Friday, December 30, 2011

Sunday, December 25, 2011

Sunbeam Convertible Iron Plus Steamer, GCSBRS-102

!±8± Sunbeam Convertible Iron Plus Steamer, GCSBRS-102

Brand : Sunbeam | Rate : | Price : $58.44
Post Date : Dec 25, 2011 22:50:37 | Usually ships in 24 hours


  • Two powerful solutions in one--high-performance iron detaches to become a handheld steamer
  • Lightweight handheld steamer with electrical pump provides continuous steam to smoothe away wrinkles
  • 5 fabric-specific heat settings; 3 variable settings for clothes, drapes, tablecloths, bedding and more
  • Shot of Steam Button provides extra burst of steam for stubborn wrinkles when pressing or steaming
  • 360-degree tangle-free swivel cord; anti-drip system; includes a fabric/lint brush accessory

More Specification..!!

Sunbeam Convertible Iron Plus Steamer, GCSBRS-102

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Tuesday, December 20, 2011

Steam and Super Heated Steam - sirHOAX

Superheated steam, steam heated to a temperature higher than the boiling point corresponding to its pressure. It can not exist in contact with water, nor contain water, and resembles a perfect gas; called also surcharged steam, anhydrous steam, and steam gas. Steam and Superheated Steam This demonstration illustrates the characteristics of steam under two different temperature conditions. Initially, water is simply boiled in a flask and allowed to pass through a coil of copper tubing. When a beaker is brought near the end of the tubing, the water condenses to liquid in the beaker. If a match is placed into the steam coming out of the copper tube, nothing happens. If a piece of steel wool is placed into the stream there is no observable change in the steel wool. Two burners are ignited below the copper coil. These burners heat the steam to a very high temperature. The steam still condenses to liquid water in a beaker. A match placed into the superheated steam ignites. When steel wool is placed in the superheated steam, the steel wool glows brightly and reacts with the steam. Reaction with superheated steam can cause metal pipes in electric power plants to corrode and wear out. (When very hot steam is used, the steam will react readily with iron and cause the tubes and other components of the power plant to form iron oxide. This places an upper limit on the temperature of the steam, which also limits the efficiency of the power plant.) In an electric power generating plant ...

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Wednesday, December 14, 2011

Which Are the Best Steam Generator Irons?

!±8± Which Are the Best Steam Generator Irons?

Steam generator irons are not a must-have in every house. For casual ironing that services few people, a traditional iron might do the job as well, considering that professional results are not needed in that case, although many people want to have these extra features anyway, they will purchase one.

But generally, that main target market for these products are families with a high ironing load, with a heavily-loaded household and many people living in the house. Using steam generator irons can reduce the time consumption of the ironing task and result in a better looking fabric in the end of the process.

Before we touch the disadvantages and advantages steam generator irons have, let's have a look at the basic differences between them and traditional irons. The first noticeable difference is the different design that steam irons have. Steam irons are built from a combination of a plastic water container that holds the water, which later, using the second part of the iron called the steam generator, will come out of the holes at the bottom of the iron in the form of steam.

Reliable steam generator irons hold the water in a built-in device for reserving and maintaining it better, rather than storing it in a separate water container which is the common way in the more commercial ones.

The first thing to understand when beginning to compare steam generator irons, is the way that these irons work. The benefit from using steam irons is that using the steam, which causes heat and moisture to penetrate deep into the cloth, therefor making it very much more flexible and easier for removing wrinkles. This process actually makes it much easier to iron your clothes, and a more fun task to accomplish.

Tap water isn't always the best choice to fill your iron with. If you purchase a steam generator iron with a sensitive surface - materials that come out as a result of heating tap water may cause damage to your product. In addition, keeping your steam generator iron in the best condition is amazingly simple. Just rinse the reservoir with fresh water every time you complete 10 full uses of the product. This way you can maintain it and keep your investment returning value for a longer period of time.

So, let's see where they do better job and in which issues they have advantages
They provide better performance. using them will shorten your ironing time and make your housekeeping life easier Increased quality of fabric and ultimately better looking clothing of you and your family Lightweight. the steam irons are usually lighter than the traditional ones and therefore making it easier to use Anti-scale technology. most of the steam generator irons include a mechanism which prevents limescale collection in the bottom of the ironing surface.

