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The Effect of Human Error on the Temperature Monitoring and Control of Freeze Drying Processes by Means of Thermocouples

机译:人为误差对热电偶冷冻干燥过程温度监控的影响

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摘要

Monitoring product temperature is mandatory in a freeze-drying process, in particular in the process development stage, as final product quality may be jeopardized when its temperature trespasses a threshold value, that is a characteristic of each product being freeze-dried. To this purpose thermocouples are usually inserted in some of the vials of the batch to track product dynamics. The position of the thermocouple inside the vials strongly affects the reading of the temperature evolution during the freeze-drying process and, thus, it is necessary to place them in the right position, in such a way that correct information about product temperature is obtained. In this work, at first, the probability of the operational error resulting into a wrong positioning of the thermocouple inside the vial has been estimated experimentally. Then, the effect of this error has been assessed in terms of risk of exceeding the limit temperature in the primary drying step. Both 4R and 10R vials have been considered, and the investigation evidenced that the probability of incorrect thermocouples placement can reach 30% for 10R vials, and about 32% for 4R vials. These probability values increase, respectively, to 47 and 39% when the trays containing the vials are shifted to their final position. Then, through IR thermal imaging it has been possible to evaluate the temperature gradients in a vial, pointing out that the temperature difference between the product at the center of the vial, where the thermocouple is supposed to be, and that of the wall, that is quite often measured by the thermocouples, can be about 1°C. Therefore, associated to each thermocouple reading there is a probability distribution of product temperature. These figures can be used to assess the risk of exceeding the limit temperature in a freeze-drying process and, thus, to quantify suitable safety margins when evaluating thermocouple readings to take into account the operational errors, given a risk tolerability criteria.
机译:在冷冻干燥过程中,尤其是在工艺开发阶段,必须监控产品温度,因为当其温度超过阈值时,最终产品的质量可能会受到危害,这是每种冷冻干燥产品的特征。为此,通常将热电偶插入批次的某些小瓶中以跟踪产品动态。小瓶内热电偶的位置会严重影响冷冻干燥过程中温度变化的读数,因此,有必要将它们放置在正确的位置,以确保获得有关产品温度的正确信息。在这项工作中,首先,已经通过实验估计了导致小瓶内热电偶定位错误的操作错误的可能性。然后,已根据初步干燥步骤中超过极限温度的风险评估了此错误的影响。已经考虑了4R和10R样品瓶,并且调查证明,对于10R样品瓶,不正确放置热电偶的可能性可以达到30%,而对于4R样品瓶,正确率约为32%。当包含小瓶的托盘移至其最终位置时,这些概率值分别增加到47%和39%。然后,通过红外热成像,可以评估样品瓶中的温度梯度,并指出样品瓶中心(假定是热电偶的位置)与壁的温度之间的温差。通常由热电偶测量,大约为1°C。因此,与每个热电偶读数相关的是产品温度的概率分布。这些数字可用于评估在冷冻干燥过程中超过极限温度的风险,因此,在评估热电偶读数以考虑到操作误差的情况下(给定风险承受标准),可以量化合适的安全裕度。

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