JoVE Science Education
Organic Chemistry II
Bu içeriği görüntülemek için JoVE aboneliği gereklidir.
Source: Vy M. Dong and Jan Riedel, Department of Chemistry, University of California, Irvine, CA
A Dean-Stark trap is a special piece of glassware, which allows the collection of water during a reaction through an azeotropic distillation. The desire to collect water from a reaction can have various reasons. It can drive the equilibria in reactions, where water is formed as a byproduct. According to Le Chatelier's principle, a change in temperature, pressure, concentration, or volume will cause a readjustment of a reversible reaction to establish a new equilibrium. An acetal formation is a reversible reaction, where water is formed as a byproduct. In such cases, achieving good yields is possible by driving the equilibrium towards the product side via the removal of water. The Dean-Stark trap also allows the determination of water content or can be used to remove water from a solvent mixture through an azeotropic distillation.
1. Preparation
2. Running the
Water will form and becomes trapped over the course of the reaction. The theoretical amount of formed water upon complete conversion can be calculated and compared with the measured amount of the trapped water to determine the reaction progress.
This experiment demonstrates vividly Le Chatelier's principle and how it can drive an equilibrium.
Dean-Stark traps are commonly used to remove water from a solvent mixture under various circumstances. For example, the removal of water through a simple distillation when water does not form an azeotrope with the other solvent, is possible with a Dean-Stark trap based on its design. In the case of an azeotropic distillation, the addition of an entrainer is necessary. An entrainer is an organ
Atla...
Bu koleksiyondaki videolar:
Now Playing
Organic Chemistry II
100.2K Görüntüleme Sayısı
Organic Chemistry II
123.5K Görüntüleme Sayısı
Organic Chemistry II
99.5K Görüntüleme Sayısı
Organic Chemistry II
43.1K Görüntüleme Sayısı
Organic Chemistry II
149.0K Görüntüleme Sayısı
Organic Chemistry II
47.8K Görüntüleme Sayısı
Organic Chemistry II
67.0K Görüntüleme Sayısı
Organic Chemistry II
16.6K Görüntüleme Sayısı
Organic Chemistry II
34.4K Görüntüleme Sayısı
Organic Chemistry II
41.0K Görüntüleme Sayısı
Organic Chemistry II
49.6K Görüntüleme Sayısı
Organic Chemistry II
93.9K Görüntüleme Sayısı
Organic Chemistry II
149.9K Görüntüleme Sayısı
Organic Chemistry II
214.7K Görüntüleme Sayısı
Organic Chemistry II
99.9K Görüntüleme Sayısı
ISSN 2578-7896
JoVE Hakkında
Telif Hakkı © 2020 MyJove Corporation. Tüm hakları saklıdır
Sitemizdeki deneyiminizi iyileştirmek için çerezleri kullanıyoruz
Sitemizi kullanmaya devam ederek ya da "Devam et" butonuna tıklayarak, çerezleri kabul edebilirsiniz.