Another useful tip that you might want to remember is, when buying a steam generator iron, look for a thermostat or any other button that you will be able to switch off if you want to use it as a dry iron. This option is very recommended and useful in many cases.

The best brands are still a puzzle to lots of people. there isn't a scientific fact that could prove one brand to be better than another. Anyways, the Tefal steam generator irons are known to be high-priced but at the same time priceless, while other people actually prefer Rowenta of Morphy Richards.

Important: Do not plug your steam iron into another high wattage-consuming device in the same plug, or you'll be risking damaging your power circuits. Popping a circuit breaker is very probable in such a case.


Which Are the Best Steam Generator Irons?

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Saturday, December 10, 2011

SINGER SteamWorks Pro Garment Steamer

!±8±SINGER SteamWorks Pro Garment Steamer

Brand : Singer
Rate :
Price : $97.59
Post Date : Dec 10, 2011 13:41:31
Usually ships in 24 hours



SINGER's SteamWorks Pro delivers 90 minutes of steady, gentle steam to de-wrinkle and freshen a variety of fabrics from silk to wool in just 45 seconds. A telescoping pole with a versatile 360-degree rotating hanger system and steaming accessories will have you using this every day. A crease clip, fabric brush, handheld steaming board (for shirt pockets) and protective glove are all included to help with getting that perfect finish for your wardrobe. Curtains and upholstery can be freshened up quickly. Storage is simple with the collapsible hanger and pole. The hose is insulated and fabric covered. The steamer weighs 11 pounds (empty), the hose is 60 inches long, and the power cord is 94 inches. A 2 year limited warranty is included.

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Wednesday, December 7, 2011

Molybdenum - Vital for Nuclear Reactors

!±8± Molybdenum - Vital for Nuclear Reactors

Molybdenum plays a more vital role in the global nuclear renaissance than you might suspect. Without the silvery white metal, the world's energy infrastructure would somewhat suffer. But, nuclear power plants would be set back at least two decades. The new high performance stainless steels (HPSS) contain as much as 7.5 percent molybdenum and can add more than three times the life to the world's aging nuclear fleet condenser tubes.

During the early construction of nuclear power plants, steam condensers relied upon copper base alloys - brass and copper nickel - for heat transfer capabilities. These alloys have high coefficients of thermal conductivity required in steam generation to power nuclear reactor turbines. But copper-alloyed tubes were being replaced too quickly - with an average life of eight years - because of sulphide pitting. Hardest hit were those reactors using polluted seawater to cool their reactors.

Over the past 30 years ago, nuclear utilities slowly began turning to the super austenitic stainless steels as one way to make their nuclear reactors last longer. The addition of molybdenum, initially starting with percentage of less than four percent, helped increase the thermal conductivity lacking in nickel, iron or steel. At nuclear stations which replaced the copper alloys with HPSS condenser tubes, 57 percent rated the thermal performance good and all but one rated it normal. Molybdenum had helped overcome the thermal hurdle.

A large number of the 190 nuclear reactors, which now utilize HPSS condenser tubes, reported an average life in excess of 18 years. The longest stainless steel condenser installation has remained in service more than 26 years, according to a study done several years ago. According to a report published in 2000, more than 100 million feet of super-alloy stainless steel tubes have replaced the older, copper-alloy tubing.

Condensers are large heat exchangers used in nuclear power plants. Condensers have thousands of tubes horizontally mounted to condense and recover the steam passing through turbines. Each low-pressure turbine generally has a condenser, which also maintains a vacuum to optimize the turbine's efficiency.

Water fouling deposits were cited as a major problem at many reactors, especially with condenser tubes where seawater or high-chloride brackish water was the coolant. Pitting corrosion, tube sheet crevice corrosion and galvanic corrosion put the tubes at risk for leakage. Plugging, mud, or detritus accumulating in condenser tubes reduce a power plant's efficiency.

Utilities use cleaning systems with small, abrasive sponge-like balls to keep the tubes clean and test for tube defectives with probing devices. Tube thinning and corrosion create the opportunity for tube leakage. This can not be tolerated because chemicals such as sodium and chlorides find their way into the reactor vessel or steam generator.

