Have you noticed an increase in your power bill?
The same global economic influences that have caused prices to rise dramatically at the gas pump have pushed up the cost of other fuels in recent months. The increase -- particularly in the price of coal used in electricity generation -- has prompted Progress Energy Carolina's to seek an increase in the fuel component of the rates paid by the company's N.C. customers.
Lets take a look closer to home...
Here in Central Florida our power bills have increased. The increase, which Progress Energy says it needs to invest in power plants, cover rising costs and pay for the expansion of distribution equipment, would raise a typical monthly bill for 1,000 kilowatt hours from $122.79 last month to $135.79 in January 2010.
The increase in the base rate, which is just one component of a bill, would raise $500 million annually for the company.
Click here for full article from the Orlando Sentinel.
How do you feel about this?
Schwenn Services, “the super sub of Central Florida,” specializes in mechanical and electrical contracting for commercial clients, particularly fast-track construction that require short schedules, high intensity design/build and right-sizing jobs in distress. The company has been family owned and operated for over two decades and prides itself in personalized service and outstanding quality work.
Showing posts with label Energy Efficiency. Show all posts
Showing posts with label Energy Efficiency. Show all posts
Monday, March 7, 2011
Monday, December 13, 2010
All I Want for Christmas is a Real Good Tan
Is it going to be a white Christmas...
Kenny Chesney said it all.... “All I want for Christmas is a real good tan” and that’s about what we all will be getting this year in the beautiful sunshine state. We will not be having a white Christmas in Florida this year so make sure your AC unit it up and running as efficient as possible. Need help? Need an inspection? Need a tune-up? Schwenn is the company for you. We will schedule you an appointment within 24 hours to meet with one of our comfort specialist and make sure your unit is running as efficient as possible in turn making sure you have a cool Christmas.
Things you can do (on your own) to make sure your unit is running more efficient…
- Change your AC filters regularly
- Make sure doors and windows are properly sealed
- Keep outside unit clear and free of debris
- Have annual maintenance done by your local AC company
Monday, November 15, 2010
Energy Efficiency for Business'
"Now, more than ever, energy efficiency makes good business sense."
-Progress Energy-
Progress Energy's rebates for energy efficient retrofits and new construction projects significantly reduce your upfront project costs.
Plus, by increasing your facility's energy efficiency, you'll lower your energy use and cut operating costs.
In order to qualify for our rebates, you must first complete a Business Energy Check. The free program allows you to work directly with one of our Energy Advisors to develop the best energy-efficiency plan for your business and to take advantage of our valuable rebates.
Call Progress Energy at 1.877.372.8477 or visit savethewatts.com
Rebates available for:
- Lighting
- HVAC
- Roof
- Insulation
- Duct Testing & Repair
- Window Film
Monday, October 25, 2010
Monday, August 2, 2010
Lower Your Power Bill
Might we Do as the Romans Do?
This blog entry was written by Elisabeth Rosenthal with the NY Times Green Blog.
What do you think…?
Three years ago, the Italian energy giant Eni began what is now a summer tradition: from June 1 to Sept. 1, the company sets the thermostat in its corporate office buildings 1 degree Celsius (1.8 degrees Fahrenheit) higher than it had in summers before 2007. It also allows employees to “take off their ties” – that is, wear lighter, more casual clothes to work.
Don’t misunderstand: Eni uses air-conditioning, and the offices are more than comfortable. It simply allows the temperature to creep up a tiny bit; most workers wouldn’t even notice.
(The temperature set in the various ENI buildings varies, a spokeswoman said, with the only rule of thumb that it be 1 degree Celsius lower than it was before the initiative began.)
The point, of course, is to use less air conditioning during Italy’s scorching summers so the company can save energy and reduce attendant fossil fuel emissions. Last year, Eni calculates that simple intervention saved 386,000 kilowatt hours of electricity, a 9.5 percent cut in energy consumption over the summer.
To put that into perspective, comparable energy savings would be achieved if 800 employees traveled to work using public transportation over the summer instead of commuting by private automobile. (Although the latter would be unlikely in car-crazed Italy!)
