YouTube - ‪Stove, Cooking, Light, Power from Gasification of Hydrogen Based Fuel‬‏
ashtweth
156 posts · 32 threads started · 487 more in threads this archive does not carry · writing between Feb 2008 and Apr 2012
An identity on Energetic Forum as it was harvested, not an account on this site. Nobody here has claimed it, and nothing connects it to a person by name.
Look at this off the shelf
YouTube - ‪Stove, Cooking, Light, Power from Gasification of Hydrogen Based Fuel‬‏
YouTube - ‪Stove, Cooking, Light, Power from Gasification of Hydrogen Based Fuel‬‏
After Jet's plastic into fuel, we need Hemp to replace plastic. But we can also use the left over stalks in Pyrolysis.
Not sure if an open source gasification unit is out there but look at these advantages and units from recycled parts. Turning hemp into electricity through biomass gasification
YouTube - ‪Pot Power- Turning Hemp into electricity‬‏
Advantages , these are superior. These FACTS must be used to legalize INDUSTRIAL hemp in the USA.
Hemp as a Fuel / Energy Source
By Jeremy Briggs
Biodiesel fuel from Hemp Seed Oil
Hemp seed oil can be used as is in bio-diesel engines. Methyl esters, or bio-diesel, can be made from any oil or fat including hemp seed oil. The reaction requires the oil, an alcohol (usually methanol), and a catalyst, which produces bio-diesel and small amount of glycerol or glycerin. When co-fired with 15% methanol, bio-diesel fuel produces energy less than 1/3 as pollution as petroleum diesel.
Energy and Fuel from Hemp Stalks through Pyrolysis
Pyrolysis is the technique of applying high heat to biomass, or organic plants and tree matter, with little or no air. Reduced emissions from coal-fired power plants and automobiles can be accomplished by converting biomass to fuel utilizing pyrolysis technology. The process can produce, from lingo-cellulosic material (like the stalks of hemp), charcoal, gasoline, ethanol, non-condensable gasses, acetic acid, acetone, methane, and methanol. Process adjustments can be done to favor charcoal, pyrolytic oil, gas, or methanol, with 95.5% fuel-to-feed ratios. Around 68% of the energy of the raw biomass will be contained in the charcoal and fuel oils -- renewable energy generated here at home, instead of overpaying for foreign petroleum.
Pyrolysis facilities can run 3 shifts a day, and since pyrolysis facilities need to be within 50 miles of the energy crop to be cost effective, many new local and rural jobs will be created, not to mention the employment opportunities in trucking and transportation.
Hemp vs. Fossil Fuels
Pyrolysis facilities can use the same technology used now to process fossil fuel oil and coal. Petroleum coal and oil conversion is more efficient in terms of fuel-to-feed ratio, but there are many advantages to conversion by pyrolysis.
1) Biomass has a heating value of 5000-8000 BTU/lb, with virtually no ash or sulfur emissions.
2) Ethanol, methanol, methane gas, and gasoline can be derived from biomass at a fraction of the cost of the current cost of oil, coal, or nuclear energy, especially when environmental costs are factored in. Each acre of hemp could yield about 1000 gallons of methanol.
3) When an energy crop is growing, it takes carbon dioxide (CO2) from the air, and releases an equal amount when it is burned, creating a balanced system, unlike petroleum fuels, which only release CO2. When an energy crop like hemp is grown on a massive scale, it will initially lower the CO2 in the air, and then stabilize it at a level lower than before the planting of the energy crop.
4) Use of biomass would end acid rain, end sulfer-based smog, and reverse the greenhouse effect.
Coal
Unlike petroleum reserves, America has enough coal to last 100-300 years, but burning it for electricity puts sulfur (toxic to every membrane in which it comes in contact, especially the simplest life forms - into the air, which leads to acid rain, which lills 50,000 Americans, and 5,000 - 10,000 Canadians, annually, and destroys the forests, river, and animals.
Charcoal can be created from biomass through pyrolysis (charcoaling), which has nearly the same heating value in BTU as coal, virtually without sulfur. Biomass can also be co-fired with coal to reduce emissions.
