| 000 | 00000nam 2200000zi 4500 |
| 001 | 9.867934 |
| 003 | CaOODSP |
| 005 | 20251203145954 |
| 006 | m o d f |
| 007 | cr ||||||||||| |
| 008 | 190201s1960 onc ot f|0| 0 eng d |
| 040 | |aCaOODSP|beng|erda|cCaOODSP |
| 043 | |an-cn--- |
| 086 | 1 |aM38-1/71-1960E-PDF |
| 100 | 1 |aThomas, G., |eauthor. |
| 245 | 10|aMeasurement of dissolved air in alkaline solutions from uranium mills and from gold mills / |cby G. Thomas and T. R. Ingraham. |
| 264 | 1|aOttawa : |bDepartment of Mines and Technical Surveys, |c1960. |
| 300 | |a1 online resource (5 pages) |
| 336 | |atext|btxt|2rdacontent |
| 337 | |acomputer|bc|2rdamedia |
| 338 | |aonline resource|bcr|2rdacarrier |
| 490 | 1 |aMines Branch Research Report ; |vR 71 |
| 500 | |a"This Paper was Published in the Proceedings of the Instrument Society of America, Sixth Symposium on Instrumental Methods of Analysis, June 1-3, 1960." |
| 500 | |a"June 1960." |
| 504 | |aIncludes bibliographic references. |
| 520 | |a"A simple and rapid method has been developed for determining the relative saturation of air in the alkaline solutions used in processing uranium ores and gold ores. The method is based on the diffusion current produced by oxygen from the dissolved air when a sample of the solution ie subjected to a controlled potential applied to a calomel anode and a platinum cathode. Since the diffusion current is proportional to the relative saturation of air in the solution, and since only relative saturation levels are required for mill control work, it is sufficient to apply a fixed potential and to measure the diffusion currents with a microammeter"--Abstract. |
| 692 | 07|2gccst|aMetals |
| 692 | 07|2gccst|aChemicals |
| 700 | 1 |aIngraham, Thomas R., |eauthor. |
| 710 | 1 |aCanada. |bDepartment of Mines and Technical Surveys. |
| 710 | 1 |aCanada. |bMines Branch. |
| 830 | #0|aResearch report (Canada. Mines Branch)|vR 71.|w(CaOODSP)9.855660 |
| 856 | 40|qPDF|s954 KB|uhttps://publications.gc.ca/collections/collection_2019/rncan-nrcan/m38-1/M38-1-71-1960-eng.pdf |