Dienstag, 28. Februar 2012

GreenCell Technologies Moves Into Advanced Testing of their Proprietary Hydrogen Enrichment System the HydroCell

Following preliminary tests that took place in the first six months of 2009, Greencell Technologies is pleased to report that it has now moved into two advanced phases of testing their proprietary Hydrogen Enrichment System the HydroCell. November 15, 2009.

Get the latest news on hydrogen testing technologies. Keep updated. Avoid online scam. Greencell Technologies can now confirm that a Canadian transport company has agreed to test the Hydrocell on their fleet of vehicles. The class 8 vehicles have been equipped with the Hydrogen Enrichment System since September 2009. The Electronic Control Module (ECM) data that is being collected will be downloaded on November 16th, 2009 and the vehicles will then run without the Hydrocell until the end of November at which point the ECM data will again be downloaded and compared to the earlier results to establish fuel savings.
Following the results of this test the company will then enter into a dual emissions test where vehicles running with the Hydrocell will be compared to vehicles running without to establish emission reductions.
The final results are expected to concur with the tests conducted earlier in the year and will be released in advance of the company’s initial public offering (IPO) which is scheduled to take place in February 2010 on the Frankfurt Exchange in Germany.
GreenCell Technologies is a Canadian company dedicated to designing and bringing to market, technology-based products for the transportation industry. The current product is called the Hydrocell, an on-board, on-demand hydrogen generator engineered specifically for the diesel trucking and haulage industries.

GreenCell Technologies: The GreenCell Thermal Recovery Process

 

Utilising the ITC Thermal Recovery Unit. The GreenCell Thermal Recovery Process - The Thermal Recovery Unit (TRU) is a patented and proprietary process which continuously converts organic materials into non-hazardous, recoverable resources (hot gases, steam and carbon char) within an oxygen-free environment.
Convert waste via pyrolysis to produce energy and bio-char.
What is Thermal Recovery (Pyrolysis)?
Thermal Recovery is the destructive distillation of organic material through the application of intense indirect heat without oxygen. Waste material is converted to methane gases (for use in power generation) and non-hazardous carbon char (a resalable byproduct).
This system is in compliance with US Environmental Protection Agency (EPA) and Clean Air Act guidelines.
Through this process, waste volume may be reduced by as much as 92%. Thermal Recovery can also yield recoverable energy outputs of around 5 BTU for every BTU of input!

Thermal Recovery is NOT Incineration
Unlike traditional incineration systems, the TRU release no harmful by products or emissions. This system has been rated "Best Available Control Technology" (BACT) by regulatory agencies worldwide.

Applications
Marketable applications for the TRU are as diverse as they are beneficial. Such applications include recycling of tires/rubber, municipal solid waste, medical waste, plastics, sewage sludge, industrial wastes and contaminated soils. Recycling of carbon neutral agricultural and biomass wastes, as well as environmentally-sound recovery and development opportunities are possible through the TRU's valuable yields of energy and char.
About the GNUL
The World now realises what the Earth has been trying to say for some time…. It is running out of breath and now is the time to act, before it is too late. The GreenCell GNUL bio-processor - which can be built into the infrastructure that creates our greenhouse gases - turns our worst problem into our greatest asset.
The GNUL replicates lungs that breathe in CO2 and other polluting elements and breathes out sweet oxygen, cleans water for re-use and turns bio-waste into useful by-products. It’s what nature has been doing since life on earth began. A low-energy natural process with measurable results. Now we can all be part of a solution, instead of the problem.

Greencell Technologies – Eco Houses Saves Energy and Money

Eco houses show the best ways to save energy and money. Two eco houses have been created in St Ives and St Neots to encourage homeowners to think green.Greencell technologies articles. Be efficient and read latest developments to avoid online scams, wrong product reviews, fraud, boiler warning and heated water solar panels.


