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首页> 外文期刊>The Journal of Supercritical Fluids >PLA scaffolds production from Thermally Induced Phase Separation: Effect of process parameters and development of an environmentally improved route assisted by supercritical carbon dioxide
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PLA scaffolds production from Thermally Induced Phase Separation: Effect of process parameters and development of an environmentally improved route assisted by supercritical carbon dioxide

机译:PLA支架从热诱导的相分离产生:工艺参数的影响以及通过超临界二氧化碳辅助的环保途径的影响

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摘要

In this work, a relatively large scale of PLA scaffolds was produced using thermally induced phase separation (TIPS) combined with a supercritical carbon dioxide (SC-CO2) drying step as a green alternative. For the TIPS step, the phase separation of PIA and 1,4-dioxane solvent was controlled by adjusting the process conditions such as the polymer concentration and molecular weight, the 1,4-dioxane solvent power and the cooling conditions. The scaffolds morphology was analyzed by scanning electron microscopy. Their structural and mechanical properties were correlated together with the possibility to tune them by controlling the process conditions. An environmental analysis using the Life Cycle Assessment (LCA) methodology confirmed a reduction of at least 50% of the environmental impact of the whole process using the SC-CO2 drying compared to the traditional freeze-drying technology. This work is the first known attempt to conduct the LCA methodology on TIPS process for the PIA scaffolds production.
机译:在这项工作中,使用热诱导的相分离(尖端)与超临界二氧化碳(SC-CO2)干燥步骤中的热诱导的相分离(SC-CO2)干燥步骤作为绿色替代方案,产生相对大规模的PLA支架。对于提示步骤,通过调节诸如聚合物浓度和分子量,1,4-二恶烷溶剂功率和冷却​​条件,控制PIA和1,4-二恶烷溶剂的相分离。通过扫描电子显微镜分析支架形态。它们的结构和机械性能与通过控制过程条件来调整它们的可能性。使用生命周期评估(LCA)方法的环境分析证实,与传统的冷冻干燥技术相比,使用SC-CO2干燥证实了整个过程的至少50%的环境影响。这项工作是第一个已知的尝试在PIA脚手架生产的提示过程中进行LCA方法。

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