The larger point of the summer tradition is consciousness-raising — “to contribute to building awareness about the energy consumption associated with the use of air conditioners during the summer months,” as the company puts it.
I suppose we could use some of that awareness ourselves.
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Eni Eni’s headquarters in |
For more information please visit NY Times Green Blog
Monday, July 26, 2010
Zero Energy Showcase in Golden, CO
For a Premier lab, A Zero-Energy Showcase
This new Research Facility in Golden, Co., Will generate as much energy as it uses
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The federal government has just finished construction on a zero-energy office building, the nation’s largest, and is hoping that commercial developers will follow its lead. The 222,000-square-foot Research Support Facility is on the Department of Energy’s National Renewable Energy Laboratory campus in Golden, Colo.
This new Research Facility in Golden, Co., Will generate as much energy as it uses
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The federal government has just finished construction on a zero-energy office building, the nation’s largest, and is hoping that commercial developers will follow its lead. The 222,000-square-foot Research Support Facility is on the Department of Energy’s National Renewable Energy Laboratory campus in Golden, Colo.
Just over 800 employees will occupy the building once it officially opens in later this month.
A zero-energy building creates as much energy as it uses over the course of a year, said John Andary, a principal at Stantes, the sustainable design consultants for the project. Thanks to various “passive” design techniques and technologies, the facility will consume 50 percent less energy than buildings constructed to current commercial codes, he predicts. The remaining power needs will be generated on site from solar panels, allowing the building to operate at an annual net-zero energy basis.
A zero-energy building creates as much energy as it uses over the course of a year, said John Andary, a principal at Stantes, the sustainable design consultants for the project. Thanks to various “passive” design techniques and technologies, the facility will consume 50 percent less energy than buildings constructed to current commercial codes, he predicts. The remaining power needs will be generated on site from solar panels, allowing the building to operate at an annual net-zero energy basis.
Remarkably, many of the efficiency “innovations” are existing building techniques, some of them centuries old that were developed to make the best use of natural light and the earth’s ability to heat and cool. By contrast, modern building design, based on the ubiquity of cheap energy, moved away from many of those principles.
“We went back to simple design techniques that were used before there were electric lights and before we had air conditioning compressors,” Mr. Andary said. “What you had then were narrow buildings that optimized the use of daylight and windows you could open to provide ventilation.”
“We went back to simple design techniques that were used before there were electric lights and before we had air conditioning compressors,” Mr. Andary said. “What you had then were narrow buildings that optimized the use of daylight and windows you could open to provide ventilation.”
The building’s east-to-west orientation and narrow 60-foot width will bring daylight into all interior work spaces. Typical office buildings may devote 30 percent of their total energy expenditures to lighting alone. To take advantage of the operable windows, one of the building’s many “smart” features will notify occupants in a message sent to their computer screens when they should open or close their windows, based on a comparison of inside and outside temperatures.
Mr. Andary described the walls as “concrete sandwich panels” – a layer of concrete on the outside, a layer of insulation and then a smooth concrete layer facing the interior office space. “This gives the same effect as an old stone cathedral where the mass of the building absorbs heat during the day to keep the interior cool, and then releases this heat when the temperature drops at night,” he said.
A low-energy radiant heating and cooling system will further control the interior temperatures. Rather than using a traditional (and energy demanding) forced air system to heat and cool the building, the radiant system essentially heats or chills the building mass itself using water pipes in the concrete floor slabs that circulate hot or cold water depending on the season.
The Department of Energy expects the project to get a platinum rating from the United States Green Building Council’s Leadership in Energy and Environmental Design, or LEED, program. Platinum is its highest rating under LEED, the mostly widely accepted green building certification. Although more expensive than conventional commercial buildings, the new building’s cost, $259 per square foot, is in line with that of other LEED buildings.
The Department of Energy is hoping that the building will become a showcase for energy-efficient design. “Once we prove that the building works, and we will be monitoring this very carefully, we think others will want to emulate what we’we done here,” said Bill Glover, the chief operating officer of the National Renewable Energy Laboratory.
