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Sunday, 25 March 2012

Rugosa Corals are still alive

Discovery: Rugosa Corals are still alive.
The photograph bellow represents a single Rugosa Coral still alive. It is the basic of the project of reducing the CO2 from sea water and from the atmosphere. The project is about the development of this kind of Corals by producing more quantity then planting them close to sea shores. During my experience of developing this kind of Corals; they show that they have a great ability to ionize the water and the air by transferring the CO2 to lipids and and growing their shells .This kind of corals is supposed to be extinct 350 millions years ago during the carboniferous period at the end of the Devonian period. It is interesting to know that these corals go through many stages during their life, from solitary to grouped to solitary then stony.They become as a group after production then solitary. Once they start living in a small area where to form a stone by attracting all the sand around them. 


The Rugosa corals have many benefits to the environment as they are a key stone to the marine ecosystem. They are a perfect solution to soil erosion especially in sea shores as they keep them high, consequently the minimization of floods; that means the protection of land from sea flooding.Their role in the ionization of CO2 in water and air reduce carbon dioxide level in a very high speed. They are a perfect solution to keep water clean in any drinking water container, aquarium, and swimming pool. They help algae to produce quickly and safely which can be used as bio-fuel.



Ionization meaning:
Is the breaking of CO2 compound to smaller chemical elements, the process is as fellow:



Note;(Oxygen has 8 electrons in two orbits (2. 6), carbon has 6 electrons (2, 4)).

First the CO2 is a chemical bound; means there are 2 oxygen and 1 carbon. it is chemically represented as (O=C=O). Now these two lines (=) represent the covalent bond, means the carbon is sharing 2 electrons with each oxygen.

The role of the Rugosa corals is to break (cassation) this link between the both element to give 2 separated oxygen with 8 electrons each, and a carbon with just 2 electrons; this is called cation.

Now imagine a carbon with just two electrons, this will form a hydrocarbon compound: for example the Ethylene which is ( C2H2) under 1 sigma bond and one pi bond, this called a double bond. or it could be Diesel, Graphene or Diamond...etc

Rule:
In simple chemistry, as per valence bond theory, the carbon atom must follow the "4-hydrogen rule",which states that the maximum number of atoms available to bond with carbon is equal to the number of electrons that are attracted into the outer shell of carbon.In terms of shells, carbon consists of an incomplete outer shell, which comprises 4 electrons,and thus has 4 electrons available for covalent or dative bonding.







With just one solitary Coral up to 10 liters of water are kept intact for life. 










 
The Carbon dioxide is reduced to zero after passing through the Rugosa corals. This is a new natural way to ionize CO2.
A simple way to explain my project to the world to resolve CO2 level in the atmosphere.

I am sure it is important to prioritise Rugosa corals as a solution to climate change, specially with my latest results of how the Graphene, Diesel and Diamond are formed; the principal chemical element of these elements is carbon. Rugosa corals were living in an era where planet earth was containing more than 90% of CO2. So their morphology is made to ionize CO2 to make planet earth ready for us where to live.
Just imagine each person will elevate 6 Rugosa corals, the benefit is to break the composition of the carbon from CO2 to Oxygen, and hydrocarbons. I think with this solution there will be no worries about Carbon dioxide emission.
Finally, I am exposing this subject to get cooperation from you in order to make CO2 reduced from the atmosphere. 









1 comment:

Anonymous said...

The chemical pathway of CO2 to O2 and Hc through the Rugosa certainly makes one wonder if it could be replicated under controlled production conditions. Identifying the catalytic pathway to destruction of CO2 to useful reaction products would make a useful product from a concentrated CO2 source such as a coal fired power plant stack.