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![]() iPod Video 5th 55 Gen 18 Toshiba MK2431GAH 240GB CE ZIF Hard Drive New US $142.20
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Progress Report on Carbon Dioxide Capture and Storage
Once again we in the United States have been reprimanded by the President Bush to be dependent on foreign oil. President Bush spoke March 5, 2008 Washington International Renewable Conference, a meeting of officials global energy. He told participants, "we've got to get out of oil, America must change its habits. "He continued saying, "It should be obvious to all, demand has outstripped supply, which makes prices go up."
He's right, we are dependent oil. We complain about gas and electricity prices, while that eighty five percent of us believe that global warming is real and caused by humans. We have not broken the chains to drive our cars or heat our homes so energy inefficient. This is mainly because we do not offer affordable alternative energy to break these addictions. The major challenge President Bush on ethanol, but now we see the escalation in food prices as corn is our fuel production, and now he is expected to be as contaminate the gasoline. Its saving grace is that it keeps the money of the United States.
President Bush can hardly take credit for the promotion of renewable energies, when he held up incentives such as tax credits for production and refuses to cap emissions carbon dioxide. President Bush reiterated his call for a worldwide cap on carbon dioxide, the main gas behind global warming, but said that the U.S. should not act until nations like China and India do too. These are the actions of this kind that make us wonder if we will never break the chains of addiction.
We are currently a second-tier player in the adoption of alternative energy, and we need government incentives for us to go upstairs. We have a new administration in January 2009 that will, hopefully, be more supportive of alternative energies. It is likely that their first steps will be a "cap and tax" bill, but should include incentives to help solar, wind and geothermal industries. It will take time for alternative energy gaining ground. This means that we will be dependent on coal as fuel for power generation much longer than we would like.
We will need to stop or reduce pollution by carbon dioxide if we use coal for a longer period in which oil becomes more scarce and unaffordable affordable. This brings us to the question of the will of the highly touted carbon capture and storage (CCS). The principle seems very well to foster and maintain a quality of the life we are accustomed and desire.
An overview of CCS is very simple. Carbon dioxide is captured from fossil fuels before burning or fireplace. The CO2 is transported through pipes or may be converted into a solid rather than production. The captured gas is then compressed and buried in a shell to prevent his escape into the atmosphere.
CO2 Capture
Post-combustion capture: The flue gas from a factory production of fossil fuels can be cleaned to remove the CO2 captured and transported to the tank for.
Pre-combustion capture: Fossil fuel is partially oxidized before combustion. The resulting CO2 can be captured in a relatively pure exhaust stream.
Oxy-combustion field: the fuel is burned in oxygen instead of air. To limit the flame temperature resulting from common levels during the conventional combustion, cooled flue gas is recalculated and injected into the combustion chamber. The flue gas is mainly composed of water vapor and carbon dioxide, which the latter is condensed by the cold. The result is a stream of almost pure carbon dioxide that can be transported to the sequestration site and stored.
These capture technologies are well understood and examples of their use can be done today. The cost of these techniques, however, will be high. There will be additional capital costs to install the technology. According capture technology, the cost to power capture techniques can add 10 to 40% additional energy costs. The cost of energy could be twice what we know today.
Conveyance of CO2 gas
This technology is, quite simply, the pipes that carry gas CO2 from the plant in the reservoir for storage.
The reservoir
Here we have an abundance of proposals, but none has been proven in demonstration large scale. The proposals range from caves in the earth to the ocean. The proposal is to compress the CO2 gas, then store it as a gas or reacting in a carbonaceous mineral such as limestone for storage. It is estimated that this procedure will add another 30 to 40% on energy costs In addition to capturing the gas.
Storage projects in operation
There are several projects for CO2 storage in the operation. Sleeper is the oldest project (1996) and is located in the North Sea, where carbon dioxide from Norway's StatoilHydro strips from natural gas with amine solvents and has this carbon dioxide in deep saline aquifer. Since 1996, Sleipner has stored about one million tonnes of CO2 per year. A second project in the stores Snohvit gas field 700,000 tonnes per year.
The Weyburn project is currently before the world's largest carbon storage. Started in 2000, Weyburn is located on an oil field discovered in 1954 in southern Canada. The CO2 for this project is captured at the plant Great Plains coal gasification to Beulah, North Dakota, which produces methane from coal for over 30 years. The first phase completed in 2004 and demonstrated that CO2 can be stored underground at the site safely and indefinitely.
Future Projects
A major Canadian initiative called the Integrated CO2 Network (ICO2N) is a proposed system for the capture, transport and storage of carbon dioxide (CO2). ICO2N is an alliance of the 15 largest industrial companies and the Canadian government Canada. The Alliance has been in existence for two years.
