What is it about?

In the present investigation V2O5 powders are exposed to biofield. Both the exposed and unexposed powders are later characterized by various techniques.

Featured Image

Why is it important?

Laser diffraction had indicated that both the average particle size d59 and d99 showed an increase immediately after bio field treatment mostly due to agglomeration of particles. After 80 days of treatment the agglomerates of fine particles were broken while coarse particles further increased in size. As the number of days after bio field treatment changed from 14 through 95 to109, the surface area had decreased by 1.41, 4.11 and 7.22 % respectively. The decrease may be due to observed decrease in fine particles d50 and increase in coarse particles d99. The peak temperature in bio field treated vanadium oxide after 57 days had increased by 9.9% from 666.87C to 732.62C. The decrease in mass of the sample was not found to be significant. Analysis of x –ray diffraction data led to the following inferences; treatment with bio field initially decreased the Lattice parameter, unit cell volume, molecular weight and crystallite size, while the density had increased. Exactly reverse had occurred after 124 days of treatment. The decreased crystallite size indicates the presence of stresses due to expansion in unit cells which may have caused fracture at weaker planes in the single crystal, and decreased molecular weight indicates that mass is converted to energy.

Read the Original

This page is a summary of: Effect of Bio Field Treatment on the Physical and Thermal Characteristics of Vanadium Pentoxide Powders, Journal of Material Science & Engineering, January 2014, OMICS Publishing Group,
DOI: 10.4172/2169-0022.s11-001.
You can read the full text:

Read

Resources

Contributors

The following have contributed to this page