Jump to content

Precipitation (chemistry): Difference between revisions

From IdeaWazaWiki
wikademia>Polyparadigm
supersaturation
wikademia>Polyparadigm
metallurgical perspective
Line 1: Line 1:
'''Precipitation''' is the condensation of a [[solid]] from a [[solution]] during a [[chemical reaction]].  This occurs when the solution is [[supersaturated]], whereupon the solid forms from the solute phase, and usually sinks to the bottom of the solution.   
'''Precipitation''' is the condensation of a [[solid]] from a [[solution]] during a [[chemical reaction]].  This occurs when the solution is [[supersaturated]], whereupon the solid forms from the solute phase, and usually sinks to the bottom of the solution.   


This effect is useful in many industrial and scientific applications whereby a chemical reaction may produce a solid that can be collected from the solution by various methods (e.g. filtration, decanting, centrifuging).  Precipitation from a [[solid solution]] is also a useful way to [[precipitation strenthening|strenthen]] [[alloy]]s.
This effect is useful in many industrial and scientific applications whereby a chemical reaction may produce a solid that can be collected from the solution by various methods (e.g. filtration, decanting, centrifuging).  Precipitation from a [[solid solution]] is also a useful way to [[precipitation strengthening|strengthen]] [[alloy]]s.


An important stage of the precipitation process is the onset of [[nucleation]].  The creation of a hypothetical solid particle includes the formation of an interface, which requires some energy based on the relative [[surface energy]] of the solid and the solution.  If this energy is not available, and no suitable nucleation surface is available, [[supersaturation]] may occur.  
An important stage of the precipitation process is the onset of [[nucleation]].  The creation of a hypothetical solid particle includes the formation of an interface, which requires some energy based on the relative [[surface energy]] of the solid and the solution.  If this energy is not available, and no suitable nucleation surface is available, [[supersaturation]] occurs.  


==Detection of cations==
==Cation sensitivity==
Precipitate formation is useful in detecting the type of [[cation]] in an unknown [[salt]]. To do this, an [[alkali]] first reacts with the unknown salt to produce a precipitate which is the hydroxide of the unknown salt.  
Precipitate formation is useful in detecting the type of [[cation]] in an unknown [[salt]]. To do this, an [[alkali]] first reacts with the unknown salt to produce a precipitate which is the hydroxide of the unknown salt.  


To identify the cation, the colour of the precipitate and its solubility in excess  are noted.
To identify the cation, the colour of the precipitate and its solubility in excess  are noted.
Similar processes are often used to separate chemically similar elements, such as the [[rare earth]] metals.


==External links==
==External links==

Revision as of 22:37, 5 June 2005

Precipitation is the condensation of a solid from a solution during a chemical reaction. This occurs when the solution is supersaturated, whereupon the solid forms from the solute phase, and usually sinks to the bottom of the solution.

This effect is useful in many industrial and scientific applications whereby a chemical reaction may produce a solid that can be collected from the solution by various methods (e.g. filtration, decanting, centrifuging). Precipitation from a solid solution is also a useful way to strengthen alloys.

An important stage of the precipitation process is the onset of nucleation. The creation of a hypothetical solid particle includes the formation of an interface, which requires some energy based on the relative surface energy of the solid and the solution. If this energy is not available, and no suitable nucleation surface is available, supersaturation occurs.

Cation sensitivity

Precipitate formation is useful in detecting the type of cation in an unknown salt. To do this, an alkali first reacts with the unknown salt to produce a precipitate which is the hydroxide of the unknown salt.

To identify the cation, the colour of the precipitate and its solubility in excess are noted.

Similar processes are often used to separate chemically similar elements, such as the rare earth metals.

de:Fällungsreaktion