Converting of CO2 to Glucose; Innovative Cooling system
Carbon iv Oxide is good for Plants, unfortunately it is hazardous to Man (Animals), I designed a technology that can convert Carbon iv Oxide to Glucose; I also designed an Innovative cooling System that is Eco-friendly, Power/Energy Friendly, the Cooling System is Climate Change Compliant it goes with a new Law of ThermodynamicsThe Summary of the Innovative Cooling system is below.
Experiment: - An Energy and Eco/Budget friendly (Solar Powered) Air Conditioning/Refrigeration System. Aim: - Producing a Revolutionary Air Condition/Refrigeration System that is Energy and Eco/Budget friendly. Materials needed/Apparatus: - Fan (Pedestal/Floor Fans), Digital Fountain Pump, Copper Pipes (Ice Block making Kits), Transparent Rubber Pipes, Clips, Empty Aquarium Glasses without a cover, Large Transparent fish bowl that can fit into the Empty Aquarium, Aquarium Lid (made of Glass or Fiber Glass with two perforated holes – the Fiber Glass should be made of Thermosetting Plastic if the Fiber Glass is to be considered), Aquarium Glass Silicon Sealant, Temporal Airtight Sealant e.g. Vacuum Grease, Play Dough, Seal Wax etc. Digital Vacuum Air Pump, Source of Solar Powered Electrical Energy, Digital AC/DC Adaptor, Distilled Water, Two Digital Thermometer, Table Salt, Two Digital Barometers. Method: - Place the pedestal/Floor Fan at a convenient position where it can Oscillate air round freely, clip the Copper Pipes (Ice Block making kits), around the Fan surface, attach and clip the transparent rubber Pipes at the edges of the Copper Pipes, connect the transparent Rubber pipes at the edges of the Copper Pipes, connect the transparent Pipes to the Digital Fountain Pump, one of the Pipes should be connected to the output of the Fountain Pump, the Fountain Pump should be dipped into the water in the fish bowl, the fish bowl is filled with Distilled water (or half filled with Distilled water), it is placed inside the empty Aquarium Glass, the second Transparent pipe, that is coming from the Copper pipes (Ice blocking making kits) is Dipped into the water in the fish bowl, that water is containing the Digital Fountain Pump, the Pump sucks water from the bowl, through the inlet/input opening then sends it out through the outlet source, the water moves through the outlet source, circulates round the Copper Pipes (Ice Blocks making kits), after passing through the Transparent rubber Pipe, the moment the Digital Fountain Pump is turned-on, the circulation starts. A Digital Thermometer and Digital Barometer are attached to a side of the empty Aquarium Glass, the cover of the Aquarium is made of a Glass/re-enforced Fiber Glass with two perforated holes, on the first perforated hole, an airtight Vacuum Pipe is inserted, it is carrying a Digital Vacuum Pipe Gauge and Valve on the top, it is also connected to a Vacuum air Pump, (However some recent designs have the digital gauge and valve on the Pump).
The Conversion of Carbon iv Oxide to Glucose
The Global Climate is changing, the Industrial Revolution of the Holocene Epoch led to the Exponential increase in Global Temperatures, it becomes imperative that we need an efficient cooling system that is Eco-friendly, power/energy friendly, wallet friendly too, so I designed the innovative cooling system to solve that problem, the known laws of Thermodynamics did not cover Very Low temperature, temperatures that are equal to or below the absolute temperature; it becomes imperative that we formulate a Law that can accommodate the modern scientific realities, so I formulated the new Law.
The Summary of the Conversion of CO2 to Glucose is given belowe, it is in 2 parts, this is the first part
Future – Converting Carbon Dioxide to Glucose
Re-engineered Cyanobacteria Gene enable the Blue-Green Algae to convert CO2 to Glucose.
The Re-engineered Cyanobacteria Gene that enables the Blue-Green Algae convert CO2 to Glucose and the process will be reported as an Experiment.
Experiment: - Re-engineering the Cyanobacteria Gene, then using it to secret Glucose from CO2 as a raw material.
Aim:- Modifying the Genes of Cyanobacteria, then using it to produce Glucose from CO2.
