Svoboda | Graniru | BBC Russia | Golosameriki | Facebook

To install click the Add extension button. That's it.

The source code for the WIKI 2 extension is being checked by specialists of the Mozilla Foundation, Google, and Apple. You could also do it yourself at any point in time.

4,5
Kelly Slayton
Congratulations on this excellent venture… what a great idea!
Alexander Grigorievskiy
I use WIKI 2 every day and almost forgot how the original Wikipedia looks like.
Live Statistics
English Articles
Improved in 24 Hours
Added in 24 Hours
Languages
Recent
Show all languages
What we do. Every page goes through several hundred of perfecting techniques; in live mode. Quite the same Wikipedia. Just better.
.
Leo
Newton
Brights
Milds

From Wikipedia, the free encyclopedia

A lixiviant is a chemical used in hydrometallurgy to extract elements from its ore.[1][2] One of the most famous lixiviants is cyanide, which is used in extracting 90% of mined gold. The combination of cyanide and air converts gold particles into a soluble salt. Once separated from the bulk gangue, the solution is processed in a series of steps to give the metal.[3]

YouTube Encyclopedic

  • 1/3
    Views:
    30 746
    13 203
    4 061
  • Bioleaching: let's see how it works
  • Options for the separation of Rare Earth Elements (REE)
  • iSpani 8 - Episode 40: Analytic Chemistry - Mintek

Transcription

Etymology

The origin is the word 'lixiviate', meaning to leach or to dissolve out, deriving from the Latin lixivium.[4] A lixiviant assists in rapid and complete leaching, for example during in situ leaching. The metal can be recovered from it in a concentrated form after leaching.

Further reading

  • Laughlin, Robert B. (June 2009). "In Situ Leach (ISL) Mining of Uranium" (PDF). Introduction to the Physics of Energy PH240 - Fall 2010. Stanford University. Retrieved 2024-02-03.

References

  1. ^ American Institute of Mining Engineers (1917). Transactions of the American Institute of Mining Engineers, Volume 49. Princeton University: The Institute. p. 617.
  2. ^ Mular, Andrew; Halbe, Doug; Barratt, Derek, eds. (2002), Mineral Processing Plant Design, Practice, and Control Proceedings, Vancouver, Canada: Society of Mining Engineers, p. 1631, ISBN 0-87335-223-8
  3. ^ Renner, Hermann; Schlamp, Günther; Hollmann, Dieter; Lüschow, Hans Martin; Tews, Peter; Rothaut, Josef; Dermann, Klaus; Knödler, Alfons; Hecht, Christian; Schlott, Martin; Drieselmann, Ralf; Peter, Catrin; Schiele, Rainer (2000). "Gold, Gold Alloys, and Gold Compounds". Ullmann's Encyclopedia of Industrial Chemistry. doi:10.1002/14356007.a12_499. ISBN 3527306730.
  4. ^ The New English Dictionary


This page was last edited on 7 February 2024, at 20:23
Basis of this page is in Wikipedia. Text is available under the CC BY-SA 3.0 Unported License. Non-text media are available under their specified licenses. Wikipedia® is a registered trademark of the Wikimedia Foundation, Inc. WIKI 2 is an independent company and has no affiliation with Wikimedia Foundation.