The alliance ICO2N stated objective of being the "world leader in implementation of carbon dioxide capture and storage. "Its purpose is to remove 60% of CO2 emissions in Alberta and also to improve oil recovery of mature oilfields. The first phase of the operation is planned for 2012-2015.
In October 2007, the Office Economic Geology at the University of Texas at Austin received a 10-year, $ 38 million subcontract to conduct the first intensive supervision, long-term project in the United States is studying the feasibility of injecting large amounts of CO2 underground storage. The project is a research program of the Southeast Regional Carbon Sequestration Partnership (SECARB), funded by the National Laboratory for Energy Technology U.S. Department of Energy (DOE). The partnership SECARB demonstrate CO2 injection rate and storage capacity in the Tuscaloosa-Woodbine geologic system which extends from Texas to Florida. The region has the potential to store more than 200 billion tonnes] CO2. Physical work started in late 2007.
FutureGen is a U.S. government project announced by President Bush in 2003 to build a power plant near zero-emissions coal to produce hydrogen and electricity while using carbon capture and storage. In December 2007, Mattoon Township, Coles County, Illinois was chosen as the site for the plant among the four finalists in Illinois and Texas. Unfortunately, 29 January 2008The Department of Energy announced it was withdrawing funding from FutureGen, which terminated the project. The Department of Energy said that the event has been canceled because costs have increased to 1.5 billion dollars and he did not believe in a demonstration of the technology is now required. DOE has requested for existing power to submit proposals to be fitted for the CSC to be operational within the period 2015-2016.
Research Carbon Dioxide Capture
The capture of carbon dioxide is the most expensive technology and receives the focus of researchers worldwide. researcher at UCLA, Omar Yaghti, developed ZIF materials that can absorb 80 times their weight in carbon dioxide. Following absorption, the material can be unpacked and CO2 released.
Research at the University of Texas at Austin, led by Professor Gary Rochelle, has developed a method chemicals that absorb carbon dioxide and release when the boiling mixture. There are many other examples of these new technologies in research to capture carbon dioxide and of course many others to be demonstrated.
Summary
Carbon dioxide capture and storage technology is well demonstrated which is ready for implementation on a large scale. The cost of purifying exhaust gas or fuel burned before and compression Gs CO2 will raise energy costs 40 to 60% on technology and brushed storged CO2. There are dozens of researchers working to develop materials that can absorb CO2 from the chimney and avoid the energy cost of treatment. These developments are at least seven to ten years of absence. We had the better to encourage this development, because it will be 10 to 15 years after their implementation they are started.
About the Author
I have a BS and MS in Metallurgical Engineering. Thirty six years spent in the development of semiconductors. Business experience in start up business plan. Currently ,an oyster farmer.
Blog: http:environmentalhelp.typepad.com
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ZIF CE 1.8 Inch to Micro IDE 1.8 Inch Adapter Converter $8.49 Description:With this ZIF to Micro IDE Adapter, 1.8" ZIF/CE hard drive can be detected and used as a regular 1.8" micro IDE hard drive.Allows you to connect a 1.8" ZIF/CE hard drive to a 50 Pin IDE socket.This ZIF to Micro IDE Converter is ideal for Hitachi & Toshiba HDD.One end is ZIF/CE connector and another end is micro IDE 50-pin female connector.This ZIF Micro IDE Adapter is recommended to be used for backups or direct data transfers.Bootable, supports DOS, Windows, Linux, Mac, etc.No driver required.Dimension: ~4.7(L) x 5(W) x 0.4(H)cmWeight: 4gPackage content:1 x ZIF to 1.8 Inch Micro IDE Adapter2 x FFC cables |
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1.8' ZIF CE to 1.8' Micro IDE HDD Adapter Converter $8.49 Description:With this ZIF to IDE HDD Converter, 1.8" ZIF / CE hard drive can be detected and used as a regular 1.8" micro IDE hard drive.Allows you to connect a 1.8" ZIF / CE hard drive to a 50 Pin IDE socket.This ZIF IDE Adapter is ideal for Hitachi & Toshiba HDD.One end is ZIF/CE connector and another end is micro IDE 50-pin female connector.Bootable, the ZIF IDE Converter supports DOS / Windows / Linux / Mac, etc.No driver required.Dimension: ~3.6(L) x 2.4(W) x 0.4(H)cmWeight: 4gPackage Included:1 x ZIF to Micro IDE HDD Adapter2 x FFC Cables |