Materials Needed/Apparatus:- Cyanobacterial (Blue-Green Algae), Cellulose-making Genes from a Non-Photosynthetic Vinegar Bacterium (Acetobacter Xylinum), 2 Conical Glasses (The First one is Labelled A- The Conical Flask Labeled A is a 3 in 1 Conical Flask with openings for input and output; the second one is Labelled B), A Teaspoon of Sugar, 1 Teaspoon of Brewer’s Yeast, sealant, Perforated Rubber Corks, Delivery Tubes, water and Sunlight Source.
Method:- Mix the cyanobacteria (Approximately 100 ml of Blue and Green Algae), with water in the 500 ml Conical flask, pour 100 ml of Acetobacter Xylinum (Cellulose making genes from a none-photosynthetic Vinegar Bacterium, all of this should be done on a 500 ml conical flask,
i.
this Conical Flask can be Labelled A, a carbon IV Oxide Reactor (A place where CO2 is reliably generated and distributed) the Carbon Reactor for this experiment will be a typical fermentation reaction that involves a 100 gm of yeast and I teaspoon of Sugar (12.50 gm), the Conical Flask with the CO2 should be Labelled B
The Carbon IV Oxide Reactor is basically generating Co2 through Fermentation, (The process is fastest/optimum when the Temperature is warm, it is minimum when the temperature is cold or hot, however an increase in Sugar can also increase the rate of reaction, the Conical Flask A should be linked to Conical Flask B with a U-shaped Delivery tube, via the perforated cork, the Fermentation process will generate CO2 , the CO2 will flow from Conical Flask B to Conical Flask A at a rate of 859.8 PPM (The average PPM for Atmospheric CO2 400.00 PPM*)
Alcohol Fermentation
C6H 12O 6 Yeast 2 C2 H 5 OH + 2CO 2
Conversion of CO2 to Glucose by Genetically Re-engineered Cyanobacteria
6CO2 + 6H2O Genetically Re-engineered Cyanobacteria and sunlight C6H12O6 + 6O2
The Global Community, this is due to climate change and the devastating impact of carbon iv Oxide in the atmosphere, it is damaging the ozone layer.
This is the second part of the Conversion of CO2 to Glucose.
Part 2
Picture of genetically reengineered Cyanobacteria will react with the CO2; It will then start secreting Glucose, Sucrose and Cellulose, this occurs in the presence of Sunlight, after a brief while, the Glucose, Sucrose and Cellulose can be harvested without harming the Cyanobacteria.
Observation:- The CO2 Reactor supplied enough CO2 during the Fermentation reaction in Conical Flask B, the CO2 moved at a very fast rate, the Photosynthetic Reengineered ( Prokaryote) Cyanobacteria (Blue-Green Algae), successfully converted the CO2 to Glucose, Sucrose and Cellulose, all of these is done in Real-Time. In the presence of Sunlight
NB. The Sucrose and Cellulose that is produced can be easily be converted to Glucose since it does not have any impurity
Conclusion: - The Experiment was successful, the CO2 Conversion was successful, CO2 was successfully converted to Glucose, the beauty of it was that it was done in an Eco-friendly manner without killing/destroying anything, both in Conical Flask A and Conical Flask B. The Experiment was successful.
This technique or experiment can be repeated on a Global Scale to Combat Global Warming/Climate Change.
NB.
CO2 Reactor was designed for this experiment, trapping large Scale CO,2 from our Atmosphere or Mars for Large Scale conversion, that can be achieved by facilitating a slightly different Genetic reengineering process, as earlier mentioned, the CO2 emitted into the Atmosphere is 35.9 GtCO2 of Carbon Dioxide (2014), it will involve reengineering of a fast-tracking CO2 Fixation and conversion Process from the Atmosphere, the major micro-organisms and Enzymes that could be restructured to do that job, are a Deep Sea Bacteria called, Thiomicrospira Crunogena and it’s Carbonic anhydrase, the second Enzyme is RuBisCO
If generously funded, I win the first Prize; I could reengineer the Genetic Structures of those Micro Organisms and Enzymes to achieve a Large Scale (Global or Planetary Conversion Process)
Thank You.
The work speaks for themselves, the conversion of Carbon iv Oxide to Glucose was presented at IUPAC (International Union of Pure and Applied Chemistry) at Parties, that was during, the Conterminal Ceremony of Mendeleyev Periodic Table, the work was given a standing ovation, in the presence of Emmanuel Macron.