Ethanol and Methanol
Ethanol is a water-free, high-octane alcohol which can be used as fuel to drive cars. Under current conditions, use of ethanol-blended fuels such as E85 (85% ethanol and 15% gasoline) can reduce net emissions of greenhouse gases by as much as 37.1%. Ethanol-powered vehicles do suffer in performance (barely), but ethanol is effective as a fuel additive because it helps engines burn cleaner.
Once pyrolysis facilities are up and running, converting biomass into charcoal for electrical power plants, it will be more feasible to build the complex gasifying systems to produce ethanol and/or methanol from the cubed biomass, or to make high-octane lead-free gasoline from the methanol using a catalytic process developed by Georgia Tech University in conjunction with Mobil Oil Corporation.
Ethanol is currently being used as a fuel additive, replacing toxic methyl tertiary ether (MTBE). Ethanol producers are currently providing only 1% of America's liquid fuel. Soon though, as new development processes are researched, and with the use of hemp, the plant worlds number one producer of biomass, the cost of this alternative fuel will give petroleum vigorous competition.
Hydrolysis: A process whereby cellulose is converted to fermentable glucose, which holds the greatest promise for production and feedstock, because it could produce 100 gallons/ton. Tim Castleman and the Fuel and Fiber Company are researching this technology. Their method extracts the high-value bast fiber as first step. Then the remaining core material (mostly hurd) is converted to alcohol (methanol, ethanol), and then to glucose. Hydrolysis could produce 300,000 to 600,000 tons of biomass per year per facility, if each facility could process input from 60,000 to 170,000 acres.
Gasification: A form of pyrolysis which converts biomass into synthetic gas, such as ethanol, and low grade fuel oil with an energy content of about 40% that of petroleum diesel. This process is good for community power-corporation and people seeking self-sufficient energy needs. A small modular bio-powered system is in place in the village of Alaminos in the Philippines, using gasification techniques for energy.
Anaerobic Digestion: A process of capturing methane from green waste material (biomass). This process is toxic, but well suited for distributed power generation when co-located with electrical generation equipment.
Boiler: Biomass can also be burned in a boiler, but this energy has a value of $30-50 ton, which makes it impractical due to the higher value of hemp fiber, unless used on a local small scale, and in remote rural applications.
Hemp Produces the Most Biomass of Any Plant on Earth.
Hemp is at least four times richer in biomass/cellulose potential than its nearest rivals: cornstalks, sugarcane, kenaf, trees, etc.
Hemp produces the most biomass of any crop, which is why it is the natural choice for an energy crop. Hemp converts the sun's energy into cellulose faster than any other plant, through photosynthesis. Hemp can produce 10 tons of biomass per acre every four months. Enough energy could be produced on 6% of the land in the U.S. to provide enough energy for our entire country (cars, heat homes, electricity, industry) -- and we use 25% of the world's energy.
To put which in perspective, right now we pay farmers not to grow on 6% (around 90 million acres) of the farming land, while another 500 million acres of marginal farmland lies fallow. This land could be used to grow hemp as an energy crop.
Conclusion
The most important aspect of industrial hemp farming, the most compelling thing hemp offers us, is fuel. Right now we are depleting our reserves of petroleum and buying it up from other countries. It would be nice if we could have a fuel source which was reusable and which we could grow right here, making us completely energy independent.
Petroleum fuel increases carbon monoxide in the atmosphere and contributes heavily to global warming and the greenhouse effect, which could lead to global catastrophe in the next 50 years if these trends continue. Do you want to find out if they are right, or do you want to grow the most cost effective and environmentally safe fuel source on the planet?
Using hemp as an energy and rotation crop would be a great step in the right direction.
Hemp Seed Oil
Hemp seed oil has historically been used as lamp oil. It is said to shine the brightest of all lamp oils. Hemp seed oil lit the lamps of Abraham Lincoln, Abraham the prophet, and was used in the legendary lamps of Aladdin.
Anything which can be made from fossil fuels can be made from an organic substance like hemp. Toxic petrochemicals can be replaced with hemp oil.
Hemp oil can be made into anything with an oil base, including paint, varnish, detergent, solvent, and lubricating oil. The advantage of these product is that they are earth friendly and biodegradable, and do not destroy ecosystems around them like petrochemicals do.
Until the 1930s most paint and varnishes were made with non-toxic hemp oil. Hemp paint provides superior coating because hemp oil soaks into and preserves wood, due to its high resistance to water.