Upgrading the steam condenser tubing to stainless steel also plays a vital role in the 'power uprate' program utilities have used to increase generating capacity for existing reactors as we recently discussed. The more advanced uprate program could add up to 20-percent capacity to existing U.S. nuclear reactors.

Different Molybdenum Alloys

There are several HPSS manufacturers for nuclear reactor condensers. The most prominent in the nuclear sector include Pennsylvania-based ATI Allegheny Ludlum and Finland's Outokumpu. Each offers austenitic steels with chromium and nickel composition of between 20 and 25 percent for each alloy and a range of 6.2 to 7.5 percent molybdenum.

In a paper presented by Jan Olsson of Avesta Sheffield (before the company was acquired by Outokumpu), he highlighted the results of tests performed on the new super-austenitic stainless steel, 654 SMO®. Metals comprising this brand include 25-percent chromium, 22-percent nickel and 7.5-percent molybdenum. To increase pitting resistance, the manufacturers added up to 0.5-percent nitrogen and three-percent manganese (for make the nitrogen more soluble).

As with all pioneering developments - and remember that R & D breakthroughs have taken place over a two-decade-plus period, manufacturers have re-designed their metallurgical composition to find the most encouraging percentages of nickel, chromium, molybdenum and nitrogen. The earlier stainless steels relied on higher nickel content and lesser percentages of chromium and molybdenum.

At first, conventional austenitic grades, such as 316L, or high chromium-ferritic grades, were utilized. Pitting struck down widespread use of the 316L series and was replaced by higher alloy steels. For example, others, such as the 254 SMO® stainless steel, began aggressively replacing the copper alloy tubes and in some cases the 316L series. The 254 is comprised of 20-percent chromium, 18-percent nickel, 6.2-percent molybdenum and 0.20-percent nitrogen. It has also offered a high level of corrosion resistance at desalination plants without becoming cost-prohibitive.

The most significant breakthrough came after various stainless steels were tested at Scandinavian coastal reactors. In the Avesta paper, the failures of each lesser austenitic grade were checked off. Significant deficiencies included insufficient stress corrosion cracking resistance and resistance to natural seawater. Even titanium tubing was used as an interim measure because it increased total heat transfer by 17 percent, but the metal failed to stand up to high velocity steam and suffered 'water droplet erosion.'

According to the study, "The only alloy fully resistant to all test conditions was 654 SMO®." The results at nuclear power plants in Finland and Sweden, along the Baltic Sea, were astonishing! Four important conclusions about this super alloy were reached after the testing.

o Its corrosion resistance could cope with the hostile environments existing inside condenser tubes of desalination plants and power plants.

o Its corrosion resistance was good enough to cop with many other hostile brine and seawater environments.

o Its erosion resistance was advantageous where it was exposed to high velocity streams.

o There was no concern about its heat transfer characteristics.

Nuclear Consumption of Molybdenum

About 48 nuclear reactors are reportedly scheduled for construction by 2013. It may be possible that up to 100 could be constructed by 2020, depending upon political and financial climates. The largest number proceeding through the proposed, planned or construction phases will be located along coastal areas to service the most populated areas. The greatest numbers of new constructions are expected from China, India, Japan, Russia, South Korea and Japan (and possibly the United States).

Existing reactors along coastal areas in Asian countries presently breaks down as follows: Japan (57), South Korea (26), China and Taiwan (19) and India (11). Because these are the most prone to seawater or brackish corrosion, they are also the likely candidates for upgrading existing condenser tubing to high alloy stainless steel. And their new reactors are likely going to be constructed along their coasts, requiring the super austenitic grades. As an aside, of the previously mentioned 190 nuclear power plants which had replaced their condensers with HPSS, 45 percent used fresh water as coolant. Those plants chose the high alloy steel as a 'fail-safe' measure to prevent interrupted service or a potential reactor incident.

The United Nations estimates that two-thirds of the planet's population will be living with water stress by 2025. Global freshwater scarcity may demand the use of brackish or seawater as nuclear reactor coolant. To prevent the accompanying corrosion, the higher-percentage molybdenum alloy, specifically the 654 SMO®, could emerge as the condenser tubing material of choice. Either the 254 SMO® or the 654 would be utilized in desalination plants required to overcome water shortages in the hardest hit areas: North Africa, the Middle East and West Asia.