The Innovative Cooling Prize was adjudge as highly innovative and a certificate was issued for the work by India Ministry of Science and Technology alongside, Richard Branson a co-sponsor of Global Cooling Prize Competition
Future – Converting Carbon Dioxide to Glucose
Re-engineered Cyanobacteria Gene enable the Blue-Green Algae to convert CO2 to Glucose.
The Re-engineered Cyanobacteria Gene that enables the Blue-Green Algae convert CO2 to Glucose and the process will be reported as an Experiment.
Experiment: - Re-engineering the Cyanobacteria Gene, then using it to secret Glucose from CO2 as a raw material.
Aim:- Modifying the Genes of Cyanobacteria, then using it to produce Glucose from CO2.
Materials Needed/Apparatus:- Cyanobacterial (Blue-Green Algae), Cellulose-making Genes from a Non-Photosynthetic Vinegar Bacterium (Acetobacter Xylinum), 2 Conical Glasses (The First one is Labelled A- The Conical Flask Labeled A is a 3 in 1 Conical Flask with openings for input and output; the second one is Labelled B), A Teaspoon of Sugar, 1 Teaspoon of Brewer’s Yeast, sealant, Perforated Rubber Corks, Delivery Tubes, water and Sunlight Source.
Method:- Mix the cyanobacteria (Approximately 100 ml of Blue and Green Algae), with water in the 500 ml Conical flask, pour 100 ml of Acetobacter Xylinum (Cellulose making genes from a none-photosynthetic Vinegar Bacterium, all of this should be done on a 500 ml conical flask,
i.
this Conical Flask can be Labelled A, a carbon IV Oxide Reactor (A place where CO2 is reliably generated and distributed) the Carbon Reactor for this experiment will be a typical fermentation reaction that involves a 100 gm of yeast and I teaspoon of Sugar (12.50 gm), the Conical Flask with the CO2 should be Labelled B
The Carbon IV Oxide Reactor is basically generating Co2 through Fermentation, (The process is fastest/optimum when the Temperature is warm, it is minimum when the temperature is cold or hot, however an increase in Sugar can also increase the rate of reaction, the Conical Flask A should be linked to Conical Flask B with a U-shaped Delivery tube, via the perforated cork, the Fermentation process will generate CO2 , the CO2 will flow from Conical Flask B to Conical Flask A at a rate of 859.8 PPM (The average PPM for Atmospheric CO2 400.00 PPM*)
Alcohol Fermentation
C6H 12O 6 Yeast 2 C2 H 5 OH + 2CO 2
Conversion of CO2 to Glucose by Genetically Re-engineered Cyanobacteria 6CO2 + 6H2O Genetically Re-engineered Cyanobacteria and sunlight C6H12O6 + 6O2
- Other
- United States
- Prototype: A venture or organization building and testing its product, service, or business model, but which is not yet serving anyone
The work has been completed, just funding to start understudying the market
5
Basically to see if I could get funding to experiment the work in the market
Future – Converting Carbon Dioxide to Glucose
Re-engineered Cyanobacteria Gene enable the Blue-Green Algae to convert CO2 to Glucose.
The Re-engineered Cyanobacteria Gene that enables the Blue-Green Algae convert CO2 to Glucose and the process will be reported as an Experiment.
Experiment: - Re-engineering the Cyanobacteria Gene, then using it to secret Glucose from CO2 as a raw material.
Aim:- Modifying the Genes of Cyanobacteria, then using it to produce Glucose from CO2.
Materials Needed/Apparatus:- Cyanobacterial (Blue-Green Algae), Cellulose-making Genes from a Non-Photosynthetic Vinegar Bacterium (Acetobacter Xylinum), 2 Conical Glasses (The First one is Labelled A- The Conical Flask Labeled A is a 3 in 1 Conical Flask with openings for input and output; the second one is Labelled B), A Teaspoon of Sugar, 1 Teaspoon of Brewer’s Yeast, sealant, Perforated Rubber Corks, Delivery Tubes, water and Sunlight Source.