The Department of Energy plans to share the building’s design with any interested party through the publication of a how-to manual at the laboratory’s Web site this fall.
This article is referenced from the NY Times Green Blog
This article is referenced from the NY Times Green Blog
Monday, June 21, 2010
New Solar-power Plant
The population continues to grow requiring more and more energy. We are running out of natural resources now trying to find more efficient ways to power the world. “Going Green” has been the new trend and every day we our discovering new ways to save on energy and make our world more efficient.
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Orlando Sentinal published a great article about the huge step we are taking in building a giant solar-plant. Florida Power & Light Co.'s newest solar-energy plant will have enough mirrors to cover 80 football fields. But those mirrors will focus sunlight onto surfaces that add up to slightly less than the area of a single football field.
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That concentration of solar power will generate temperatures of more than 700 degrees — hot enough to make electricity for 11,000 homes.
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The Martin Next Generation Solar Energy Center here will rank as the world's second-largest solar plant when it begins pumping out as many as 75 megawatts of electricity late this year. It will also be the only system of its kind in the world.
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Conventional wisdom holds that solar plants using mirrors — which generate heat that produces steam that, in turn, spins an electrical generator — aren't worth the effort in Florida because of the regularity of afternoon rain clouds much of the year. So far, all of the solar plants built in the state convert sunlight directly into electricity using photovoltaic panels, which produce a charge, if only a reduced one, even on cloudy days,
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That concentration of solar power will generate temperatures of more than 700 degrees — hot enough to make electricity for 11,000 homes.
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The Martin Next Generation Solar Energy Center here will rank as the world's second-largest solar plant when it begins pumping out as many as 75 megawatts of electricity late this year. It will also be the only system of its kind in the world.
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Conventional wisdom holds that solar plants using mirrors — which generate heat that produces steam that, in turn, spins an electrical generator — aren't worth the effort in Florida because of the regularity of afternoon rain clouds much of the year. So far, all of the solar plants built in the state convert sunlight directly into electricity using photovoltaic panels, which produce a charge, if only a reduced one, even on cloudy days,
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One thing utility engineers hope to solve once the Martin County plant is operating is the problem posed by partly cloudy days, when some of the plant's mirrors will be reflecting full sunlight but others will be shaded. Plant engineers don't want alternating pulses of cooler and hotter steam arriving at an electrical generator that runs most efficiently, and with the least wear and tear, when operating conditions are kept constant.
To review the rest of this article please click here
To review the rest of this article please click here
Tuesday, June 8, 2010
214 Days Until the Tax Xredit Expires
Tax credit ends December 31, 2010
In these challenging economic times, homeowners are looking to pinch pennies wherever they can. With fuel prices going through the roof, homeowners often evaluate their energy usage and come to the conclusion that replacing old and energy-inefficient appliances would make a significant impact on their monthly energy bills. Of course, the homeowners then face the daunting purchase price of new, energy-efficient appliances. Fortunately, the government has stepped in and offers tax credits for the purchase of Energy Star appliances.
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Even without the tax credit, most Energy Star appliances will save the consumer enough money over the life of the product to make up for the purchase price. But the tax credits which are currently available increase this savings even more. There are various Energy Star rebate programs in place, which vary by state, so make sure to research the specifics of your particular product carefully before making a purchase. Click here for your state's rebate information.
Even without the tax credit, most Energy Star appliances will save the consumer enough money over the life of the product to make up for the purchase price. But the tax credits which are currently available increase this savings even more. There are various Energy Star rebate programs in place, which vary by state, so make sure to research the specifics of your particular product carefully before making a purchase. Click here for your state's rebate information.
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Tax credit onlt last till December 31st so hurry and contact Schwenn Serrvices today!
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In order to receive your tax credit, you will need to claim the credit on your 2010 income taxes. Make sure to save your purchase receipt as well as the Manufacturer's Certification Statement (that certifies the product for Energy Star status).
