Monday, December 26, 2011

Boiler Upgrades That Save Fuel and Energy: Clip 5 of 6

Boiler Upgrades that will Save Fuel and Energy on Industrial and Commercial Boilers from 50 HP and UP! Clip 5 of 6. Recorded webinar from Industrial Controls with speakers Bill Hopler, Mike Handler, Chuck Kudy, and Bob Thomas. May 12, 2010. Topics Covered: -How the traditional "jack shaft" mechanical linkage system works -Why the "jack shaft" linkage is inefficient and wastes energy -What a typical boiler efficiency curve looks like -What the "linkage-less" system looks like and how it works -Why customers that have upgraded are saving 5% or more on their natural gas/oil bill -Actual projects that have been completed, before and after results -Other places to save energy in the boiler room What You Will Learn: We will review how the air/fuel ratio system works on your boiler, and why a "jack shaft" system is inefficient and wastes energy. You will also learn why mechanical linkage systems can be adjusted to match your boilers' efficiency curve. This webinar will help you understand how the "linkage-less" system works and how to determine if your boilers are a candidate for 4-10 % fuel savings. In addition, we will discuss how to estimate your energy savings and how to get started on a project. Who Should Attend: Project, Process, Energy Management, and Boiler Room Engineering and Maintenance Personnel at: -Hospitals and Medical Centers -Universities and Colleges -Chemical Plants -Commercial buildings -Schools -Food Manufacturing Plants -Pulp and Paper mills -Plastic and ...

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Saturday, December 3, 2011

HVAC Preventative Maintenance Sheet: Understanding the Detail and Value Involved in a Service Call

!±8± HVAC Preventative Maintenance Sheet: Understanding the Detail and Value Involved in a Service Call

Every heater should be serviced before it gets cold outside. This maintenance in most cases is low cost and makes certain your home heating system is operating at its best. You can find a HVAC preventative maintenance sheet quite easily online. These handy items provide you with all the basic tips needed for appropriate yearly heating unit care. The documentation that came with your heating system can also be very beneficial. These documents explain how to care for every part of the unit. A reputable heating unit and seasonal maintenance can prevent major repairs and break downs from occurring during the worst time of the year.

American Standard Heating - Start with the Best

As with any other home appliance or product, you get what you pay for. If you are purchasing a new heater for your home, buying a dependable unit makes all the difference in the number of repairs needed. American Standard heating is a popular brand among consumers because of the efficiency these units have to offer. They have higher efficiency ratings over many of the other available brands. American Standard units have been proven to remain an asset in the home for many years. With the right maintenance and care, these units provide low energy consumption and maximum comfort. The heating system you select should match your home size and needs. A local contractor can help you determine the exact capacity needed when purchasing a new unit. This information combined with a reliable dealer will get you on the path to comfort and cost savings. Proper installation is the next step. A heater that is installed wrong can lead to large repairs and a high energy bill. Once this process has been completed, yearly maintenance is all that is needed to keep the unit running effectively.

Heating Contractors - Basic Heater Servicing

Indoor servicing is a two part process. The first step involves inspecting, cleaning, and lubricating all major components. After these tasks have been completed, the technician will evaluate the unit during operation. The process begins with inspecting and cleaning the blower motor, wheel, and housing. Older furnaces also need the motor to be lubricated and inspected. In some cases, the motor may need to be replaced. Fan belts must be replaced sometimes as well. Other parts that are cleaned and inspected include the combustion blower assembly, ignition system, safety controls, heat exchanger, heating elements, flu system, control box, and the ductwork. All items must be clean and operating properly for your heating unit to be efficient. A common maintenance checklist will go over these items and more details can be found in the manufacturer guide. After all items have been cleaned and repaired, heating contractors turn the unit on and check for specific operational characteristics and sounds. Contractors measure items such as temperature, voltage, and air pressure while the unit is operational. Suggestions for repairs and improvements are made after the evaluation. These improvements could reduce energy costs and increase the comfort provided by your heating unit. Some owners decide to take care of this maintenance on their own. Your experience will be the main determinant for this decision.


HVAC Preventative Maintenance Sheet: Understanding the Detail and Value Involved in a Service Call

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Monday, November 28, 2011

The Propane Heater Hazards We Should Know!

!±8± The Propane Heater Hazards We Should Know!

