CompuServe Thread

Geodes

16 messages in this thread
#144853From: Kamron KirkconnellSep 6, 1994 8:37 PM
Hello all!! The subject of geodes has come up in another thread and I was wondering if anybody else has taken an interest in them. I have not found any myself in the field but have studied them. They are very interesting in that they appear to be formed from the outside in. They are laid up for the most part in very even layers or rings when you look at a slice. A particular layer of similar depth can be traced around the margins of what can start out as a very irregular interior shape. This layering is remarkably even and tells me the geode was in constant motion while the layers were hardening. Many geodes apparently also came to rest during the last layers to be deposited. Sometimes the last resting layers are in a couple of different planes if the geode was disturbed. The level planes indicate that these layers were formed while immobile as opposed to how the same geodes first layers were formed. Some geodes have crystals in the interior where the geode finally came to rest and cooled slowly enough for the crystallization process to occur. There is only one explanation of the even coatings of the irregular interior surfaces and that is that the deposition occurred while under constant random motion. I was wondering what other opinions of geode formation there are out there? Kamron
#145074From: Frank L. LudemanSep 8, 1994 10:50 AM
Kamron: I'm probably late with this reply but thought it might be helpful. I can't remember the exact process of geode formation but my old "Sedimentary Rocks" text says that geodes grow by expansion from cavities in fossils filled with a common salt solution and isolated by a layer of gelatinous silica. In the course of time, waters outside the cell freshen, and osmosis builds up internal pressure, forcing fluids (and precipitation or solidification of the gel) against the cell walls. Expansion continues until the cell volume reaches equilibrium with the surrounding fluids. This is followed by shrinkage and cracking, allowing circulating groundwaters to deposit calcite, quartz, etc. in horizontal layers. Frank Ludeman
#145208From: Kamron KirkconnellSep 9, 1994 7:10 AM
Never too late to reply Wow I guess the author hadn't looked at many geodes. They definitely build the layers from the outside inward. It is also easy to tell if they were broken because of the exact record of the layers. So I can't go with that theory on the geodes in my collection. I appreciate the input. It is unusual to find writings about geodes. Which source are you taking that from?
#145352From: Doug MitchellSep 10, 1994 10:08 AM
Hi, Kamron– I got lucky and found the May, 1992 issue of Rock & Gem magazine, which has a discussion of geode formation (it refers in turn to _Agates_, by Dr. H. G. MacPherson, and _The Origins of Agates, Thundereggs and Other Nodular Structures_, by Ben Schaub). There is some difference of opinion as to whether the blobs of silica gel form with the igneous rock, or whether they arrive later to fill cavities as I described. Because it is a gel rather than a liquid, because it generally cools starting with outside, and because it typically fills the cavity, it deposits quartz (chalcedony) on all surrounding surfaces with little regard for gravity. As it continues to cool, layers of quartz are deposited with slightly different chemistries, thus the banded appearance. The layers do not form fully solidified, but still somewhat plastic. If the temperature/chemistry changes to favor rock crystal quartz forming instead of chalcedony, heat may be released during this crystallization and force the plastic chalcedony layers to curve toward weak points in the containment, forming escape tubes (to allow a pressure release or an expansion of the containment). Stepping beyond the article… When crystals form directly on a solid surface, gravity is more or less irrelevant (gravity dictates the surface of the liquid relative to any accompanying gas or other liquid phase, thus some rock surfaces can be blocked off – but this does not appear to apply in most geodes). Gravity governs crystal formation only when the crystals form in a liquid and then fall thru that liquid. I figure that sometimes the liquid/solid ratio of the gel may be such as to leave it more or less a liquid in the late stages, allowing crystals to form in the liquid and fall to the bottom, forming the flat oriented layers one sometimes finds inside a geode. This may need a sudden temperature shift. Eventually dissolved solids may be exhausted, and/or the gel/liquid escapes through one of these escapement tubes, leaving the cavity often found in the geode (indeed, many call it a "nodule" rather than a "geode" when there is no cavity). –Doug
#145433From: Kamron KirkconnellSep 11, 1994 2:03 AM
I appreciate the reference on the article. I haven't found geodes in the field but they seam to come with just as thin shell around the quartz deposits. I must say on reconsideration that there is a lot of evidence in my samples that could support a gel type of substance as aiding the coating of layers. The best indicator is where there is an intrusion into the gel it effects the deposits in that area. I also see some evidence for layers dissolving in places and being replaced by another material. This also solves the defect recoating. Impacts deform the plastic shell cracking it and then new material comes through and coats through the cracks again. There are many geodes that have an asymmetric non layered fill also. Kamron
#145675From: Don KenneySep 13, 1994 2:33 AM
Kamron I can't genralize to all geodes, but I have collected a few in the field. What you find at the couple of sites I've visited is a bunch of globs of silica ranging from thin shells to solid lumps. I believe that professionals collectors check the density of the lump and only bother to cut the least dense — the ones with the largest holes. Don
#145764From: Kamron KirkconnellSep 13, 1994 10:08 PM
Hi Don What type of sites have you found them in? Oh Don have you by chance studied gravel under a microscope? I have recently been reopening a small investigation of gravel. What I find on gravel that has been removed from a gravel bed, not a river gravel is an amazingly complex surface that shows no evidence of wear or friction. Kamron
#145918From: Don KenneySep 15, 1994 3:48 AM
>>> What type of sites have you found them in? I've collected geodes from decomposed igneous rocks in California, and also a few quartz crystal Keokuk geodes which were formed in cavities in a limestone in Illinois and Iowa. I'm told that the geodes I collected in California were formed as Silicate fills of gas cavities in a lava which subsequently decomposed. No idea how the cavities in the limestone were formed. My primary interest is fossils, and I see a few nodules and crystal filled cavities in sedimentary rocks, but the matrix is usually too hard to separate the potential geode or nodule from the native rock.
