Evaporation rate of water as a function of a magnetic field and field gradient

Yun Zhu Guo, Da Chuan Yin, Hui Ling Cao, Jian Yu Shi, Chen Yan Zhang, Yong Ming Liu, Huan Huan Huang, Yue Liu, Yan Wang, Wei Hong Guo, Ai Rong Qian, Peng Shang

Research output: Contribution to journalArticlepeer-review

90 Scopus citations

Abstract

The effect of magnetic fields on water is still a highly controversial topic despite the vast amount of research devoted to this topic in past decades. Enhanced water evaporation in a magnetic field, however, is less disputed. The underlying mechanism for this phenomenon has been investigated in previous studies. In this paper, we present an investigation of the evaporation of water in a large gradient magnetic field. The evaporation of pure water at simulated gravity positions (0 gravity level (ab. g), 1 g, 1.56 g and 1.96 g) in a superconducting magnet was compared with that in the absence of the magnetic field. The results showed that the evaporation of water was indeed faster in the magnetic field than in the absence of the magnetic field. Furthermore, the amount of water evaporation differed depending on the position of the sample within the magnetic field. In particular, the evaporation at 0 g was clearly faster than that at other positions. The results are discussed from the point of view of the evaporation surface area of the water/air interface and the convection induced by the magnetization force due to the difference in the magnetic susceptibility of water vapor and the surrounding air.

Original languageEnglish
Pages (from-to)16916-16928
Number of pages13
JournalInternational Journal of Molecular Sciences
Volume13
Issue number12
DOIs
StatePublished - Dec 2012

Keywords

  • Evaporation
  • Field gradient
  • Hydrogen bonds
  • Magnetic field
  • Molecular water
  • Protein crystallization
  • van der Waals force

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