Engineering PapersโŒ• Search

NASA NTRS ยท 19860000631

Metals Electroprocessing in Molten Salts

Abstract

The present study seeks to explain the poor quality of solid electrodeposits in molten salts through a consideration of the effects of fluid flow of the electrolyte. Transparent cells allow observation of electrolyte circulation by a laser schlieren optical technique during the electrodeposition of solid zinc from the molten salt electrolyte, ZnCl2 - LiCl-KCl. Experimental variables are current, density, electrolyte composition, and cell geometry. Based on the results of earlier electrodeposition studies as well as reports in the literature, these parameters are identified as having the primary influence on cell performance and deposit quality. Experiments are conducted to measure the fluid flow patterns and the electrochemical cell characteristics, and to correlate this information with the morphology of the solid electrodeposit produced. Specifically, cell voltage, cell current, characteristic time for dendrite evolution, and dendrite growth directions are noted. Their relationship to electrolyte flow patterns and the morphology of the resulting electrodeposit are derived. Results to date indicate that laser schlieren imaging is capable of revealing fluid flow patterns in a molten salt electrolyte.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Sadoway, D. R.. 1985-05-01. Metals Electroprocessing in Molten Salts. https://ntrs.nasa.gov/citations/19860000631

Cite the original work for its findings. Save a collection to share your selection of sources.