Huntingdonshire District Council purchased the houses and refurbished them to demonstrate energy-saving measures that cut costs and carbon.
These include improved heating, lighting, insulation, appliances and sustainable drought-resistant gardens.
The Green House Project homes are open to the public for one year, after which they will be sold on the open market.
The district council teamed up with the Building Research Establishment to create the homes, which they hoped would convince the public that simple energy-saving measures could make a real difference to household bills and carbon footprints.
The St Ives house will be used as the flagship property for the project.
The 1960s detached house has been extended at the side and the rear, and demonstrates sustainable improvements including a bio-diversity roof, rainwater harvesting and triple glazing.
Meanwhile the house in St Neots, a 1970s semi-detached property, has been refurbished to show simple improvements that can be made for a relatively small financial outlay and applied to most homes.
'Ordinary homes'
Chris Jablonski, environment team leader at the council, said: "We've taken two ordinary homes that, at the time, weren't designed with energy-efficiency in mind, and we've installed a number of measures to make them more airtight and less likely to leak.
"They're now more efficient and in the process will save people money on their bills."
Before the work began the total energy bill for the St Ives property was just over £1,000 per year. That has now been reduced by over £600.
"In carbon terms that's a 75% saving, so we're very pleased with that," Mr Jablonski said.
The property has solar panels and a boiler to capture and deliver heated water. Its bio-diversity roof helps to insulate the property and, in the event of flash flooding, will absorb water and prevent the guttering from overflowing.
Not everything is as complicated, however. Many simple, low-cost measures have also been incorporated, such as draught proofing.
"That costs just a few pounds and you get a very quick pay-back," said MrJablonski.
"This project is all about inspiring people to take small steps in the right direction."
Sustainable gardens
Award-winning Cambridgeshire gardener Marney Hall designed the sustainable gardens at the front and rear of the St Ives property.
She was given a brief to create a bio-diverse space incorporating a wild meadow area, pond, woodland, hedgerows and a vegetable patch.
There are also butterfly borders and flowers that produce nectar for bees. Shelter is also provided for wildlife with bumble bee boxes and hedgehog homes hidden within the shrubbery.
Open days
MrJablonski said that an initial market valuation indicated that the two Green Houses were now worth substantially more than the council had paid for them, as a result of the improvements that had been made.
The Green Houses were officially opened on 29 October 2010 and will be open to the public for one year, from Saturday 6 November.
Entry is free and Huntingdonshire District Council plans to run a number of events throughout the year during which visitors can learn more about making their own homes more energy-efficient.
Details will be posted on The Green House Project website.



Dienstag, 13. Dezember 2011

Greencell Technologies – The Issues

For years scientists have been experimenting with bacteria in an effort to solve the dual problems of global warming and renewable energy, a result of the use of fossil fuels, and the need to develop alternative fuel supplies.


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Algae in their many forms already produce up to 80% of the world’s oxygen through the process of sequestration of CO2 from the atmosphere. This is an established and well-known part of the eco-system. Concurrently, the biofuel community has always had the expectation that biofuels would one day play a significant role in our energy future. There has been much scientific research that leads in this direction. The major problems encountered, ones not hitherto overcome, are: to exploit the known science, vast tracts of land or sea have had to be employed; and the algae employed have typically simply died before the end of the process.

In summary, the processes employed to date have been wasteful in both resources and space, and inefficient.

GreenCell has invented and patented a process that overcomes these problems: the process is compact, efficient and measurable.


Greencell Technologies – The Science. Between 1978 and 1996, the US Department of Energy funded research into technologies that could have significant impacts on the consumption of fossil fuels. The focus of this research became the Aquatic Species Program, which investigated renewable fuel production (bio-diesel) from high-oil algae species, fed by the waste CO2 from coal-fired power plants. Researchers whittled down over 3,000 strains of micro-organisms into the most productive 300, and constructed 1000 sq. meter test ponds outside of Roswell, NM.

The ponds were set up as sort of algae ‘race-tracks’, where algae were circulated around shallow, oval-shaped ponds as carbon dioxide bubbled through the mixture. Results were successful and in some ways encouraging, but the program was abandoned after almost two decades, as a result of budget constraints and a preference for allocating resources to researching ethanol as a substitute for low cost fossil fuels.

GreenCell develops the GNUL Bio Processor
GreenCell Research Pty Ltd has now taken these ideas to the next level. Utilizing the intellectual property of Ian Wright, GreenCell Research Pty Ltd constructed a number of bio-processors at Yatala, Queensland to prove the concept. Scientists from the Atmospheric Research Facility at CSIRO, Australia’s national science agency, provided advice on algae selection. To minimize the use of land and water resources, a proprietary bio-processor was created to grow the algae. Invoplas Pty Ltd, a plastics R & D company, built the processors.

