首页> 外文会议>Annual technical conference of the Society of Plastics Engineers;Technical conference of the Society of Plastics Engineers;ANTEC 2009 >PREDICTION OF MASS TRANSPORT OF SOLVENT / POLYMER SYSTEMS IN HIGH VOLUME KNEADER REACTORS AT FINITE SOLVENT CONCENTRATIONS
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PREDICTION OF MASS TRANSPORT OF SOLVENT / POLYMER SYSTEMS IN HIGH VOLUME KNEADER REACTORS AT FINITE SOLVENT CONCENTRATIONS

机译:有限溶剂浓度下高容量捏合反应器中溶剂/聚合物系统的质量传输预测

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Kneader reactors are used for combined unitary processing in the polymer industry for devolatilization, compounding or polymerization. In the past, mass transport prediction for devolatilization operations in kneader reactors did not match experimental results, when diffusion was assumed as sole driving force. It was detected that there is an additional concentration and temperature dependent driving force that triggers enhanced transport at finite solvent concentrations by orders of magnitude. The author suggests that the underlying root cause is likely micro bubble formation within the polymer melt. An attempt to model this additional mass transport mechanism is presented.
机译:捏合反应器在聚合物工业中用于脱挥发分,复合或聚合的联合整体工艺。过去,将扩散作为唯一驱动力时,捏合反应器中脱挥发分操作的传质预测与实验结果不符。已检测到存在额外的浓度和温度相关的驱动力,该驱动力可在有限的溶剂浓度下触发几个数量级的增强运输。作者认为,根本原因可能是聚合物熔体中形成了微气泡。提出了对这种附加的物质传输机制进行建模的尝试。

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