Typically, nuclear power plant condenser tubing requires approximately 520,000 feet of stainless steel. According to the International Molybdenum Association (IMOA), larger reactors could utilize up to one million feet of stainless steel. With the higher molybdenum grades found in the super alloys, new nuclear reactors could require tens of thousands of metric tons of molybdenum.

By comparison, nuclear waste containers proposed for the Yucca Mountain nuclear waste repository were forecast to consume about 15,000 metric tons of moly. While this project may or may not proceed as planned to the construction phase, the Nuclear Energy Institute (NEI) has proposed regionalized storage of spent fuel.

Should comparably designed storage canisters be utilized to 'temporarily' contain the nuclear waste, it is likely molybdenum will play a key role. According to the U.S. Government's Energy Citation Database, as published by the Department of Energy's Office of Scientific and Technical Information, "Alloys with combined chromium plus molybdenum contents greater than 30 percent were the most resistant to general and local attack." This was the conclusion reached after corrosion scouring tests were performed on stainless steel and nickel-based alloys to immobilize high-level, radioactive waste.

Another aspect where high-percentage molybdenum stainless steel would double up is with the expansion of nuclear desalination plants. In the past, and in our publication, "Investing in the Great Uranium Bull Market," we have discussed the rise of nuclear desalination across those coastal areas, requiring far more freshwater than can possibly be transported through other means. The World Nuclear Association (WNA) has reported of numerous such desalination projects in progress.

Will The Energy Bull Have Sufficient Moly?

From nearly every energy project - oil, gas, coal and nuclear, and for water, molybdenum demand will continue increasing. Super austenitic grades demand a higher moly content to combat corrosion and provide reliability of service. Of course, there will be substitution in the face of future supply shortfalls. In some instances, there are reports the Russians have substituted vanadium for molybdenum in some of their oil and gas pipelines to conserve on moly consumption. ATI Allegheny Ludlum has argued for the substitution of two-percent manganese for every percent of nickel, but in the lower grade austenitic groups which do not demand the corrosion resistance of energy projects.
While reviewing the anticipated new projects from the molybdenum mining sector, we foresee the high probability of supply inadequacy. Aside from China Moly's Sandaozhuang molybdenum mine, which the company hopes could produce 28,000 tonnes of molybdenum concentrate this year and perhaps grow by another 17 percent the following year, there is a paucity of new molybdenum projects coming fully online before 2009.

Based upon China's voracious appetite for molybdenum - one research firm estimated compounded annual growth rate over the previous five years at 17 percent, whatever excess moly production comes from China Moly's mining efforts could very well be domestically consumed.

Future North American molybdenum producers may need to ramp up their projects to meet the growing demand. During 2006, demand grew above the historical norm of four percent; most of the consumption came from China. This is unlikely to stagnate or decrease, and could interfere with North American and European consumption of molybdenum.

Only one company is scheduled to commence molybdenum mining in 2007, Roca Mines. Because the company is limited to a small-mining permit, anticipated production could not exceed three million pounds. By late 2008, or early 2009, Adanac Molybdenum hopes to commence its start-up efforts to reach eight-figure moly production. Later, Blue Pearl Mining hopes to commence high-grade molybdenum mining at the Davidson deposit in British Columbia. Around this time, the Climax molybdenum mine could re-open and begin production in Colorado. Moly Mines hopes to begin production at the company's Spinifex project. Possibly, before the decade ends, Idaho General might commence operations in Nevada. Perhaps before those 48 nuclear reactors come online, US Energy's Mt. Emmons deposit may be mined in Colorado.

Many of these projects are subject to environmental permitting and/or financing, putting any material amount of forecasted supply in jeopardy. And this comes at a time when some experts believe byproduct molybdenum production at copper mines could be constrained. There are many conditional requirements which do not necessarily guarantee a reliable supply from the new breed of primary moly producers. We have witnessed comparable obstacles in the uranium sector, which has since been accompanied by a hyperbolic price rally in this metal.

There could come a point in the molybdenum sector where the silvery white metal could mimic such a breakout scenario. Nearly three years ago, StockInterview.com featured a forecast of US0/pound uranium. No one believed that prediction at the time. On Friday, TradeTech announced a spot price of US3/pound.

COPYRIGHT© 2007 by StockInterview, Inc. ALL RIGHTS RESERVED.


