Study on Kinetics of Growth and Weight of Vanadium Gel on Short-Circuited Probes from Various Materials

Authors

  • Sulejmenov Esen Nurgalyevich Kazakh-British Technical University, Almaty 050000, Republic of Kazakhstan.
  • Utelbayeva Akmaral Bolysbekovna Kazakh-British Technical University, Almaty 050000, Republic of Kazakhstan.
  • Meldeshov Amangeldy Abdychalikovich Kazakh-British Technical University, Almaty 050000, Republic of Kazakhstan.
  • Romanteyev Yuri Pavlovich Kazakh-British Technical University, Almaty 050000, Republic of Kazakhstan.
  • Utelbayev Bolysbek Toychibekovich Kazakh-British Technical University, Almaty 050000, Republic of Kazakhstan.

DOI:

https://doi.org/10.9734/bpi/rtcams/v2/11480D

Keywords:

Fuzzy sets theory, fuzzy logic, forecast models, fuzzy linear regression, multi objective programming

Abstract

Development of technological processes in chemical and metallurgy industry is a significant increased in research chemical systems with a view their practical application. The article provides results of experiments on research of speed of escalating of vanadium gel on short-circuited probes from various metals, particularly from copper and aluminium it is shown that speed of escalating of gel on probes is influenced with a material of a probe and configuration of probes in a solution. Research of growth of vanadic gel on metal probes from various metals allows to draw a conclusion on the electrochemical nature of this process. Formation of vanadic mesogels can be considered as macroscopically manifestation of processes of self-organizing which spontaneously proceed in a solution.

Published

2021-08-04

How to Cite

Sulejmenov Esen Nurgalyevich, Utelbayeva Akmaral Bolysbekovna, Meldeshov Amangeldy Abdychalikovich, Romanteyev Yuri Pavlovich, & Utelbayev Bolysbek Toychibekovich. (2021). Study on Kinetics of Growth and Weight of Vanadium Gel on Short-Circuited Probes from Various Materials . Recent Trends in Chemical and Material Sciences Vol. 2, 50–57. https://doi.org/10.9734/bpi/rtcams/v2/11480D