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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Use of measurement uncertainty analysis to assess accuracy of carbon mass balance closure for a cellulase production process
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Use of measurement uncertainty analysis to assess accuracy of carbon mass balance closure for a cellulase production process

机译:使用测量不确定度分析来评估纤维素酶生产过程中碳质量平衡关闭的准确性

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Closing carbon mass balances is a critical and necessary step for verifying the performance of any conversion process. We developed a methodology for calculating carbon mass balance closures for a cellulase production process and then applied measurement uncertainty analysis to calculate 95% confidence limits to assess the accuracy of the results. Cellulase production experiments were conducted in 7-L fermentors using Trichoderma reesei grown on pure cellulose (Solka-floc), glucose, or lactose. All input and output carbon-containing streams were measured and carbon dioxide in the exhaust gas was quantified using a mass spectrometer. On Solka-floc, carbon mass balances ranged from 90 to 100% closure for the first 48 h but increased to 101 to 135% closure from 72 h to the end of the cultivation at 168 h. Carbon mass balance closures for soluble sugar substrates ranged from 92 to 127% over the entire course of the cultivations. The 95% confidence intervals (CIs) for carbon mass balance closure were typically +/-11 to 12 percentage points after 48 h of cultivation. Many of the carbon mass balance results did not bracket 100% closure within the 95% CIs. These results suggest that measurement problems with the experimental or analytical methods may exist. This work shows that uncertainty analysis can be a useful diagnostic tool for identifying measurement problems in complex biochemical systems. [References: 18]
机译:关闭碳质量平衡是验证任何转化过程性能的关键和必要步骤。我们开发了一种计算纤维素酶生产过程中碳质量平衡闭合的方法,然后应用测量不确定度分析来计算95%的置信度,以评估结果的准确性。使用在纯纤维素(Solka-floc),葡萄糖或乳糖上生长的里氏木霉,在7-L发酵罐中进行纤维素酶生产实验。测量所有输入和输出的含碳流,并使用质谱仪对废气中的二氧化碳进行定量。在Solka-floc上,前48小时的碳质量平衡范围为90%至100%关闭,但从72小时到168 h的培养结束,碳质量平衡增加至101%至135%关闭。在整个培养过程中,可溶性糖底物的碳质量平衡封闭度为92%至127%。培养48小时后,碳质量平衡关闭的95%置信区间(CI)通常为+/- 11至12个百分点。许多碳质量平衡结果并未将95%置信区间内的100%封闭纳入括号。这些结果表明,实验或分析方法可能存在测量问题。这项工作表明,不确定性分析可以作为识别复杂生化系统中测量问题的有用诊断工具。 [参考:18]

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