Kakiuchi Naoya, Takeuchi Masaki, Tanaka Hideji
Graduate School of Pharmaceutical Sciences, Tokushima University, 1-78-1 Shomachi, Tokushima, 770-8505, Japan.
Institute of Biomedical Sciences, Tokushima University, 1-78-1 Shomachi, Tokushima, 770-8505, Japan.
Anal Sci. 2023 May;39(5):755-759. doi: 10.1007/s44211-022-00206-3. Epub 2022 Oct 23.
The concept of an integrated automated continuous flow method with dual feedback controls is presented for diluting a stock solution to provide a solution of a given concentration. The one control is used for the online process monitoring by a feedback-based flow ratiometry, where the product (the diluted liquid) is titrated through the rapid bidirectional scan of the product/reagent flow ratio. The feedback control limits the scanning to the necessary range to increase the analytical throughput. The other control is used for the process control to output the product with a preset concentration. The merging ratio of the stock solution and a solvent (diluent) is changed based on the information from the online analysis. The concept was verified by applying it to producing 0.1 mol dm CHCOOH. When the stock concentration was changed from 0.1 (reference concentration) to 0.3 and then 0.2 mol dm, the system searched for the suitable merging ratio and converged the output concentration to the reference value within 7.43 min with a relative error below 1.05%. The mean throughput rate of the process analysis was 11.2 titrations min. Successful results were also obtained for the 0.1 mol dm HCl production. The present concept could be the basis for process control with reduced wasteful output and effluent treatment with eco-friendly treated water discharge, resulting in the contribution to SDGs' goals of 6 (Clean water and sanitation), 9 (Industry, innovation and infrastructure), and 14 (Life below water).
提出了一种具有双重反馈控制的集成自动化连续流动方法的概念,用于稀释储备溶液以提供给定浓度的溶液。一种控制用于通过基于反馈的流量比测定法进行在线过程监测,其中通过对产物/试剂流量比进行快速双向扫描来滴定产物(稀释后的液体)。反馈控制将扫描限制在必要范围内,以提高分析通量。另一种控制用于过程控制,以输出预设浓度的产物。根据在线分析的信息改变储备溶液和溶剂(稀释剂)的混合比。通过将其应用于生产0.1 mol dm的CHCOOH验证了该概念。当储备浓度从0.1(参考浓度)变为0.3,然后变为0.2 mol dm时,系统搜索合适的混合比,并在7.43分钟内将输出浓度收敛到参考值,相对误差低于1.05%。过程分析的平均通量率为11.2次滴定/分钟。在生产0.1 mol dm的HCl时也获得了成功结果。本概念可为减少浪费输出的过程控制和环保处理水排放的废水处理奠定基础,从而为可持续发展目标的6(清洁水和卫生设施)、9(工业、创新和基础设施)和14(水下生物)做出贡献。