Hemp oil is a good base for non-toxic printing inks. Soy is currently made into inks, but soy ink requires more processing and takes longer to dry than hemp oil based inks.
Hemphasis.net ~ Hemp Fuel & Energy
Not sure if an open source gasification unit is out there but look at these advantages and units from recycled parts. Turning hemp into electricity through biomass gasification
YouTube - ‪Pot Power- Turning Hemp into electricity‬‏
Advantages , these are superior. These FACTS must be used to legalize INDUSTRIAL hemp in the USA.
Hemp as a Fuel / Energy Source
By Jeremy Briggs
Biodiesel fuel from Hemp Seed Oil
Hemp seed oil can be used as is in bio-diesel engines. Methyl esters, or bio-diesel, can be made from any oil or fat including hemp seed oil. The reaction requires the oil, an alcohol (usually methanol), and a catalyst, which produces bio-diesel and small amount of glycerol or glycerin. When co-fired with 15% methanol, bio-diesel fuel produces energy less than 1/3 as pollution as petroleum diesel.
Energy and Fuel from Hemp Stalks through Pyrolysis
Pyrolysis is the technique of applying high heat to biomass, or organic plants and tree matter, with little or no air. Reduced emissions from coal-fired power plants and automobiles can be accomplished by converting biomass to fuel utilizing pyrolysis technology. The process can produce, from lingo-cellulosic material (like the stalks of hemp), charcoal, gasoline, ethanol, non-condensable gasses, acetic acid, acetone, methane, and methanol. Process adjustments can be done to favor charcoal, pyrolytic oil, gas, or methanol, with 95.5% fuel-to-feed ratios. Around 68% of the energy of the raw biomass will be contained in the charcoal and fuel oils -- renewable energy generated here at home, instead of overpaying for foreign petroleum.
Pyrolysis facilities can run 3 shifts a day, and since pyrolysis facilities need to be within 50 miles of the energy crop to be cost effective, many new local and rural jobs will be created, not to mention the employment opportunities in trucking and transportation.
Hemp vs. Fossil Fuels
Pyrolysis facilities can use the same technology used now to process fossil fuel oil and coal. Petroleum coal and oil conversion is more efficient in terms of fuel-to-feed ratio, but there are many advantages to conversion by pyrolysis.
1) Biomass has a heating value of 5000-8000 BTU/lb, with virtually no ash or sulfur emissions.
2) Ethanol, methanol, methane gas, and gasoline can be derived from biomass at a fraction of the cost of the current cost of oil, coal, or nuclear energy, especially when environmental costs are factored in. Each acre of hemp could yield about 1000 gallons of methanol.
3) When an energy crop is growing, it takes carbon dioxide (CO2) from the air, and releases an equal amount when it is burned, creating a balanced system, unlike petroleum fuels, which only release CO2. When an energy crop like hemp is grown on a massive scale, it will initially lower the CO2 in the air, and then stabilize it at a level lower than before the planting of the energy crop.
4) Use of biomass would end acid rain, end sulfer-based smog, and reverse the greenhouse effect.
Coal
Unlike petroleum reserves, America has enough coal to last 100-300 years, but burning it for electricity puts sulfur (toxic to every membrane in which it comes in contact, especially the simplest life forms - into the air, which leads to acid rain, which lills 50,000 Americans, and 5,000 - 10,000 Canadians, annually, and destroys the forests, river, and animals.
Charcoal can be created from biomass through pyrolysis (charcoaling), which has nearly the same heating value in BTU as coal, virtually without sulfur. Biomass can also be co-fired with coal to reduce emissions.
Ethanol and Methanol
Ethanol is a water-free, high-octane alcohol which can be used as fuel to drive cars. Under current conditions, use of ethanol-blended fuels such as E85 (85% ethanol and 15% gasoline) can reduce net emissions of greenhouse gases by as much as 37.1%. Ethanol-powered vehicles do suffer in performance (barely), but ethanol is effective as a fuel additive because it helps engines burn cleaner.
Once pyrolysis facilities are up and running, converting biomass into charcoal for electrical power plants, it will be more feasible to build the complex gasifying systems to produce ethanol and/or methanol from the cubed biomass, or to make high-octane lead-free gasoline from the methanol using a catalytic process developed by Georgia Tech University in conjunction with Mobil Oil Corporation.