The final bio-processor has been named the GNUL - “lung” in reverse - breathing in CO2 and breathing out O2.


About the GNUL

The World now realises what the Earth has been trying to say for some time…. It is running out of breath and now is the time to act, before it is too late. The GreenCell GNUL bio-processor - which can be built into the infrastructure that creates our greenhouse gases - turns our worst problem into our greatest asset. The GNUL replicates lungs that breathe in CO2 and other polluting elements and breathes out sweet oxygen, cleans water for re-use and turns bio-waste into useful by-products. It’s what nature has been doing since life on earth began. A low-energy natural process with measurable results. Now we can all be part of a solution, instead of the problem.

Greencell Technologies – The GNUL Process

Emulating nature, algae are grown and are periodically harvested from the bio-processor; mature algae are dislodged and collected while immature algae cling to a membrane and continue to grow. Light is collected and distributed via vertical rods centred in the growth membranes.

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The perfect discrete environment for controlled photosynthesis.
Oil extracted from mature algae can be converted to biofuels using well-established technologies. Thus a double benefit is obtained from a virtuous circle: keeping CO2 from entering the atmosphere, and producing renewable products that will reduce the need for fossil fuels.
The GNUL bio-processors contain specially-selected species of micro-algae, suspended in water and nutrients; this provides for optimal growth. Fresh, salt, artesian or recycled water can be used in the process, as can poor quality water. A stream of gas is drawn from the exhaust stack by a blower and passed through the bioreactor where the algae, illuminated by synthetic sunlight, consume the CO2 component by photosynthesis.
Algae can also break down nitrogen and sulphur-oxide pollutants. To achieve this, the greater portion of the algae is periodically drawn off and put through a ‘dewatering’ process; this concentrates the algae so as to finally yield a solid algal cake, suitable for oil extraction and other processing. Most of the water (95%) is returned to the bio-processor.
The entire process has a very low energy requirement.

8 Unique Advantages of GreenCell’s Technology

A full-size plant built around a five layer stack of Bellows GNULs is expected to be capable of capturing 5 tonnes of CO2 per square metre of floor area each year.
The GreenCell GNULs use a two-stage process to maximise input and output: the first stage creates “sporadic water” in the Bellows GNULs and the second stage grows mature algae cells in the FlatPak GNULs.
A GreenCell GNUL plant, as a fully closed system, can operate continuously 24/7, unaffected by environmental conditions outside the plant.
The system used by GreenCell does not require prior scrubbing of nitrogen oxides from the input emissions.
The inexpensive nature of the materials used, the small land footprint, and the valuable by-products produced, mean that the installation of a GreenCell GNUL plant could be expected to pay for itself within a few years.
The carbon capture efficiency of the closed system is continuously and accurately measurable by gas content at the input and output points of the plant.
The GNUL lighting system can be tailored to individual algae species requirements.
In extreme environments, the GNUL system can be moved underground, unlike open carbon capture systems.

About the GNUL

The World now realizes what the Earth has been trying to say for some time…. It is running out of breath and now is the time to act, before it is too late. The GreenCell GNUL bio-processor - which can be built into the infrastructure that creates our greenhouse gases - turns our worst problem into our greatest asset. The GNUL replicates lungs that breathe in CO2 and other polluting elements and breathes out sweet oxygen, cleans water for re-use and turns bio-waste into useful by-products. It’s what nature has been doing since life on earth began. A low-energy natural process with measurable results. Now we can all be part of a solution, instead of the problem.

Greencell Other Technologies

GreenCell is committed to bio-sequestration technologies and to the development and roll out of world’s best bio-remediation products and clean energy generation advances. We are selecting technologies that truly fit into the "virtuous circle" credo and have minimal non-green outputs.


Article blog by Internet fraud watch on additional reading about Greencell Other Technologies. Avoid getting taken by Internet scams.

