Rivlin Michal, Eliav Uzi, Navon Gil
School of Chemistry, Tel Aviv University, Ramat Aviv, Tel Aviv, 69978, Israel.
J Phys Chem B. 2015 Mar 26;119(12):4479-87. doi: 10.1021/jp513020y. Epub 2015 Mar 12.
Formaldehyde has an important role in the chemical industry and in biological sciences. In dilute aqueous solutions of formaldehyde only traces of the molecular formaldehyde are present and the predominant species are methylene glycol and in lower concentrations, dimethylene glycol. The chemical equilibria and reaction rates of the hydration of formaldehyde in H2O and D2O solutions at low concentrations were studied by (1)H and (13)C NMR at various conditions of pH (1.8-7.8) and temperature (278-333 K). These measurements became possible by direct detection of formaldehyde (13)C and (1)H peaks. The equilibrium and rate constants of the dimerization reaction of methylene glycol were also measured. The rate constants for both the hydration and the dimerization reactions were measured by a new version of the conventional selective inversion transfer method. This study, together with previous published work, completes the description of dynamics and equilibria of all the processes occurring in dilute aqueous formaldehyde solutions.
甲醛在化学工业和生物科学中具有重要作用。在稀甲醛水溶液中,仅存在痕量的分子甲醛,主要物种是亚甲基二醇,较低浓度下还有二亚甲基二醇。通过在不同pH值(1.8 - 7.8)和温度(278 - 333 K)条件下利用¹H和¹³C NMR研究了低浓度H₂O和D₂O溶液中甲醛水合的化学平衡和反应速率。通过直接检测甲醛的¹³C和¹H峰,这些测量得以实现。还测量了亚甲基二醇二聚反应的平衡常数和速率常数。水合反应和二聚反应的速率常数通过传统选择性反转转移方法的新版本进行测量。这项研究与先前发表的工作共同完善了对稀甲醛水溶液中所有发生过程的动力学和平衡的描述。