The instability and fluctuation of fuel prices like oil is one of major reasons why many people prefer to use propane fuel, especially for heating activity that usually it calls as propane heaters. Propane is one of the hydrocarbon types that have low emission carbon products. But overall user should be carefully when using it because there are some hazards and danger accident when we use propane heater units negligent. Therefore in addition we get lot benefit from these units, don't forget to always use these units properly.

We know well that propane heaters are one of innovative alternative solution for people who want heat their room inexpensive and efficiently. The stable and affordable of propane fuel is one of important points about it. Most of them also usually have standard models, types, sizes, and technology like commonly heating units so far.

One of popular types of them is portable models. It looks compact and mobile so we move these types easily. Moreover, there are already many appliance units that use propane fuel for heating such as water heating (supply hot water and pool heating), indoor or outdoor heating, etc. Because they use flammable nature propane gas, that usually the fuel storage to the pressurized tanks, it is most risks that usually can result accidents when we use propane heater models, especially their byproducts of combustion process.

All right, below are some the propane heater hazards information we should know for use these heaters keep safely and keep far away from serious accidents:

1. Propane fuels usually are not produced with single hydrocarbon, they mix with other like butane. The popular type of them usually call with LPG, commonly it is combination between 60 percent butane and 40 percent propane or other various options. According to Energy Information Administration, gas companies cannot find propane deposit in nature but usually always mixed in with methane or familiar we call as natural gas. Economical transportation and distribution make gas companies always use liquid transportation model. In addition, this models discovered and popular since in 1912.
2. Ideally we use propane heater units with similar way when we use natural gas heaters that usually have pipe line transmission to supply fuel (methane). But for some reasons we usually utilize propane heater with pressurized gas. And it some time when we negligent can leak, and finally can result two types hazard accidents that are asphyxiation and explosion. Mostly leaks of tank caused by faulty installation and not-properly operation. As add information, catastrophically accident can occur when large container fails result high probability that call as BLEVE (Boiling Liquid Expanding Vapor Explosion).
3. If those two type hazard accidents happen, there are obviously effects. Asphyxiation can result problem to the human respiratory system and it is hardly to prevent self-help measures. Then the explosion can produce high pressure and thermal explosion flame risk, these condition can destroy and even demolish the building of the house or office.

Overall if use propane heaters properly and obey the manufacture's operation and maintenance guidelines, those hazards can be prevented. Below are some tips about it that we should consider:

1. The fist thing that we should consider is about to ensure that the heater and the tank keep in well condition.
2. Then provide adequate vent for circulation air. It purposes to reduce probability risk of asphyxiation risk. As possible use units that have deflection Oxygen sensor automatically feature. Or install carbon monoxide detection.
3. Check your heater and the tank regularly and do the maintenance properly.
4. Place the heater on stable surface, and keep distance between flammable materials to the unit.
5. When we charge or replace tank fuel with new one, ensure that the tank looks still in good condition. As add info, propane fuel doesn't have odor so it is hardly to detect when the tank leaks. Therefore gas companies usually include an odoriferous compound to it so we can smell when tank leaks. The odoriferous compound usually from sulfur, marcpatan substance or else. If we smell the leak gas from the tank, stop all activities that can ignite the propane fuel and as soon as turn off the tank valve. If this precaution doesn't solve or you afraid to overcome your self, as soon as possible call for help.

Find completely information about the propane heater hazards here!


The Propane Heater Hazards We Should Know!

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Monday, October 24, 2011

Healthcare And Facility Infrastructure

!±8± Healthcare And Facility Infrastructure

New diagnostic and treatment equipment occupies dedicated spaces. At the same time, there is increased emphasis on ambulatory care for many procedures and illnesses, with more selective inpatient admissions and decreased length of stays. There also is a trend toward networking remote primary care and diagnostic centers to other types of care facilities.

With these changes comes the need to provide more sophisticated HVAC, power, telecommunications/data and life safety systems. Owners, architects and engineers alike face the challenge of allocating space and developing a facility infrastructure that not only accommodates these systems but also allows optimal integration and flexibility today and in the future.

To meet the demands placed on system infrastructure and to provide future flexibility, space must be allocated for much larger mechanical, electrical and telecommunications distribution hubs and risers. One of the biggest problems in existing facilities, which may be 30, 40 or 50 years old, is finding and reprogramming enough space to revamp the entire core infrastructure and controls. In new facilities, owners may be understandably reluctant to add to the amount of space required for the engineering systems.