Ethanol is currently being used as a fuel additive, replacing toxic methyl tertiary ether (MTBE). Ethanol producers are currently providing only 1% of America's liquid fuel. Soon though, as new development processes are researched, and with the use of hemp, the plant worlds number one producer of biomass, the cost of this alternative fuel will give petroleum vigorous competition.
Hydrolysis: A process whereby cellulose is converted to fermentable glucose, which holds the greatest promise for production and feedstock, because it could produce 100 gallons/ton. Tim Castleman and the Fuel and Fiber Company are researching this technology. Their method extracts the high-value bast fiber as first step. Then the remaining core material (mostly hurd) is converted to alcohol (methanol, ethanol), and then to glucose. Hydrolysis could produce 300,000 to 600,000 tons of biomass per year per facility, if each facility could process input from 60,000 to 170,000 acres.
Gasification: A form of pyrolysis which converts biomass into synthetic gas, such as ethanol, and low grade fuel oil with an energy content of about 40% that of petroleum diesel. This process is good for community power-corporation and people seeking self-sufficient energy needs. A small modular bio-powered system is in place in the village of Alaminos in the Philippines, using gasification techniques for energy.
Anaerobic Digestion: A process of capturing methane from green waste material (biomass). This process is toxic, but well suited for distributed power generation when co-located with electrical generation equipment.
Boiler: Biomass can also be burned in a boiler, but this energy has a value of $30-50 ton, which makes it impractical due to the higher value of hemp fiber, unless used on a local small scale, and in remote rural applications.
Hemp Produces the Most Biomass of Any Plant on Earth.
Hemp is at least four times richer in biomass/cellulose potential than its nearest rivals: cornstalks, sugarcane, kenaf, trees, etc.
Hemp produces the most biomass of any crop, which is why it is the natural choice for an energy crop. Hemp converts the sun's energy into cellulose faster than any other plant, through photosynthesis. Hemp can produce 10 tons of biomass per acre every four months. Enough energy could be produced on 6% of the land in the U.S. to provide enough energy for our entire country (cars, heat homes, electricity, industry) -- and we use 25% of the world's energy.
To put which in perspective, right now we pay farmers not to grow on 6% (around 90 million acres) of the farming land, while another 500 million acres of marginal farmland lies fallow. This land could be used to grow hemp as an energy crop.
Conclusion
The most important aspect of industrial hemp farming, the most compelling thing hemp offers us, is fuel. Right now we are depleting our reserves of petroleum and buying it up from other countries. It would be nice if we could have a fuel source which was reusable and which we could grow right here, making us completely energy independent.
Petroleum fuel increases carbon monoxide in the atmosphere and contributes heavily to global warming and the greenhouse effect, which could lead to global catastrophe in the next 50 years if these trends continue. Do you want to find out if they are right, or do you want to grow the most cost effective and environmentally safe fuel source on the planet?
Using hemp as an energy and rotation crop would be a great step in the right direction.
Hemp Seed Oil
Hemp seed oil has historically been used as lamp oil. It is said to shine the brightest of all lamp oils. Hemp seed oil lit the lamps of Abraham Lincoln, Abraham the prophet, and was used in the legendary lamps of Aladdin.
Anything which can be made from fossil fuels can be made from an organic substance like hemp. Toxic petrochemicals can be replaced with hemp oil.
Hemp oil can be made into anything with an oil base, including paint, varnish, detergent, solvent, and lubricating oil. The advantage of these product is that they are earth friendly and biodegradable, and do not destroy ecosystems around them like petrochemicals do.
Until the 1930s most paint and varnishes were made with non-toxic hemp oil. Hemp paint provides superior coating because hemp oil soaks into and preserves wood, due to its high resistance to water.
Hemp oil is a good base for non-toxic printing inks. Soy is currently made into inks, but soy ink requires more processing and takes longer to dry than hemp oil based inks.
Hemphasis.net ~ Hemp Fuel & Energy
Prof. Dr. Claus W. Turtur ?
SIR
SIR
YouTube - ‪Solar Powered HHO Array on Bad Pat's Tour Bus‬‏
On Demand he could cook too with the splitter design.
He should put the Bedini charger on that.