#146040From: Kamron KirkconnellSep 15, 1994 10:00 PM
>> few quartz crystal Keokuk geodes which were formed in cavities in a limestone in Illinois and Iowa.<< Did these have generally uniform bands all around or were they more horizontal or a combination? >>formed as Silicate fills of gas cavities in a lava which subsequently decomposed.>> Seams odd the lava would decompose leaving the quartz. I have discovered a lot of quartz gravel has imprints of shells, sometimes the shells are enclosed within quartz and the body parts replaced by quartz. I downloaded a Surveyor 1 picture that has what looks like a Kritosarus. Maybe you could identify. Krit.gif lib 12 Kamron
#146417From: Doug MitchellSep 18, 1994 7:06 PM
Hi, Kamron– Since lava rock is composed of many minerals, the odds are that some of them will dissolve away faster than the quartz of a geode embedded in the lava will. Once some of the tiny grains are gone, the structural integrity of the lava rock is gone, and the "tougher" minerals can be rolled away by wind or flowing water without any dissolution or other reaction being needed. This breach of integrity will not happen to the geode; a bit of the outermost quartz may dissolve, but the inner layers will continue to hold the geode together. The commonness of quartz in sand suggests that a great many minerals will weather faster than quartz. This is my own guesswork; I am not clear on which of the two factors (structural integrity and rate of chemical weathering) is most important, and a third may have escaped me. –Doug
#146638From: Kamron KirkconnellSep 20, 1994 6:15 PM
That makes sense. The quartz does remain, infact you almost wonder where all the other material went. The world is covered by quartz sand and quartz gravels. All over the surface. This is what makes the theory of gravel and sands being formed by the earth belching them out of large fractures that opened and then slammed shut so attractive to me. The overall theory can be attacked easily in small areas but it is the total coverage of all these bits and pieces of not quite explained observations that brings it home to me. Kamron
#145866From: Kamron KirkconnellSep 14, 1994 9:43 PM
Don I am trying to gather more data on Geodes The gelatine matrix makes sense and I have worked with certain silicas that in the presence of high PH could gel up. What kind of site was it… Gravel beds? Faults or canyons nearby? Petroleum production nearby? Thanks for the Data Kamron
#146020From: Richard BlueSep 15, 1994 9:04 PM
Kamron, I grew up where geodes were extremely common in the limestone bluffs along the Mississippi river in northern Missouri. Anywhere a small stream flowing down to the Mississippi cut through the limestone you could generally expect to find geodes and fossils as the limestone was eroded away. Of course you have to be the first one to go looking in a given stream bed in order to pick up the treasures that are right at the surface. -db-….
#146133From: Kamron KirkconnellSep 16, 1994 5:06 PM
Richard Oh I bet that was fun!!! I have got some petrified wood areas just like that. Get out there right after a downpour and hit it big time! Is there gravel and sand also? Is the limestone bed in thin layers? Looking at the Geode situation it was definintly a gel that firmed up on at least the outside. Many were then broken or squashed then sometimes at least a leak in of materials in places. The change fron the even perimeter layers to a gravity set of layers is puzzling when the material in the hardened state is basically the same. Sometimes they have formed around something like a pearl. The gel apparently could be dissolved in certain areas near penetrations of some type and replaced by another cycle of deposits. I still think that they probably were belched out of the earth like gravel and sand, in a silicates with ?limestone dust?. don't know. Kamron
#145358From: Frank L. LudemanSep 10, 1994 11:03 AM
Kamron: I referenced _Sedimentary Rocks_ by F. J. Pettijohn. Doug's explanation is much more clear and I like it better. I found my R&M that had the article he mentioned. Regards, Frank L.
#145434From: Kamron KirkconnellSep 11, 1994 2:03 AM
Frank Yes I see that as a working model for geodes. Thanks Kamron