Brito-Parada Pablo R, Dewes Ruben Markus, Vega-Garcia Dennis, Cilliers Jan J
Imperial College London Department of Earth Science and Engineering South Kensington Campus SW7 2AZ London UK.
University of Kaiserslautern Erwin-Schrödinger-Strasse 44 67663 Kaiserslautern Germany.
Chem Eng Technol. 2018 Dec;41(12):2323-2330. doi: 10.1002/ceat.201800290. Epub 2018 Oct 31.
Small hydrocyclones are an attractive technology for biomass separation from fermentation processes. The interactive effect of design parameters on the performance of mini-hydrocyclones is, however, not fully explored and studies are often limited by the challenges in manufacturing such small units. Here, 10-mm mini-hydrocyclones are produced by 3D printing and the impact of spigot diameter, vortex finder diameter and height on separation performance is studied. A central composite rotatable design was adopted to obtain information on the relation between the variables and their influence on concentration ratio and recovery of yeast from a highly diluted system. A Pareto front for separation performance was generated and shown to be suitable to select an optimal design for a set of process constraints.
小型水力旋流器是一种从发酵过程中分离生物质的颇具吸引力的技术。然而,设计参数对微型水力旋流器性能的交互作用尚未得到充分研究,而且相关研究常常受到制造如此小的装置所面临挑战的限制。在此,通过3D打印制造出了10毫米的微型水力旋流器,并研究了出料口直径、涡旋收集器直径和高度对分离性能的影响。采用中心复合旋转设计来获取有关变量之间关系及其对从高度稀释系统中回收酵母的浓缩比和回收率影响的信息。生成了分离性能的帕累托前沿,并表明其适用于为一组工艺约束条件选择最佳设计。