These technologies include the patented "GreenCell Clear" being launched in Europe, China and Australasia through local offices. A natural and safe L Plantarum Bacteria for use in organic waste management and freshwater treatment, this product is sold under an agreement with GreenCell in these regions.

GreenCell is also exploring gasification technologies which when coupled with the GNULs will provide clean and locally based power generation. Gasification is a good match with the GNUL modular designs and allows for conversion of community and industrial bio-based wastes into energy with the CO2 being reused as fuel.

Other technologies currently being evaluated include methane digestion and hydrocarbon bio-remediation.
GreenCell is committed to continuing to partner in the development of new green technology
The Gnul Process: other uses of the GNUL. The GNUL technology opens the door to multiple applications.
Algae types can handle most types of water and industrial waste.
We will find the GNUL designed into the infrastructure of tomorrow’s buildings.
GreenCell has completed preliminary trials on its methane digester design and has already had interest from commercial piggeries.
Further research with stand alone diesel motors has shown that the GNUL design is also effective in the elimination of oxides from the exhaust of stationary motors as well as lowering CO2 emissions.
GreenCell is also confident that the GNUL will be highly effective in the treatment of polluted water - utilizing algae in the same way as conventional methods but in a controlled and compact space. Use of the GNUL in aquaculture should reduce the blooms of red and blue/green algae and improve the growing conditions considerably.
GNULS are manufactured from recycled, everyday plastics and are specialty moulded using our exclusive patented process.
The same carbon neutral manufacturing process produces very low cost water tanks and methane digesters, which are they, recyclable.
These are used as component and ancillary parts of the whole system.
However they are stand-alone items in themselves as they can be “blown” to previously unachievable dimensions.
Metering is via an EPA standard environmental gas analyser.
GreenCell will continue to explore the potential of algae and bacteria in its role as environmental cleanser and is committed to developing the best bio-processor for each individual application.
About the GNUL

The World now realises what the Earth has been trying to say for some time…. It is running out of breath and now is the time to act, before it is too late. The GreenCell GNUL bio-processor - which can be built into the infrastructure that creates our greenhouse gases - turns our worst problem into our greatest asset. The GNUL replicates lungs that breathe in CO2 and other polluting elements and breathes out sweet oxygen, cleans water for re-use and turns bio-waste into useful by-products. It’s what nature has been doing since life on earth began. A low-energy natural process with measurable results. Now we can all be part of a solution, instead of the problem.

Dienstag, 6. Dezember 2011

GreenCell Technologies GT5 Augments Sales Team Targeting North American Logistics Firms

February 1, 2011

(Aurora) – After concluding an extensive search across Canada, GreenCell Technologies Inc. (Frankfurt Open Market: GT5) proudly announced today that Bob Fitzgerald has been appointed manager of their expanding sales team and will join the Ontario-based producer of proprietary hydrogen injection fuel systems, branded HydroCell™ and HydroCell Max™, immediately.
Fitzgerald will be based at GreenCell’s head office in Aurora, alongside other executives and personnel.  He will oversee all channel sales and report directly to GreenCell CEO K. Allen Etherington, working closely with the recently appointed marketing manager, Ken Mair.
“Bob Fitzgerald brings over 20 years’ experience to our growing organization,” says GreenCell CEO K. Allen Etherington, “while leading companies to success in highly competitive markets.  He is obviously a results oriented leader with a focus on meeting and exceeding customers’ expectations, creating new revenue streams and overachieving sales targets!  We look forward to and are very excited that Bob will be leading our sales efforts into the transportation management vertical.”
Fitzgerald was previously with Research In Motion (RIM), holding the title Global Strategic Account Manager and was responsible for managing direct relationships with North American Fortune 500 customers in the Financial, Energy, Retail and Logistics sectors.  He was primarily responsible for broadening and widening the use of BlackBerry™ devices and solutions within these organizations by mobilizing business process applications.
Prior to joining GreenCell, Fitzgerald spent two years with T4G, an end-to-end technology services company, where he was responsible for New Business Development across North America offering custom application development, infrastructure and security support, user experience and usability, supporting and enhancing content, and Business Intelligent applications as well as analytics.
GreenCell Technologies Inc. is a Canadian company dedicated to designing and bringing to market technology-based products for the transportation and energy industries.