Monday, May 24, 2010
Solar-powered AC Units
Going Green
Solar power is one of the newest most economic ways to get power. So why not solar-power your ac unit? The solar air conditioner/solar heater is powered by solar energy collected in the evacuated tube solar thermal panels (see below). The thermal energy is delivered to the solar powered chiller using a Glycol (antifreeze) solution and a simple but carefully designed system of pipes, pumps and controllers. Solar heating and cooling in the winter, even when it is below freezing outside, our special evacuated tube solar thermal collectors produce an abundance of heat that will be transferred into your building/house, either reducing or eliminating the operation of your existing heating system.
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Solar power is one of the newest most economic ways to get power. So why not solar-power your ac unit? The solar air conditioner/solar heater is powered by solar energy collected in the evacuated tube solar thermal panels (see below). The thermal energy is delivered to the solar powered chiller using a Glycol (antifreeze) solution and a simple but carefully designed system of pipes, pumps and controllers. Solar heating and cooling in the winter, even when it is below freezing outside, our special evacuated tube solar thermal collectors produce an abundance of heat that will be transferred into your building/house, either reducing or eliminating the operation of your existing heating system.
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Our solar heating and air conditioning units can be used anywhere that the sun shines; they are low in operating and maintenance costs. They consume little or no electrical energy - essentially the only parts that use electricity are low amp fan motors and small pumps that move the thermal transfer fluid (Glycol, a food-grade antifreeze) from the collectors to the chiller and then back up to the collectors - all of these small electrical loads can run from solar PV panels if desired. Inside the unit is another small pump that circulates the refrigerant. There is no "compressor" to consume power
Monday, May 17, 2010
Energy Star Light Bulbs
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| Energy Star Light Bulbs |
Did You Know?
If every American home replaced just one light with an ENERGY STAR light, we would save enough energy to light more than 3 million homes for a year, about $700 million in annual energy costs, and prevent 9 billion pounds of greenhouse gas emissions per year, equivalent to the emissions of about 800,000 cars
CFL Light Bulbs
An ENERGY STAR qualified compact fluorescent light bulb (CFL) will save about $30 over its lifetime and pay for itself in about 6 months. It uses 75 percent less energy and lasts about 10 times longer than an incandescent bulb.
How CFL’s Work
CFLs produce light differently than incandescent bulbs. In an incandescent, electric current runs through a wire filament and heats the filament until it starts to glow. In a CFL, an electric current is driven through a tube containing argon and a small amount of mercury vapor. This generates invisible ultraviolet light that excites a fluorescent coating (called phosphor) on the inside of the tube, which then emits visible light.
CFLs need a little more energy when they are first turned on, but once the electricity starts moving, use about 75 percent less energy than incandescent bulbs. A CFL’s ballast helps "kick start" the CFL and then regulates the current once the electricity starts flowing.
Older CFLs used large and heavy magnetic ballasts that caused a buzzing noise in some bulbs. Most CFLs today — and all ENERGY STAR qualified CFLs — use electronic ballasts, which do not buzz or hum.
Please visit Energy Star for more information
Monday, March 1, 2010
New Rules for AC's May Bring Higher Costs
Is your air conditioner finally giving up on you? Effective January 1st the federal government banned the coolant refrigerant-22 (R-22) chemical. New government restrictions on this widely used refridgerant will raise AC repair costs. But a government tax credit is available for the rest of the year to upgrade your air conditioner to a more energy efficient unit. These new units are using the coolant refrigerant R410-A that is more energy efficient and environment friendly.
Please click here to review article in the Orlando Sentinel.
If you are thinking of replacing your unit...Now is the time to do it this $1500 tax credit will end December 31st 2010.
Schedule a free estimate today! Call 407-895-7550 or click here to contact us online.
Monday, January 18, 2010
Heating & Cooling Energy Saving Tips
How much money are you throwing away? Heating and cooling your home has proven to uses more energy than any other system in your home. Typically, 43% of your utility bill goes for heating and cooling.