Indeed, the proportion of the cost of the building systems to the total cost of a new facility is now approaching 50 percent. Whether planning an upgrade or new construction, finding cost-effective solutions requires cooperation among owners, architects and engineers.

Optimizing the HVAC System

Energy efficiency, indoor air quality, comfort and flexibility for future changes are the key criteria to keep in mind when engineering the HVAC system, which must provide the optimal environment for a range of treatment and support spaces.

HVAC systems today comprise more individual units dedicated to meeting the different temperature and air-quality needs of spaces such as telecommunications/data equipment rooms, diagnostic equipment rooms, operating rooms, emergency rooms and in-patient rooms. Zoning also allows the mechanical engineer to employ specific tools, such as high-efficiency air filters, where they are needed.

To assure indoor air quality, the HVAC system must be able to provide proper filtration and ventilation, and minimize cross-contamination of building spaces. Airflow must be directed from clean areas to less clean spaces and then exhausted outside. Controls must use a reliable monitoring and alarm system to ensure maintenance of proper indoor air quality and pressurization standards.

"All-air" HVAC systems, which allow use of primarily outside air to, whenever possible, heat and cool a facility, enhance indoor air quality and the energy efficiency of the HVAC system. Efficient motors, variable speed drives and economizer cycles all can be used to minimize energy consumption.

In any case, HVAC systems are heavy energy consumers. But deregulation has provided the opportunity to use systems that can use multiple energy sources to run boilers and produce chilled water. At any given time, the facility can choose which energy source to use (electricity, natural gas or steam) depending on demand, cost and availability.

The nature of today's hospital demands selection of state-of-the-art direct-digital-controlled HVAC systems, which are accurate and flexible, allowing control from central and remote locations.

Power: Quantity and Quality

Flexibility of power system infrastructure and power quality are key criteria for the electrical power system design. Spare capacity has to be built into every major normal and emergency power riser. In most cases, minimum code-suggested values for feeder and equipment sizing may not be adequate for modern hospital design because of universal usage of computer equipment for a wide variety of functions.

The nature and sheer volume of hospital systems and equipment also create challenges. For example, more and more equipment today is electronic, which contributes distortion to the electrical system. Current causes this distortion and voltage harmonics that affect both normal and emergency power supply and distribution systems, and sensitive medical electronic equipment fed from it.

To minimize harmonic effects on the power system, 200 percent neutral should be the standard on all three-phase, four-wire systems and equipment. Rectifiers and trap filters are strongly recommended on all variable frequency drives. Emergency generator specifications have to include provisions for 100 percent non-linear loads. Usually, generators will have to be one size larger than the engine size to compensate for non-linear loads.

The high volume of electrical equipment also creates electromagnetic interference. This is not the place to try to economize on construction costs. Electrical engineers often recommend rigid steel conduits for major feeders - especially those passing through critical areas - rather than the thinner, less expensive electrometallic tubing, which does not block magnetic interference.

The ratio of emergency to normal power is increasing. The trend is to place more systems on the emergency generator than dictated by minimum code requirements. For example, cooling is not required to be on generators, but more hospitals are electing to do so. Indeed, owners of facilities designed to meet code and budget requirements just a few years ago now may want to add systems to the emergency generator, only to find that their generators do not have adequate capacity.

Internet, Telemedicine Make the Call

The design of the telecommunications infrastructure in hospitals today is driven by the expanding need for high-speed, high-quality computing and networking both within the hospital facility and between the hospital and the outside world.

Hospitals already have in place or are adding new local area networks (LANs), often Ethernet systems, to network all types of data, from patient records to radiology data, throughout the facility. Now networks are expanding, with installation of data ports at each bed, allowing access to view and update patient records as well as diagnostic images. (The future is in wireless, portable access via hand-held computers, already being seen in some applications.)

Expanding the network to each bed necessitates upgrading the infrastructure to comply with the latest standards. This, in turn, requires telecommunications closets to be dispersed throughout the building, with certain distance limitations between the closets and each data outlet and certain closet size requirements based on the size of the area and the number of outlets.