Molybdenum - Vital for Nuclear Reactors

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Saturday, December 3, 2011

Is a Steam Generator Iron Right For You?

!±8± Is a Steam Generator Iron Right For You?

Ironing can sometimes seem like a never ending chore. For most people it's a necessary evil at best. Listening to music or watching TV whilst you do it can reduce the boredom a little - but it's still a dull and monotonous chore which few enjoy. Any method of cutting the amount of time required for ironing would be gratefully received in most households.

You could send your clothes to the dry cleaners for cleaning and pressing - or even employ a maid. Professional ironing services exist who will collect your freshly washed clothes from your house and return them after ironing them if you wish. However, these are all rather expensive options.

A more realistic option for most people would be to use modern technology to their advantage by using a steam generator iron. Whilst they may, at first glance at least, be fairly similar in appearance to traditional steam irons, they have an entirely different construction - and this provides a number of positive benefits.

Unlike conventional steam irons, steam generator irons have no water in the iron itself. They have a large base unit which serves as both water tank and boiler and the generate much more steam - at a higher pressure - than a standard iron.

A hollow connecting hose feeds the steam from the base unit to the iron and, as it is at high pressure, it penetrates the fabric of the garment being pressed deeply. This makes it easier - and faster - to iron. As there is no water in the iron, it is lighter and easier to handle. The end result is a better quality finished garment and a big reduction in the time spent ironing. Most users report a reduction in ironing time of around about 50%.

When selecting a steam generator iron, be certain to choose one with a suitably high steam pressure. Somewhere between 4.5 and 5.0 bar is good. You will also see the steam output stated as grams of steam per minute (gpm). An output of somewhere between 70 and 120 gpm is advisable.

The capacity of the water tank is a further important consideration. Make sure that you pick one with a suitably sized tank so that you don't need to stop too often to top up the water level. A tank of at least 1.4 litres is desirable.

Other factors that should be considered include the soleplate material, the usability, the inclusion of some type of anti-scale system and the length of the connecting hose between the iron and the base unit.

Steam generator irons do tend to have a slightly higher ticket price than conventional irons. However, considering that they can cut the time you spend ironing in half - whilst simultaneously giving a better quality end result - they really do represent excellent value for money.


Is a Steam Generator Iron Right For You?

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Wednesday, November 30, 2011

Rowenta DG580 Steam Generator Boiler Iron

!±8± Rowenta DG580 Steam Generator Boiler Iron


Rate : | Price : | Post Date : Nov 30, 2011 07:25:53
N/A

Rowenta DG580 Steam Generator Boiler Iron is a complete, professional ironing system for the home. Powerful constant steam output at the touch of a button for professional ironing results. Steam output levels can be adjusted according to fabric types: powerful steam for thick, heavy fabrics or light steam for delicate fabrics. Oversized Laser soleplate for high performance glide has excellent scratch resistant and non-stick properties. Tank holds 33oz. of water which allows for up to 1.5 hours of continuos steam ironing. Professional iron with comfortable soft-touchhandle for ergonomic use.

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Saturday, November 26, 2011

DeLonghi Stiromeglio Compact PRO 300 Ironing System with Pressurized Boiler

!±8± DeLonghi Stiromeglio Compact PRO 300 Ironing System with Pressurized Boiler

Brand : DeLonghi | Rate : | Price : $151.43
Post Date : Nov 27, 2011 00:20:52 | Usually ships in 24 hours

Enjoy stress-free ironing at its best with the De'Longhi Steam Station. It features an easy to use complete control panel with separate switches for boiler and iron with indicator lights. Included is a steam ready indicator light and steam regulator to adjust emission to different fabrics. The iron station is comfortable to use with the adjustable steam cord, which can accommodate left and right handed users and professional non-slip cork handle. You can enjoy carefree ironing with the patented double boiler feature; a stainless steel upper and super alloy bottom, allowing tap water to be used, without the calcification buildup. This iron station is perfect if you have a lot to iron at one time, the 1 liter boiler allows for approximately 1.5 hours of ironing time, so there is no need to continuously refill the water. You are sure to achieve professional results with the 3.5 bar pressure and heavy gauge satin-polished aluminum soleplate. If you need to iron without steam there are separate switches for the boiler and iron. You can enjoy easy steaming with the continuous steam lock button on handle and steam trigger. You can also steam drapes with ease with the vertical steam emission. Additional features include an anti-slip iron rest base and safety cap.