Method:- Mix the cyanobacteria (Approximately 100 ml of Blue and Green Algae), with water in the 500 ml Conical flask, pour 100 ml of Acetobacter Xylinum (Cellulose making genes from a none-photosynthetic Vinegar Bacterium, all of this should be done on a 500 ml conical flask,
i.
this Conical Flask can be Labelled A, a carbon IV Oxide Reactor (A place where CO2 is reliably generated and distributed) the Carbon Reactor for this experiment will be a typical fermentation reaction that involves a 100 gm of yeast and I teaspoon of Sugar (12.50 gm), the Conical Flask with the CO2 should be Labelled B
The Carbon IV Oxide Reactor is basically generating Co2 through Fermentation, (The process is fastest/optimum when the Temperature is warm, it is minimum when the temperature is cold or hot, however an increase in Sugar can also increase the rate of reaction, the Conical Flask A should be linked to Conical Flask B with a U-shaped Delivery tube, via the perforated cork, the Fermentation process will generate CO2 , the CO2 will flow from Conical Flask B to Conical Flask A at a rate of 859.8 PPM (The average PPM for Atmospheric CO2 400.00 PPM*)
Alcohol Fermentation
C6H 12O 6 Yeast 2 C2 H 5 OH + 2CO 2
Conversion of CO2 to Glucose by Genetically Re-engineered Cyanobacteria 6CO2 + 6H2O Genetically Re-engineered Cyanobacteria and sunlight C6H12O6 + 6O2 .
This Research Work is reported as an Experiment (Since P and increases). Experiment: - An Energy and Eco/Budget friendly (Solar Powered) Air Conditioning/Refrigeration System. Aim: - Producing a Revolutionary Air Condition/Refrigeration System that is Energy and Eco/Budget friendly. Materials needed/Apparatus: - Fan (Pedestal/Floor Fans), Digital Fountain Pump, Copper Pipes (Ice Block making Kits), Transparent Rubber Pipes, Clips, Empty Aquarium Glasses without a cover, Large Transparent fish bowl that can fit into the Empty Aquarium, Aquarium Lid (made of Glass or Fiber Glass with two perforated holes – the Fiber Glass should be made of Thermosetting Plastic if the Fiber Glass is to
- Financial (e.g. accounting practices, pitching to investors)
The two concept are 100% new, They were innovations that we developed for 30 years, They were not copied from any other sources, we have even patented the innovations with the United States Patent and Trademark Organizations, the Certificates are attached to the works
This Research Work is reported as an Experiment (Since P and increases). Experiment: - An Energy and Eco/Budget friendly (Solar Powered) Air Conditioning/Refrigeration System. Aim: - Producing a Revolutionary Air Condition/Refrigeration System that is Energy and Eco/Budget friendly. Materials needed/Apparatus: - Fan (Pedestal/Floor Fans), Digital Fountain Pump, Copper Pipes (Ice Block making Kits), Transparent Rubber Pipes, Clips, Empty Aquarium Glasses without a cover, Large Transparent fish bowl that can fit into the Empty Aquarium, Aquarium Lid (made of Glass or Fiber Glass with two perforated holes – the Fiber Glass should be made of Thermosetting Plastic if the Fiber Glass is to be considered), Aquarium Glass Silicon Sealant, Temporal Airtight Sealant e.g. Vacuum Grease, Play Dough, Seal Wax etc. Digital Vacuum Air Pump, Source of Solar Powered Electrical Energy, Digital AC/DC Adaptor, Distilled Water, Two Digital Thermometer, Table Salt, Two Digital Barometers. Method: - Place the pedestal/Floor Fan at a convenient position where it can Oscillate air round freely, clip the Copper Pipes (Ice Block making kits), around the Fan surface, attach and clip the transparent rubber Pipes at the edges of the Copper Pipes, connect the transparent Rubber pipes at the edges of the Copper Pipes, connect the transparent Pipes to the Digital Fountain Pump, one of the Pipes should be connected to the output of the Fountain Pump, the Fountain Pump should be dipped into the water in the fish bowl, the fish bowl is filled with Distilled water (or half filled with Distilled water), it is placed inside the empty Aquarium Glass, the second Transparent pipe, that is coming from the Copper pipes (Ice blocking making kits) is Dipped into the water in the fish bowl, that water is containing the Digital Fountain Pump, the Pump sucks water from the bowl, through the inlet/input opening then sends it out through the outlet source, the water moves through the outlet source, circulates round the Copper Pipes (Ice Blocks making kits), after passing through the Transparent rubber Pipe, the moment the Digital Fountain Pump is turned-on, the circulation starts. A Digital Thermometer and Digital Barometer are attached to a side of the empty Aquarium Glass, the cover of the Aquarium is made of a Glass/re-enforced Fiber Glass with two perforated holes, on the first perforated hole, an airtight Vacuum Pipe is inserted, it is carrying a Digital Vacuum Pipe Gauge and Valve on the top, it is also connected to a Vacuum air Pump, (However some recent designs have the digital gauge and valve on the Pump). The Second Perforation is an opening where the two Transparent Rubber Pipes from the Digital Fountain Pump and Cable for the Pump passes through, it must be
NB
Details are in the Link
The Right funding could create an international Revolution Globally, it would be of the same scale like Microsoft with Computers or GSM with Phones, The key is just the right funding, The major challenge that we are currently having is Funding with the Right funding we will take the Innovation Global, it also has tremendous market value
Re-engineered Cyanobacteria Gene enable the Blue-Green Algae to convert CO2 to Glucose.