No matter what kind of heating, ventilation, and air-conditioning system you have in your house, you can save money and increase your comfort by properly maintaining and upgrading your equipment. By combining proper equipment maintenance and upgrades with appropriate insulation, air sealing, and thermostat settings, you can cut your energy use for heating and cooling, and reduce environmental emissions, from 20% to 50%.
Tips
- Set your thermostat as low as is comfortable in the winter and as high as is comfortable in the summer.
- Clean or replace filters on furnaces once a month or as needed.
- Clean grilles, make sure they're not blocked by furniture, carpeting, or drapes.
- Turn off kitchen, bath, and other exhaust fans within 20 minutes after you are done cooking or bathing; when replacing exhaust fans, consider installing high-efficiency, low-noise models.
- During the heating season, keep the draperies and shades on your south-facing windows open during the day to allow the sunlight to enter your home and closed at night to reduce the chill you may feel from cold windows.
- During the cooling season, keep the window coverings closed during the day to prevent solar gain.
Long-Term Savings Tips
- Select energy-efficient products when you buy new heating and cooling equipment. Your contractor should be able to give you energy fact sheets for different types, models, and designs to help you compare energy usage
- For air conditioners, look for a high Seasonal Energy Efficiency Ratio (SEER). The current minimum is 13 SEER for central air conditioners. ENERGY STAR models are 14 SEER or more.
The best way to find out how energy efficient your unit really is – Contact Schwenn Mechanical for a FREE energy test calculation!
Schedule any service today! Call 407-895-7550 or click contact us online!
Monday, January 11, 2010
What Size is Your Unit?
Size really matters…It is important to calculate a proper HVAC unit size to ensure ideal heating and cooling and to maintain low energy costs. An HVAC unit that is sized too small for the building will run almost constantly and may never get the building up to the desired temperature. An HVAC unit that is sized too large will short-cycle and use excessive energy. Short-cycle means the unit will frequently start and stop. This causes unnecessary wear and tear on the unit and may lead to a shorter life.


How to Calculate HVAC Unit Size
Step 1
Figure out the square footage of space that you need to heat and cool. Measure the room's length and width. Multiply these together to get the square footage.
Step 2
Continue measuring each room and add all the square footages together. As a general rule, you'll want one CFM (cubic feet per minute) per square foot. The exception to this is if you have an area with a lot of windows. You'll then want two CFM per square foot.
Step 3
Convert the CFMs into tons by dividing by 400. For example, say your total square footage is 2,000, and you determined you need 2,000 CFM. Take 2,000 and divide by 400. For this example you need a five-ton air-conditioning unit.
Step 4
Calculate the BTU (British Thermal Units) needed for your air handler. This is done by taking your CFM and dividing by 150 and then multiplying that number by 10,000. For instance, from the example in step 3, you had 2,000 CFM. Two thousand divided by 150 is 13 1/3. This number multiplied by 10,000 is 133,333 BTU. You would install a furnace close to that output of BTU.
Schwenn Mechanical has trained professionals that have this down to a science and can also take into account other factors like: how well the home Is insulated and sealed, how many windows are in the home, and much much more.
Schedule a free estimate today! Call 407-895-7550 or click here to contact us online!
Continue measuring each room and add all the square footages together. As a general rule, you'll want one CFM (cubic feet per minute) per square foot. The exception to this is if you have an area with a lot of windows. You'll then want two CFM per square foot.
Step 3
Convert the CFMs into tons by dividing by 400. For example, say your total square footage is 2,000, and you determined you need 2,000 CFM. Take 2,000 and divide by 400. For this example you need a five-ton air-conditioning unit.
Step 4
Calculate the BTU (British Thermal Units) needed for your air handler. This is done by taking your CFM and dividing by 150 and then multiplying that number by 10,000. For instance, from the example in step 3, you had 2,000 CFM. Two thousand divided by 150 is 13 1/3. This number multiplied by 10,000 is 133,333 BTU. You would install a furnace close to that output of BTU.