  • Easy to use complete control panel with separate switches for boiler and iron with indicator lights.
  • Comfortable and adjustable steam cord to accommodate left and right handed users. Steam ready indicator light and regulator to adjust emission
  • Enjoy carefree ironing with the patented double boiler feature including a stainless steel upper and super alloy bottom
  • Achieve more efficient ironing with the 1 liter boiler for approximately 1.5 hours of ironing time
  • Guaranteed professional results with the 3.5 bar pressure and heavy gauge satin-polished aluminum soleplate

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Wednesday, November 23, 2011

Jiffy Steamer J-2000 Residential Series 1300-Watt Garment Steamer Overview

With Jiffy Steamer J-2000, you can steam is the gentlest, safest, most efficient way to remove wrinkles (amzn.to It has the ability not only for steaming five times faster than ironing, it will not also scorch even the most delicate fabrics. Safe for use on clothing, wallpaper, drapes, furniture and most any fabric to remove wrinkles quickly and easily. It has compact, lightweight unit moves easily on casters, utilizes a 120 volt current, and has an unbreakable low profile easy to handle one gallon water reservoir.

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Sunday, November 20, 2011

David Wenbert PES Interview: Water Fuel Cell, 4 of 7

A fascinating insight to the secrets of Stan Meyer's patents, and the principals behind the water fuel cell, David Wenbert, from the H2Earth Institute discusses the device in detail. This interview, along with the PES Moray King interview shed a bright light into this device, which is normally a high efficiency / over unity electrolyzer / capacitor, but when coupled with the Electron Extraction circuit, the device pulls off the free electrons in the charged HHO gas, making it a true fuel cell, plus a gas generator. Everyone knows we need to get off fossil fuels, and we need to do it quickly. Manmade global warming aside, the air & water pollution from other toxins in fossil fuels is killing the planet. Add to this, we've gone through half the world's crude supply in 100 years. China & India's economies are now bursting online and mimicking the US model. We'll go through the last oil reserves in less than 50 years at the rate of consumption and projected demands. 650 coal plants are planned in China & India in 10 Yrs, doubling GHG emissions. In light of peak oil & exhausting the crude oil supply in 50 years, & the air & water pollution from petrochemicals, we need to transition to a new fuel source that can (1) Be burned in the ~1 Billion global internal combustion engines with minimal modifications (2) Not pollute the atmosphere with byproducts that damage the environment. The most popular candidate for a non polluting energy for transportation has always been hydrogen ...

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Monday, October 31, 2011

Rowenta DG8030 1800 Watt Expert Steam Station with stainless steel soleplate

!±8±Rowenta DG8030 1800 Watt Expert Steam Station with stainless steel soleplate

Brand : Rowenta
Rate :
Price : $299.00
Post Date : Oct 31, 2011 20:42:05
Usually ships in 24 hours



Founded in Germany in 1884, Rowenta has a long history of innovation. In 1912, they manufactured their first iron, paving the way for a position today as the world's largest producer of irons. In 1949, Rowenta launched the first iron with temperature control, followed by the first steam iron in 1957- an innovation that would change garment care forever. Throughout their history, technology and innovation have always been at the forefront of product design. Rowenta's new DG8030 Expert Steam Generator is an ironing system for the home that provides commercial results. Available at the touch of a button and on demand, the powerful pressurized steam penetrates quicker and deeper into fabric, providing professional quality ironing without much effort. Vertical Steam feature is ideal for removing wrinkles on hanging garments or drapes and for smoothing and shaping sewing projects. Variable Steam Control adjusts the steam output to specific fabric types. The extra large, transparent, continuous fill water tank holds 33oz, for up to an hour and a half of ironing, and can be refilled at any time during use. The stainless steel soleplate provides a high performance glide, reducing your ironing time. Extra long, 6 foot hose delivers pressure steam for added versatility and reach. The DG8030 Expert Steam Generator is compact, fits on most ironing boards, has a stable base with a 12 foot power cord making it easy and convenient to store. Comes with 1 year limited warranty.

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Wednesday, October 26, 2011

David Wenbert PES Interview: Water Fuel Cell, 7 of 7

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