A dry cell would mean less hours to charge
so far 6 hours for 1 hour of driving dangerous storage idea tho
Ash
On Demand he could cook too with the splitter design.
He should put the Bedini charger on that.
A dry cell would mean less hours to charge
so far 6 hours for 1 hour of driving dangerous storage idea tho
Ash
Aaron i remember that Browns Gas stuff. Research has shown that Brown's Gas can efficiently neutralize radioactive waste though transmutation right at the reactor, thus removing the need for transportation or storage of nuclear waste. An attempt was made to show this to the US Department of Energy. This however resulted in insufficient support and procedure to support the data. Dan Haley from New York investigated the lack of response after the US Department of Energy observed such a demonstration of transmutation. The report shows that a collaborative scientific effort is still needed to present the full data and help this case.
The Neutralization of nuclear waste can also effectively address drought problems (DOR), this is another neglected and not widely known area of research. There is something very special with "Brown's Gas" that scientists have not studied over the last 50 years, thinking and assuming that its the same as mixing H2 & O2 gases.
Christopher Eckman has been turning heads for a couple of years now in the free energy community with his academic studies and tests on Brown's gas at the University of Idaho. He proposes a model in which the H2O molecule in Brown's gas actually becomes linear and electrical in nature. In the linear form, it loses its dipole and thus can exist in gaseous form which Eckman dubs "electric steam".
The dipole is the primary means by which water adheres to things, including itself in liquid form. When the 'electric steam' is ignited and strikes the substrate, it is the electrical energy that is released and is responsible for the heat transference to the substrate, not the temperature of the actual flame that does the work. Liquid water can be seen dripping off of metal substrate.
Dr. Rhodes and Professor Brown never had the opportunity or equipment to analyze their HHO gases like Christopher Eckman currently has access to. This field is still wide open for further research.
Theoretical Possibilities and Future Projects
- Use in space
- New breakthroughs in chemistry
- Cheaper and easier welding
- No flux required when welding
- New alloys
- New energy storage or battery types
- Potential fuel
- Breakthroughs in plasma physics
- Comparison of metals or non-metals when using the torch on them
- The burning rate of Browns Gas (Possibilities of proving it is not just diatomic hydrogen and oxygen)
- More research needed in the claims of nuclear radioactivity neutralization
- More research in general, who knows what more could be found!
The hydroxy research groups contributions need a grant backed research and development environment to flourish and will be submitted into faculty study in the proposed granted NON PROFIT Panacea research and development center.
Ash
The Neutralization of nuclear waste can also effectively address drought problems (DOR), this is another neglected and not widely known area of research. There is something very special with "Brown's Gas" that scientists have not studied over the last 50 years, thinking and assuming that its the same as mixing H2 & O2 gases.
Christopher Eckman has been turning heads for a couple of years now in the free energy community with his academic studies and tests on Brown's gas at the University of Idaho. He proposes a model in which the H2O molecule in Brown's gas actually becomes linear and electrical in nature. In the linear form, it loses its dipole and thus can exist in gaseous form which Eckman dubs "electric steam".
The dipole is the primary means by which water adheres to things, including itself in liquid form. When the 'electric steam' is ignited and strikes the substrate, it is the electrical energy that is released and is responsible for the heat transference to the substrate, not the temperature of the actual flame that does the work. Liquid water can be seen dripping off of metal substrate.
Dr. Rhodes and Professor Brown never had the opportunity or equipment to analyze their HHO gases like Christopher Eckman currently has access to. This field is still wide open for further research.
Theoretical Possibilities and Future Projects
- Use in space
- New breakthroughs in chemistry
- Cheaper and easier welding
- No flux required when welding
- New alloys
- New energy storage or battery types
- Potential fuel
- Breakthroughs in plasma physics
- Comparison of metals or non-metals when using the torch on them
- The burning rate of Browns Gas (Possibilities of proving it is not just diatomic hydrogen and oxygen)
- More research needed in the claims of nuclear radioactivity neutralization
- More research in general, who knows what more could be found!
The hydroxy research groups contributions need a grant backed research and development environment to flourish and will be submitted into faculty study in the proposed granted NON PROFIT Panacea research and development center.
Ash
Thanks Peter will do, makes me wonder what would happen if people sent the opposite! Stock up on food to protect the thyroid
.
