Faculty of Chemistry, Jagiellonian University, Gronostajowa 2, 30-387 Krakow, Poland.
Department of Chemistry, University of Warmia and Mazury, Plac Łódzki 4, 10-957 Olsztyn, Poland.
Molecules. 2021 Dec 18;26(24):7673. doi: 10.3390/molecules26247673.
Novel integrated flow-based steam distillation and titration system with spectrophotometric detection was developed for determination of volatile acidity in wines. Using the system, the distillation procedure was carried out in an automatic manner, starting with introducing into a heated steam distillation module a sample and subjecting it to steam distillation. Under selected conditions, all the analyte was transferred to the distillate; therefore, the system did not require calibration. The collected distillate and titrant were introduced into the next monosegments in varying proportions, in accordance with the developed titration procedure, and directed to the detection system to record the titration curve. The titration was stopped after reaching the end point of titration. Procedures for distillation and titration were developed and verified separately by distillation of acetic acid, acetic acid in the presence of tartaric acid as well as acetic acid, tartaric acid, and titratable acidity, with precision (relative standard deviation) and accuracy (relative error) for both procedures lower than 6.9 and 5.6%, respectively. The developed steam distillation and titration systems were used to determine volatile acidity in samples of white and rosé wines separately and as the integrated steam distillation and titration system, both with precision lower than 9.4% and accuracy better than 6.7%.
新型集成式流动基础蒸汽蒸馏和滴定系统,结合分光光度检测,用于测定葡萄酒中的挥发性酸度。使用该系统,自动进行蒸馏程序,首先将样品引入加热的蒸汽蒸馏模块,并进行蒸汽蒸馏。在选定的条件下,所有分析物都被转移到馏出物中;因此,系统不需要校准。收集的馏出物和滴定剂按照开发的滴定程序以不同的比例引入下一个单节,并引导至检测系统记录滴定曲线。达到滴定终点后停止滴定。通过分别蒸馏乙酸、酒石酸存在下的乙酸以及乙酸、酒石酸和可滴定酸度来开发和验证蒸馏和滴定程序,两个程序的精密度(相对标准偏差)和准确性(相对误差)均低于 6.9%和 5.6%。开发的蒸汽蒸馏和滴定系统分别用于测定白葡萄酒和桃红葡萄酒样品中的挥发性酸度,以及作为集成的蒸汽蒸馏和滴定系统,两者的精密度均低于 9.4%,准确性均优于 6.7%。