The Re-engineered Cyanobacteria Gene that enables the Blue-Green Algae convert CO2 to Glucose and the process will be reported as an Experiment.
Experiment: - Re-engineering the Cyanobacteria Gene, then using it to secret Glucose from CO2 as a raw material.
Aim:- Modifying the Genes of Cyanobacteria, then using it to produce Glucose from CO2.
Materials Needed/Apparatus:- Cyanobacterial (Blue-Green Algae), Cellulose-making Genes from a Non-Photosynthetic Vinegar Bacterium (Acetobacter Xylinum), 2 Conical Glasses (The First one is Labelled A- The Conical Flask Labeled A is a 3 in 1 Conical Flask with openings for input and output; the second one is Labelled B), A Teaspoon of Sugar, 1 Teaspoon of Brewer’s Yeast, sealant, Perforated Rubber Corks, Delivery Tubes, water and Sunlight Source.
Method:- Mix the cyanobacteria (Approximately 100 ml of Blue and Green Algae), with water in the 500 ml Conical flask, pour 100 ml of Acetobacter Xylinum (Cellulose making genes from a none-photosynthetic Vinegar Bacterium, all of this should be done on a 500 ml conical flask,
i.
this Conical Flask can be Labelled A, a carbon IV Oxide Reactor (A place where CO2 is reliably generated and distributed) the Carbon Reactor for this experiment will be a typical fermentation reaction that involves a 100 gm of yeast and I teaspoon of Sugar (12.50 gm), the Conical Flask with the CO2 should be Labelled B
The Carbon IV Oxide Reactor is basically generating Co2 through Fermentation, (The process is fastest/optimum when the Temperature is warm, it is minimum when the temperature is cold or hot, however an increase in Sugar can also increase the rate of reaction, the Conical Flask A should be linked to Conical Flask B with a U-shaped Delivery tube, via the perforated cork, the Fermentation process will generate CO2 , the CO2 will flow from Conical Flask B to Conical Flask A at a rate of 859.8 PPM (The average PPM for Atmospheric CO2 400.00 PPM*)
Alcohol Fermentation
C6H 12O 6 Yeast 2 C2 H 5 OH + 2CO 2
Conversion of CO2 to Glucose by Genetically Re-engineered Cyanobacteria
6CO2 + 6H2O Genetically Re-engineered Cyanobacteria and sunlight C6H12O6 + 6O2
Picture of genetically reengineered Cyanobacteria will react with the CO2; It will then start secreting Glucose, Sucrose and Cellulose, this occurs in the presence of Sunlight, after a brief while, the Glucose, Sucrose and Cellulose can be harvested without harming the Cyanobacteria.