Ash
.Ash
Euro Fuel saver
#1 ·
Numerous reliable tests (9 Universities, 8 Governments, 6 Independent laboratories, 15 transport companies of goods, 10 transport companies of persons) give SUPER TECH excellent worldwide references..
Supertech EURO FuelSaver
Ash
Supertech EURO FuelSaver
Ash
Careful what you wish for
Ismael just emailed me guys he is getting an independent test done
.
ImageShack® - Online Photo and Video Hosting
Mean time check it
How Aviso extracts energy from the surroundings to power his electric vehicle
Ash
Ismael just emailed me guys he is getting an independent test done
.ImageShack® - Online Photo and Video Hosting
Mean time check it
How Aviso extracts energy from the surroundings to power his electric vehicle
Ash
Hi ALL
Yes more testing is needed, ill chat to him about that my friends , we are going to donate a hydroxy cell to him to try and make a adaptable system , he has offered to adapt one to run hydroxy, this may be easier to test and validate
ill ask him if we can test it and report
.
Yes more testing is needed, ill chat to him about that my friends , we are going to donate a hydroxy cell to him to try and make a adaptable system , he has offered to adapt one to run hydroxy, this may be easier to test and validate
ill ask him if we can test it and report
.
Thanks man!
Any one notice he has an antenna like Tesla!
Ash
Ash
Guys if your not keeping up with Ismeal Aviso please take a look , have spoken to him before Ismeal is also out to help the people in his country who are currently living in poverty. Supporting his work will help the bigger picture and this effort.
self charging electric car
YouTube - self charging electric car (free energy)
+
YouTube - Ismael Aviso Electric car Jan- 31-2011using small batt
I updated his page for those who want a quick overview and video's with all links etc
At present to mass produce the technology the investment cost for a conversion kit is less then 3,000 USD. With the motor and battery the prototype can travel 80- 1000 kilometers before it needs charging. No other electric car technology can do this. This means using 10,000 watts the battery could potentially reach 1,000 kilometers. The next design is intended to be 100% looped. With endorsement and funds Ismeal is confident it can be done like EVGRAY did it.
Ismael Aviso
REFRESH PAGE
Ash
His Chanel and friends
Ismael Aviso
(Refresh)
self charging electric car
YouTube - self charging electric car (free energy)
+
YouTube - Ismael Aviso Electric car Jan- 31-2011using small batt
I updated his page for those who want a quick overview and video's with all links etc
At present to mass produce the technology the investment cost for a conversion kit is less then 3,000 USD. With the motor and battery the prototype can travel 80- 1000 kilometers before it needs charging. No other electric car technology can do this. This means using 10,000 watts the battery could potentially reach 1,000 kilometers. The next design is intended to be 100% looped. With endorsement and funds Ismeal is confident it can be done like EVGRAY did it.
Ismael Aviso
REFRESH PAGE
Ash
His Chanel and friends
Ismael Aviso
(Refresh)
Hi Steven ,most call this the hydroxy "bible" our community authored it.
check the dry cell designs and FACULTY section of the document.
Panacea University - Courses
->hydroxy course
Also check Patrick's chapter 10
Practical Guide to Free-Energy Devices - Chapter 10
Also check this thread for the open source design
Ash
check the dry cell designs and FACULTY section of the document.
Panacea University - Courses
->hydroxy course
Also check Patrick's chapter 10
Practical Guide to Free-Energy Devices - Chapter 10
Also check this thread for the open source design
Ash
everyidea wrote:
Watch this one, it explains it more. It's using radio waves to power it.
YouTube - Free radiant electricity from the air
rw

Ash
Thanks for the report guys,i still cant get in strange.
Ash
Ash
kippered wrote:
Its up again
Seems like they have been progressing slowly...
Its was rumored that they have Meyer's technology used more the HHO production, seems like if that was the case they could have made a quicker impact on the scene. I guess the pilot plant in Ontario would be quite a bit of work.
In 2 years all I have really seen is the same news and an updated website. Anyone privy to some details?
?
It still down
site is Still down!
Welcome to Xogen Technologies!
Welcome to Xogen Technologies!
Guys guess what is worth the most in the prius? Its not the car or the engine its the steering or breaking system which is worth a lot Just spoke to some one who got it repaired cant remember which one it was
, be careful when driving that car!
, be careful when driving that car!