chemical product into a lower boiling point solvent to make downstream distillation easier. A manufacturing process design methodology was used to evaluate both photochemical machining and binder jetting as a means for producing the micropost arrays within the separator. Cost curves show that for a 0.3 mm deep micropost array, photochemical machining was found to be much cheaper than binder jetting. However, because binder jetting processes enable microposts with over 13 times higher depth-to-width aspect ratios, binder jetting was found to decrease the overall costs of the extractor/separator by more than half for a 500 barrel per day plant, with breakeven as low as 15 barrels per day. These economics were confirmed by building extractor/separator plates and characterizing them dimensionally and functionally. The binder jet plates were found to perform better than photochemical plates leading to the complete separation of the organic phase from water. The use of slower sintering cycles combined with surface grinding provided acceptable dimensional tolerances for the binder jet plates. Using pressurized air during depowdering improved the economics for the binder jetting process.
机译:通过生产新的创新成分的成本,化工工艺中的过程创新进展受到生产成本。在本文中,评价各种制造工艺路线以进行缩放微级液体提取器和能够分离用于将化学产品提取到较低沸点溶剂中的不混溶的相的多相分离器以使下游的不混溶的相蒸馏更容易。制造工艺设计方法用于评估光化学加工和粘合剂喷射作为用于在隔膜内产生微孔阵列的装置。成本曲线表明,对于0.3毫米深的微阵列,发现光化加工比粘合剂喷射更便宜。然而,由于粘合剂喷射过程使微孔能够具有超过13倍的深度到宽度纵横比,因此发现粘合剂喷射将提取器/分离器的总成本降低超过一半,每天植物500桶,具有盈亏平衡每天低至15桶。通过建造提取器/隔板板并在功能上表征这些经济学,并在功能上表征这些经济学。发现粘合剂喷射板比光化学板更好地执行,从而完全分离有机相的水。使用较慢的烧结循环结合表面研磨为粘合剂喷射板提供了可接受的尺寸公差。在第喷器中使用加压空气改善了粘合剂喷射过程的经济学。

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