Observation:- The CO2 Reactor supplied enough CO2 during the Fermentation reaction in Conical Flask B, the CO2 moved at a very fast rate, Conclusion:
The Desired Result was Achieved
- 1. No Poverty
- 7. Affordable and Clean Energy
- 13. Climate Action
The work is ready, Temporarily incapacitated by meagre (Private Savings) funding, we are ready to Rock the world. We are still trying to project the work Globally, that way, we can completely evaluate the true international market evaluations
This Research Work is reported as an Experiment (Since P and increases). Experiment: - An Energy and Eco/Budget friendly (Solar Powered) Air Conditioning/Refrigeration System. Aim: - Producing a Revolutionary Air Condition/Refrigeration System that is Energy and Eco/Budget friendly. Materials needed/Apparatus: - Fan (Pedestal/Floor Fans), Digital Fountain Pump, Copper Pipes (Ice Block making Kits), Transparent Rubber Pipes, Clips, Empty Aquarium Glasses without a cover, Large Transparent fish bowl that can fit into the Empty Aquarium, Aquarium Lid (made of Glass or Fiber Glass with two perforated holes – the Fiber Glass should be made of Thermosetting Plastic if the Fiber Glass is to be considered), Aquarium Glass Silicon Sealant, Temporal Airtight Sealant e.g. Vacuum Grease, Play Dough, Seal Wax etc. Digital Vacuum Air Pump, Source of Solar Powered Electrical Energy, Digital AC/DC Adaptor, Distilled Water, Two Digital Thermometer, Table Salt, Two Digital Barometers. Method: - Place the pedestal/Floor Fan at a convenient position where it can Oscillate air round freely, clip the Copper Pipes (Ice Block making kits), around the Fan surface, attach and clip the transparent rubber Pipes at the edges of the Copper Pipes, connect the transparent Rubber pipes at the edges of the Copper Pipes, connect the transparent Pipes to the Digital Fountain Pump, one of the Pipes should be connected to the output of the Fountain Pump, the Fountain Pump should be dipped into the water in the fish bowl, the fish bowl is filled with Distilled water (or half filled with Distilled water), it is placed inside the empty Aquarium Glass, the second Transparent pipe, that is coming from the Copper pipes (Ice blocking making kits) is Dipped into the water in the fish bowl, that water is containing the Digital Fountain Pump, the Pump sucks water from the bowl, through the inlet/input opening then sends it out through the outlet source, the water moves through the outlet source, circulates round the Copper Pipes (Ice Blocks making kits), after passing through the Transparent rubber Pipe, the moment the Digital Fountain Pump is turned-on, the circulation starts. A Digital Thermometer and Digital Barometer are attached to a side of the empty Aquarium Glass, the cover of the Aquarium is made of a Glass/re-enforced Fiber Glass with two perforated holes, on the first perforated hole, an airtight Vacuum Pipe is inserted, it is carrying a Digital Vacuum Pipe Gauge and Valve on
Visualize where Carbon iv Oxide will majorly be producing Glucose Globally? isn't that a revolution?
Visualize where everybody will have access to a cooling system Globally, where the Cooling System does not emit any harmful substances, its cheap, it does not not consume power/Energy, it could be a Revolution.
This Research Work is reported as an Experiment (Since P and increases). Experiment: - An Energy and Eco/Budget friendly (Solar Powered) Air Conditioning/Refrigeration System. Aim: - Producing a Revolutionary Air Condition/Refrigeration System that is Energy and Eco/Budget friendly. Materials needed/Apparatus: - Fan (Pedestal/Floor Fans), Digital Fountain Pump, Copper Pipes (Ice Block making Kits), Transparent Rubber Pipes, Clips, Empty Aquarium Glasses without a cover, Large Transparent fish bowl that can fit into the Empty Aquarium, Aquarium Lid (made of Glass or Fiber Glass with two perforated holes – the Fiber Glass should be made of Thermosetting Plastic if the Fiber Glass is to be considered), Aquarium Glass Silicon Sealant, Temporal Airtight Sealant e.g. Vacuum Grease, Play Dough, Seal Wax etc. Digital Vacuum Air Pump, Source of Solar Powered Electrical Energy, Digital AC/DC Adaptor, Distilled Water, Two Digital Thermometer, Table Salt, Two Digital Barometers. Method: - Place the pedestal/Floor Fan at a convenient position where it can Oscillate air round freely, clip the Copper Pipes (Ice Block making kits), around the Fan surface, attach and clip the transparent rubber Pipes at the edges of the Copper Pipes, connect the transparent Rubber pipes at the edges of the Copper Pipes, connect the transparent Pipes to the Digital Fountain Pump, one of the Pipes should be connected to the output of the Fountain Pump, the Fountain Pump should be dipped into the water in the fish bowl, the fish bowl is filled with Distilled water (or half filled with Distilled water), it is placed inside the empty Aquarium Glass, the second Transparent pipe, that is coming from the Copper pipes (Ice blocking making kits) is Dipped into the water in the fish bowl, that water is containing the Digital Fountain Pump, the Pump sucks water from the bowl, through the inlet/input opening then sends it out through the outlet source, the water moves through the outlet source, circulates round the Copper Pipes (Ice Blocks making kits), after passing through the Transparent rubber Pipe, the moment the Digital Fountain Pump is turned-on, the circulation starts. A Digital Thermometer and Digital Barometer are attached to a side of the empty Aquarium Glass, the cover of the Aquarium is made of a Glass/re-enforced Fiber Glass with two perforated holes, on the first perforated hole, an airtight Vacuum Pipe is inserted, it is carrying a Digital Vacuum Pipe Gauge and Valve on
The Conversion of Carbon iv Oxide to Glucose is Microscopic (Biochemically), The Innovative Cooling System Thermodynamics, An innovative/Brilliant exploitation of Thermodynamics (Physics/Engineering)
- A new technology
The First is Biochemical, it is perfectly natural, care was taken to make sure that it doesn't violate all know Biological or Chemical Laws.