Meeting these standards and future needs requires a lot of space and, when upgrading an existing facility or planning a new facility, owners and planners must be prepared to allocate it. Usually this space is in the core of the building, not in an underutilized corner, to meet distance requirements.

The good news is that current standards in the design of the telecommunications infrastructure should serve health care facilities well for 10 to 15 years.

This means that - even if new cable itself may be required in the next decade - the number and spacing of telecommunications closets should remain consistent - the crucial issue in space planning. Indeed, many believe that the next generation of cable will be "all we will ever need" in copper cable. Additional speed will have to be accommodated using fiber-optic cable.

The logical extension of the LAN is a wide-area network (WAN) that enables telemedicine: remote access to patient records, diagnostic images and other data by computer, with the capability of simultaneous videoconferencing. A lot of institutions are talking about telemedicine, and some are forming pilot projects. Some are making the connections between the hospital and physicians' offices and outpatient clinics over the Internet. Others are using dedicated T1 or ISDN phone lines, which offer higher-bandwidth (i.e., high quality) communication as well as quick speeds.

In fact, much of the capability for the WAN depends on the main telecommunications equipment in the building and the cabling that goes out to the world. Many hospitals have multiple T1 copper phone lines coming in and some fiber-optic cable. The trend is to bring in more fiber, which is what is really needed to drive video imaging. Either way, space is needed in the main telecommunications room for the large amount of equipment to communicate with remote sites.

Life Safety, Security

As it is in emergency power, so it is in life safety: The trend is to exceed code in both existing and new facilities. Many existing hospitals have outdated fire alarm systems and inadequate sprinkler systems by today's standards. Owners are retrofitting with modern, computer-controlled fire alarm systems - centrally monitored and controlled from a fire command station, usually in the main lobby.

The new systems require new water service, fire pump and vertical distribution system and additional sprinklers. This complicates the cost and space issues. A sophisticated mechanical system can also provide smoke control, either automatically or manually from the fire control station. This is a highly reliable early warning system.

Security systems are vendor-driven, changing rapidly, and are generally planned and implemented after a building is completed. Much of a security installation is low voltage. Thus, engineers should assure that enough space and power are allocated in the backbone for security hub equipment. Needs differ, but most security systems today use some combination of card access and biometrics readers, motion detection, closed-circuit television and metal detectors, as well as personnel.

Higher Demands

It's also worth mentioning that stand-alone ambulatory care facilities may place even higher demands on infrastructure because there is more sophisticated equipment packed into them than in some hospitals, which contain patient rooms and more support spaces.

Now, what about controls? Given the size and complexity of the hospital setting, integrated controls would seem to offer distinct benefits. Yet it is not only expensive but often difficult to build a system that integrates control of all mechanical and electrical systems because many control manufacturers' systems are proprietary.

There has been an effort in the market to develop "open protocol systems" - creating an integrated control system - but applications have involved links between components or subsystems rather than completely integrated automation systems. Today, it is more common to selectively marry major control components to the building management system regardless of whether the controls use open protocols. Continued introduction of products that use open protocols promises to expand the use of integrated control systems.

In the final analysis, designing a health care facility infrastructure for the 21st century is all about optimizing system integration and flexibility to ensure that the facility will remain a fully functioning organism in the future. Perhaps nowhere else is the metaphor of infrastructure as "backbone" more apt than in health care.


Healthcare And Facility Infrastructure

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Monday, September 26, 2011

GasBadge Plus Personal Gas Alarm- Carbon Monoxide

!±8±GasBadge Plus Personal Gas Alarm- Carbon Monoxide

Brand : ISC
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Price : $195.00
Post Date : Sep 26, 2011 09:00:11
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The GasBadge Plus is a two-year, maintenance-free, dockable single gas monitor ideal for personal protection from unsafe levels of oxygen, carbon monoxide, hydrogen sulfide, sulfur dioxide or nitrogen dioxide.

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Saturday, September 17, 2011

Sunday, August 28, 2011

As for a flat-screen TV store

!±8± As for a flat-screen TV store

Previously, it was so easy to buy a TV.

A few years ago, we went into a store, selected a known brand, and size of the screen and, depending on the size of the TV, you probably take home, plug a cable box and you are done.

TV's have larger screens are becoming more sophisticated today. If you go to an electronics store, sellers eager to start with words such as plasma, LCD, 720p, 1080p, HDMI, Blu-Ray, HDTV, and refresh rate. It may seemintimidating.

