Free Republic
Browse · Search
General/Chat
Topics · Post Article

To: DannyTN; All
Different minerals in a magma chamber crystallize at different temperatures, according to something called Bowen’s Reaction Series...

Bowen’s reaction series

Within the field of geology, Bowen’s reaction series is the work of the petrologist, Norman L. Bowen[1] who summarized, based on experiments and observations of natural rocks, the crystallization sequence of typical basaltic magma undergoing fractional crystallization (i.e., crystallization wherein early-formed crystals are removed from the magma by crystal settling, say, leaving behind a liquid of slightly different composition).[2]

Bowen’s reaction series is able to explain why certain types of minerals tend to be found together while others are almost never associated with one another.

He experimented in the early 1900s with powdered rock material that was heated until it melted and then allowed to cool to a target temperature whereupon he observed the types of minerals that formed in the rocks produced.

He repeated this process with progressively cooler temperatures and the results he obtained led him to formulate his reaction series which is still accepted today as the idealized progression of minerals produced by cooling basaltic magma that undergoes fractional crystallization. Based upon Bowen’s work, one can infer from the minerals present in a rock the relative conditions under which the material had formed.[3]

Description

The series is broken into two branches, the continuous and the discontinuous. The branch on the right is the continuous. The minerals at the top of the illustration (given aside) are first to crystallize and so the temperature gradient can be read to be from high to low with the high temperature minerals being on the top and the low temperature ones on the bottom. Since the surface of the Earth is a low temperature environment compared to the zones of rock formation, the chart also easily shows the stability of minerals with the ones at bottom being most stable and the ones at top being quickest to weather, known as the Goldich dissolution series.

This is because minerals are most stable in the conditions closest to those under which they had formed. Simply put, the high temperature minerals, the first ones to crystallize in a mass of magma, are most unstable at the Earth’s surface and quickest to weather because the surface is most different from the conditions under which they were created. On the other hand, the low temperature minerals are much more stable because the conditions at the surface are much more similar to the conditions under which they formed.

https://en.wikipedia.org/wiki/Bowen%27s_reaction_series

Image result for Bowen's reaction series

9 posted on 12/07/2018 11:01:35 AM PST by ETL (Obama-Hillary, REAL Russia collusion! Uranium-One Deal, Missile Defense, Iran Deal, Nukes: Click ETL)
[ Post Reply | Private Reply | To 7 | View Replies ]


To: ETL

Very interesting.

So it might rain diamonds?


10 posted on 12/07/2018 11:04:38 AM PST by DannyTN
[ Post Reply | Private Reply | To 9 | View Replies ]

To: All
Re: Bowen's Reaction Series...

You can tell by looking at a typical section of granite which minerals formed first and which later filled in the space in between.

The "rectangular" pink mineral is potassium feldspar. It was first to form, so it has a crystal shape. The tiny gray mineral is quartz. The white and the dark specks are other minerals.

Image result for granite

Image result for granite comosition

15 posted on 12/07/2018 11:55:09 AM PST by ETL (Obama-Hillary, REAL Russia collusion! Uranium-One Deal, Missile Defense, Iran Deal, Nukes: Click ETL)
[ Post Reply | Private Reply | To 9 | View Replies ]

To: ETL; SunkenCiv; DocRock; blam; All

Thank you for the interesting series of charts and explanations. I was going to ask the relative melt temperatures of granite and basalt, which this chart answers, and then how this would affect crystallization and and related issues.


21 posted on 12/07/2018 3:33:03 PM PST by gleeaikin
[ Post Reply | Private Reply | To 9 | View Replies ]

Free Republic
Browse · Search
General/Chat
Topics · Post Article


FreeRepublic, LLC, PO BOX 9771, FRESNO, CA 93794
FreeRepublic.com is powered by software copyright 2000-2008 John Robinson