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In-situ Thermal Performance Monitoring of Pharma 4.0 Flow Bioreactors

机译:原位热能监测Pharma 4.0流动生物反应器

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Pharma 4.0 is an application of Industry 4.0 principles to pharmaceutical industry. Flow chemistry is a method to carry out chemical reactions under well-controlled conditions in small volume reactors. Reactions carried out in the flow chemistry system are supervised under continuous quality control may satisfy some of the perquisites of Pharma 4.0 systems. In the present work the thermal interface quality of a chemical reactor assembled to a flow chemistry thermostat was investigated to detect user related assembly errors and thermal interface degradation over time. We were able to mimic a designed contamination of the thermal interface material caused by inadequate assembly as a result of glass spacers inserted between the reactor and the heat exchanger plate. The thermal resistance was characterized in several measurement setups to determine the smallest detectable change of the thermal interface. Measurements have shown that even 0.05 K/W change in thermal resistance is detectable by the investigated thermostat unit.
机译:Pharma 4.0是制药行业的工业4.0原则的应用。流动化学是一种在小体积反应器中在良好控制的条件下进行化学反应的方法。流动化学系统中进行的反应在连续质量控制下进行监督,可以满足药物4.0系统的一些腐败性。在本工作中,研究了组装到流动化学恒温器的化学反应器的热界面质量,以检测用户相关的装配误差和热界面随时间劣化。我们能够模仿由插入在反应器和热交换器板之间的玻璃间隔物的玻璃间隔物而导致的热界面材料的设计污染。热阻的特征在于几个测量设置以确定热界面的最小可检测变化。测量表明,通过研究的恒温器单元可检测到甚至0.05k / W的热阻变化。

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