Showing posts with label eon. Show all posts
Showing posts with label eon. Show all posts

Friday, February 5, 2021

Phanerozoic Eon

 The current geologic eon of Earth is the Phanerozoic Eon. It started 541 million years ago and continues today. It is the only eon during which abundant animal and plant life has existed. It began at about the same time that animals first developed hard shells, as preserved in the fossil record.

During the early stages of the Phanerozoic Eon, a number of animal types came into existence and evolved into diverse forms, and complex plants emerged and developed. In addition, fish, insects and tetrapods (which includes all living and extinct species of amphibians, reptiles, birds and mammals) also emerged and evolved. Plant life appeared on land early in the eon.

Pangaea was the most recent supercontinent during the early days of this eon, but tectonic forces broke it up into the current continental landmasses, and then proceeded to move them around into their current configuration.

The Phanerozoic Eon consists of 3 eras, which are broken up into 12 periods. Now that plants and animals have shown up in earnest, I expect there will be plenty of information about what was going on during each segment.

In fact, the article I found for this eon actually had paragraphs (or more) for each period, but I skipped over them because I didn't want to get ahead of myself. I hope I remember to check back to this article if I have trouble finding information on the eras and periods that comprise this eon.

This is a very short blog, not because I couldn't find much information, but because there was so much information, it needs to be broken into smaller time segments to get that information into manageable bites. But do stay tuned, because we are finally approaching Dinosaur Land!

 

https://en.wikipedia.org/wiki/Phanerozoic#:~:text=The%20Phanerozoic%20Eon%20is%20the,preserved%20in%20the%20fossil%20record.

https://en.wikipedia.org/wiki/Evolution_of_tetrapods

Saturday, December 5, 2020

Proterozoic Eon

 Now to move on to the next eon, the Proterozoic Eon. This eon spans the time from the appearance of oxygen in Earth’s atmosphere to just before the proliferation of complex life such as trilobites or corals. It started at 2,500 million years ago to 541 million years ago, so very nearly 2 billion years. It is divided into 3 eras; the Paleoproterozoic, the Mesoproterozoic, and the Neoproterozoic. We may or may not take a look at each of these in more detail.

The geologic record of the Proterozoic Eon is more complete than for the Archean Eon, which preceded it. The Proterozoic features rock strata that were laid down in extensive shallow inland seas. Studies of these rocks show that the eon had massive continental accretion, including the first definitive supercontinent cycle, and modern mountain building activity.

There is also evidence of glaciations taking place during the Proterozoic. The first began shortly after the beginning of the Proterozoic, with at least four others near the end of the eon. These may have climaxed with the hypothesized Snowball Earth, an idea I am thoroughly fascinated by.

One of the most important events of this eon was the accumulation of oxygen in the atmosphere. Although oxygen was probably released by photosynthesis during the Archeon Eon, it first combined with sulfur and iron in the oceans. Until roughly 2.3 billion years ago, oxygen was only 1-2% of its current level. It is stated that about 1.9 billion years ago, all the iron in the oceans had all been oxidized.

The Proterozoic Eon was tectonically active. The early part of the eon experienced a period of increasing crustal recycling, which suggests subduction. This is where one piece of crust gets shoved under another piece of crust. The bottom crust is eventually melted, while the upper crust buckles into mountains. The melting crust eventually reformed, making the upper bits of crust thick enough to endure. It is believed that 43% of the modern continental crust was formed in the Proterozoic Eon, 39% during the Archean Eon, and only 18% in the current geological eon.

It is commonly accepted that during the Precambrian SuperEon--of which the Proterozoic Eon is a part--the Earth went through several supercontinent breakup and rebuilding cycles.

The supercontinent Columbia was dominant in the early-mid Proterozoic. The article did not say much about Columbia, so we shall skip ahead to Rodinia (1,000-750 Million years ago) of the late Proterozoic. It was created when a series of continents attached to a central craton called Laurentia, which today forms the core of the North American Continent. During its construction, the mountain building processes created the Grenville orogeny located in Eastern North America, from Labrador down through Mexico. From the map, it looks like the Appalachian Mountains could be part of the mountain range that was formed.