The Second is Thermodynamics, great care was taken to make sure that the second Law of Thermodynamics was not violated
This Research Work is reported as an Experiment (Since P and increases). Experiment: - An Energy and Eco/Budget friendly (Solar Powered) Air Conditioning/Refrigeration System. Aim: - Producing a Revolutionary Air Condition/Refrigeration System that is Energy and Eco/Budget friendly. Materials needed/Apparatus: - Fan (Pedestal/Floor Fans), Digital Fountain Pump, Copper Pipes (Ice Block making Kits), Transparent Rubber Pipes, Clips, Empty Aquarium Glasses without a cover, Large Transparent fish bowl that can fit into the Empty Aquarium, Aquarium Lid (made of Glass or Fiber Glass with two perforated holes – the Fiber Glass should be made of Thermosetting Plastic if the Fiber Glass is to be considered), Aquarium Glass Silicon Sealant, Temporal Airtight Sealant e.g. Vacuum Grease, Play Dough, Seal Wax etc. Digital Vacuum Air Pump, Source of Solar Powered Electrical Energy, Digital AC/DC Adaptor, Distilled Water, Two Digital Thermometer, Table Salt, Two Digital Barometers. Method: - Place the pedestal/Floor Fan at a convenient position where it can Oscillate air round freely, clip the Copper Pipes (Ice Block making kits), around the Fan surface, attach and clip the transparent rubber Pipes at the edges of the Copper Pipes, connect the transparent Rubber pipes at the edges of the Copper Pipes, connect the transparent Pipes to the Digital Fountain Pump, one of the Pipes should be connected to the output of the Fountain Pump, the Fountain Pump should be dipped into the water in the fish bowl, the fish bowl is filled with Distilled water (or half filled with Distilled water), it is placed inside the empty Aquarium Glass, the second Transparent pipe, that is coming from the Copper pipes (Ice blocking making kits) is Dipped into the water in the fish bowl, that water is containing the Digital Fountain Pump, the Pump sucks water from the bowl, through the inlet/input opening then sends it out through the outlet source, the water moves through the outlet source, circulates round the Copper Pipes (Ice Blocks making kits), after passing through the Transparent rubber Pipe, the moment the Digital Fountain Pump is turned-on, the circulation starts. A Digital Thermometer and Digital Barometer are attached to a side of the empty Aquarium Glass, the cover of the Aquarium is made of a Glass/re-enforced Fiber Glass with two perforated holes, on the first perforated hole, an airtight Vacuum Pipe is inserted, it is carrying a Digital Vacuum Pipe Gauge and Valve on
- Biotechnology / Bioengineering
- Materials Science
- United States
- United States
- For-profit, including B-Corp or similar models
We are an all inclusive Organization, we don't discriminate
Limited Liability Company, we do do research, we are also very active in Community Service Programs, we Participate in Programs of the Borough President, we work with Rotary Club, we also work with Faith Based Charities like Knights of St Johns, Columbus and Malta.
- Individual consumers or stakeholders (B2C)
We render services to Customers too, we have a department that does, Money transmision, Notary public services et al
We render other services as well, Money transmission, Notary Public Services et al
CEO