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Compact Flash CF to 1.8 ZIF CE Adapter for iPod Classic $3.89 Compatible with CF Type I, Type II and Micro-drive. One end is 1.8" ZIF connector. One end is standard CF socket |
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ZIF CE or 50 Pin Micro IDE to Mini USB Adapter Converter $10.49 Description:With this CE to Mini USB Adapter, your 1.8" ZIF / CE or 1.8" micro IDE hard drive can be detected and connected to a USB port of PC or Mac.It allows you to connect a 1.8" ZIF / CE or 1.8" mirco IDE hard drive to PC or Mac by USB cable (not included).This ZIF to Mini USB Adapter is ideal for 1.8" Hitachi & Toshiba HDD.One end is ZIF / CE and micro IDE 50 Pin male connectors and another end is mini USB 5 Pin female connector.Micro IDE to Mini USB Converter with LED indicator.No driver required.PCB Dimension: ~5.4(L) x 2.2(W)cmWeight: 9gNote: Do not support ZIF and Mirco IDE at the same time.Package Included:1 x 1.8" ZIF / 1.8" Micro IDE to Mini USB Adapter1 x FFC cable for Hitachi.1 x FFC cable for Toshiba. |
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CF/ZIF Convertor Circuit Board with ZIF Cables $6.8 CF/ZIF Convertor Circuit Board with ZIF Cables |
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Startech 3.5" IDE To 1.8" ZIF / LIF HDD Adapter - Storage Bay Adapter. Each $31.21 Manufacturer: Startech Computer Products. Each. The ZIF2IDE35 IDE to 1.8" ZIF/LIF Hard Drive Adapter allows you to convert a 1.8" Toshiba or Hitachi ZIF/LIF hard drive, for connection to a host computer using a 40-pin IDE port (typically used by 3.5" IDE |
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ZIF CE 1.8 to 1.8 Micro IDE 50-pin HDD Converter Adapter Adaptor $5.49 Description:ZIF/ CE 1.8" to 1.8" 50-pin IDE HDD Adapter Adaptor Converter.1.8" ZIF/CE hard drive can be detected and used as a regular 1.8" micro IDE hard drive.Allows you to connect a 1.8" ZIF/CE hard drive to a 50 Pin IDE socket.1.8" IDE HDD Adapter is ideal for Hitachi & Toshiba HDD.One end is ZIF/CE connector and another end is micro IDE 50-pin female connector.It is recommended to be used for backups or direct data transfers.CE to Micro IDE Adapter is bootable, supports DOS / Windows / Linux / Mac, etc.No driver required.2pcs of FFC cables available for Hitachi & Toshiba ZIF 1.8" HDD.Size: L3.6 x W2.5 x H0.3cmWeight: 4.0gPackage content:1 X 1.8" ZIF to 1.8" IDE Adapter2 X FFC cables |
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ZIF CE 1.8' to IDE 3.5' 40 Pin Adapter Converter for Hitachi Toshiba HDD $5.49 Description:1.8" ZIF/CE hard drive can be detected and used as a regular 3.5" IDE hard drive.Allows you to connect a 1.8" ZIF/CE hard drive to a 40 Pin IDE cable with this HDD ZIF to 3.5" IDE Adapter.ZIF to 3.5" IDE Adapter is ideal for Hitachi & Toshiba HDD.One end is ZIF/CE connector and another end is IDE 40-pin male connector.4-pin floppy drive power connector.2 LED indicators available.Master / Slave jumper selection available.Bootable CE to 3.5" IDE Adapter supports DOS / Windows / Linux / Mac...No driver required. It is recommended to be used for backups or direct data transfers.Note: the colour of two LED lights may vary from the photo.This is a non-OEM item.Size: L8.9 x W3.2 x H0.8cmWeight: 16.4gPackage content:1 x 1.8" CE to 3.5" IDE Adapter |
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Zif2Cf - Startech.Com 1.8In Zif Lif To Single Compact Flash Ssd Adapter Card - Microdrive $25.64 this Compact Flash (cf) to Zif/lif Adapter Offers a Simple, Do-it-yourself Solid State Storage Solution That Can be Used in Place of Small Form Factor 1.8in Zif/lif Hard Drives. This Innovative Storage Solution Lets You Enjoy of The Benefits of Solid State Storage, Using a Standard Compact Flash Card to Replace a Zif/lif Hard Drive, Including Silent Operation And Little to no Operating Heat Compared to Conventional Hard Drives. the Adapter Features a Small Form Factor That Allows You to Take Advantage of The Installed Flash Card's Compact Design - Saving Space While Providing a Suitable Replacement Drive For Many Portable Devices, Including The Apple Ipod, And Small Notebooks Using 1.8in Hard Drives. [2198821] UPC: 065030828024 UNSPC: 43201815 5.5L x 7.6W x 1H 0.15 LB 0.02 Cubes |
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