The first advanced single celled (eukaryotes) and multi-cellular life roughly coincides with the start of the accumulation of free oxygen. This may have been due to an increase in the oxidized nitrates, which is what eukaryotes use. But the rise of eukaryotes did not preclude the expansion of cyanobacteria. In fact, stromatolites (microbial mats) reached their greatest abundance and diversity, peaking roughly 1,200 million years ago.

The earliest fossils of something like fungi date to 2,400 million years ago. These organisms lived in the deepest areas of water, and had filamentous structures capable of forming branches.

Wow, sounds like Earth was getting busy, doesn’t it? But I still don’t think we could colonize, not with the crops we grow now. There’s too many forms of other life that our crops count on to help them get the nutrients they need from the soil. Plus, I’m not sure what the climate was like, with such a low amount of free oxygen in the atmosphere. Put me back in my pod and let me sleep another million years or so, and then we’ll see.

 

https://en.wikipedia.org/wiki/Proterozoic

Saturday, October 17, 2020

Archaen Eon

 

The Archean Eon is the second of the four geologic eons of Earth’s history. (The first was Hadean Eon.) During the Archaen Eon, which lasted roughly 4,000 to 2,500 million years ago, the Earth’s crust cooled enough to allow the formation of continents and the beginning of life on Earth. Sounds like a busy time, doesn’t it?

The oldest rock formations on Earth’s surface are Archean. They are found in Greenland, Siberia, Canada, Montana, Wyoming, Scotland, India, Brazil, western Australia and southern Africa, as well as other regions. Volcanic activity was much higher than it is today, producing many different kind of volcanic rocks.

The continents started to form during the Archean, although details are still being debated.  Although this is when the first continents formed, rock of this ages makes up only 7% of the present world’s land mass. Allowing for erosion and destruction of past formations suggests that only 5-40% of the present area of continents formed during the Archean Eon.

By the end of the Archean, plate tectonic activity may have been similar to that of the modern Earth. For those who know how to read it, evidence demonstrates that liquid water was prevalent and deep oceanic basins already existed.

The Archean atmosphere had very little free oxygen, yet temperatures appear to have been near modern levels. The moderate temperatures may be because of greater amounts of greenhouse gases. Or, the Earth may have reflected less sunlight and heat due to having less land area.

There is substantial evidence that life began either near the end of the Hadean Eon or early in the Archean Eon.

The earliest identifiable fossils consist of stromatolites, which are microbial mats formed in shallow water by cyanobacteria. The earliest were found to be 3.48 billion years old. They were found throughout the Archean and became common late in the Eon. Cyanobacteria were instrumental in creating free oxygen in the atmosphere, and created so much of it that later, there was a crisis of sorts, when the life that existed at the time could not cope with the high level of oxygen. (I read that somewhere and have included it in one of my other blogs, but at this time, I can’t remember where I got that from.)

It is generally agreed that before the Archean Eon, life as we know it would have been severely challenged by the hostile environmental conditions then found on Earth.

Life during the Archean consisted of simple single-celled organisms such as Bacteria.

However, fossilized microbes from terrestrial microbial mats show that life was already established on land as long ago as 3.22 billion years.

So, it was a busy time. Lots of water sloshing around, lots of volcanoes creating land masses, and life beginning to get a first grasp on the place. If we wound up crash-landing on a planet like that, could we survive? Could we cultivate cyanobacteria to create more oxygen for us? Doing that to any large extent might strip out some of the greenhouse gases, which could lower the temperature of the planet. Which only goes to show that you have to be careful what you do to make a place your home.

 

https://en.wikipedia.org/wiki/Archean#:~:text=The%20Archean%20Eon%20(%20%2F%C9%91%CB%90r%CB%88,beginning%20of%20life%20on%20Earth.