Schwenn Mechanical has trained professionals that have this down to a science and can also take into account other factors like: how well the home Is insulated and sealed, how many windows are in the home, and much much more.
Schedule a free estimate today! Call 407-895-7550 or click here to contact us online!
Monday, January 4, 2010
Protecting the Environment
What is R-22?
R-22 is the most widely used refrigerant in the world. R-22 has been the refrigerant gas that we use in central air-conditioning (AC) systems at home and work.
R-22 is an HCFC class refrigerant containing chlorine giving it the potential to damage the ozone layer which protects animals and people from harmful rays from the sun. Thus has been targeted since the 1990's for eventual phase out.
R-22 is the most widely used refrigerant in the world. R-22 has been the refrigerant gas that we use in central air-conditioning (AC) systems at home and work.
R-22 is an HCFC class refrigerant containing chlorine giving it the potential to damage the ozone layer which protects animals and people from harmful rays from the sun. Thus has been targeted since the 1990's for eventual phase out.
Phase Out of R-22
The phase out started in 1996 with CFCs and it will be complete by 2020 for HCFC R-22 that is used in air conditioning and refrigeration. The phase out is being enforced via an EPA program (under the terms of the Clean Air Act) that issues production and consumption rights. The EPA will limit the amount of R-22 that is available for use in refrigeration and air conditioning equipment by lowering the amount of R-22 consumption rights over time. The next step down is in 2010, when the HCFC rights cap that controls the amount of allowed R-22 supply will be lowered by at least 20% from today's levels
Answer to this dilemma and what makes what makes R-410A a Better Refrigerant
To make the change over in refrigerants the government is offering a tax credit of up to $1500 if you replace your current unit with a new more energy efficient unit. These more energy efficient air conditioners are being manufactured and sold today that use a new and improved gas R-410A. R410A is environmentally friendlier. If your system ever leaks, the escaping refrigerant won't contribute to ozone depletion. You Avoid the Risk that R-22 could become or Difficult to Get When your system needs to be repaired in a few years. R-410A air conditioners and heat pumps are today's "state of the art" systems, and utilize the most current technology available for efficient and reliable operation. The heart of every air conditioner or heat pump is the compressor, and newer systems are specifically designed to use R-410A refrigerant. They often incorporate smaller, heavier-duty "scroll-type" compressors that are quieter and operate with less damaging vibration than older compressors that operate on R-22. Since R-410A can absorb and release heat more efficiently than R-22 ever could, compressors with R-410A run cooler than R-22 systems, reducing the risk of burnout due to overheating.
The phase out started in 1996 with CFCs and it will be complete by 2020 for HCFC R-22 that is used in air conditioning and refrigeration. The phase out is being enforced via an EPA program (under the terms of the Clean Air Act) that issues production and consumption rights. The EPA will limit the amount of R-22 that is available for use in refrigeration and air conditioning equipment by lowering the amount of R-22 consumption rights over time. The next step down is in 2010, when the HCFC rights cap that controls the amount of allowed R-22 supply will be lowered by at least 20% from today's levels
Answer to this dilemma and what makes what makes R-410A a Better Refrigerant
To make the change over in refrigerants the government is offering a tax credit of up to $1500 if you replace your current unit with a new more energy efficient unit. These more energy efficient air conditioners are being manufactured and sold today that use a new and improved gas R-410A. R410A is environmentally friendlier. If your system ever leaks, the escaping refrigerant won't contribute to ozone depletion. You Avoid the Risk that R-22 could become or Difficult to Get When your system needs to be repaired in a few years. R-410A air conditioners and heat pumps are today's "state of the art" systems, and utilize the most current technology available for efficient and reliable operation. The heart of every air conditioner or heat pump is the compressor, and newer systems are specifically designed to use R-410A refrigerant. They often incorporate smaller, heavier-duty "scroll-type" compressors that are quieter and operate with less damaging vibration than older compressors that operate on R-22. Since R-410A can absorb and release heat more efficiently than R-22 ever could, compressors with R-410A run cooler than R-22 systems, reducing the risk of burnout due to overheating.
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