Not to worry. This brief guide provides basic information you need to buy a flat screen TV will.

Perhaps the biggest decision of what size you need to buy a flat screen?

If you want more than five feet away to sit from the screen, you must purchase at least a 32-inch, the benefits of high definition TV, also known as HDTV. HDTV at resolutions much higher than the old analog TV, and require larger screens.

The secondChoice they have when you buy a flat screen TV, is whether to buy a plasma or LCD. Plasma screens are based on a technology similar to fluorescent lights. A gas flows through the glass and this allows better detection of motion and viewing angle of LCD TVs.

LCD monitors use the same technology as flat screen monitor and visualize in detail the end of plasma.

Until recently, the rule if you want to see a lot of sports, get a plasma, andif you have a computer and / or game console into your TV plug-plan, get an LCD.

But the rules have changed. Frame rate, the speed with which it can change the image on an LCD screen can be improved. Top LCD TVs were 50 - to 60-megahertz (MHz), frame rate, the same as a computer monitor. Slow frame rates are good for watching CNN, but bad for the display of basketball. To get rid of emotion, LCDs are now with 120MHz and 240MHz frequencies available update, which has justfast action on the smooth LCD TV plasma screens.

Do not exceed, plasma screens have gotten sharper, but the biggest change in plasma TVs is the price. A 47 - to 50-inch plasma TV will cost several hundred dollars less than an LCD screen with a speed of 120MHz to 240MHz upgrade.

You must also decide whether to purchase the TV at 720p or 1080p. These figures refer to the number of horizontal pixels. The higher the number of pixels, the sharper the image. Although based on a recentVisit Best Buy, has seen great and I had a hard time understanding the difference. If you want only the TV programs via antenna, a screen 720p is fine, but if you intend to view high-definition DVD and Blu-Ray, 1080p, you should take advantage of the higher number of pixels.

So, what is best LCD or Plasma?

I suggest visiting a large electronics store like Best Buy or J & R, and decide you are planning on both LCD and plasma, and try themselves. Ask the seller to show differentKinds of programming, such as a football game and a person of CNN news. If you plan on playing DVDs, you ask them on a Blu-ray Disc and see how it looks. Even looking at the screen from different angles. LCD screens will distort images if they are viewed from straight on. But I personally do not see a distortion of the LCD screen when I saw it at an angle of 45 degrees.

Here are some other terms you should understand before shopping for a TV.

Question: What is HDTV and howis it different?

A. HDTV is more than twice as old, cumbersome analog TV tube that replaces it in detail. Analog TV has a resolution that is approximately equal to 640 x 480 pixels. HDTV has a maximum resolution of 1920 x 1080. This provides a framework that is six times sharper than analog TV.

Question: What is an HDMI cable and a port?

A. HDMI stands for High-Definition Multimedia Interface. It is used to connect a flat screen TV with other devices such as DVDThe players, audio systems, computers and game consoles.

Question: What is Blu-Ray?

A. Blu-Ray is a format used to create high-definition movie and video game discs. As HDTV, show movies in much greater detail.


As for a flat-screen TV store

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Thursday, August 25, 2011

Enron Commodity Trading was not original

!±8± Enron Commodity Trading was not original

If you should get an annual report for El Paso Energy in 2000, they would find on page 11 of value for shareholders under a plan of their 80,000 square meters, a merchant with 700 employees. Enron many thought had, in fact, is that once claimed to be the largest of the plan of world trade in energy. So it was not new to Enron have come up with the concept, yes, as related to energy trading plan, built a larger one. It was not enoughhave innovative for them, most retailers at this point, not very innovative, other things such as trade, lumber futures Del Webb or Pulte Homes and U.S. Homes, or bandwidth, or water rights on top of its oil and gas trade and excess pipeline capacity.

The trade of raw power had actually done and so did the sale of environmental credits and contracts. This is a clear and feasible to reduce pollution demonstrable efficiency gains to free enterprise. El Paso MerchantEnergy Group in 2000 amounted to 960 million pre-tax profit, 329 million in 1999 and 1998 exceeded 293 million. This group traded LNG, power generation, financial services, coal, oil and gas and power activities. They also had the division of global networks, which has been in the business of telecommunications. Obviously, a simple view of El Paso Energy shows, even if more profit from the trade were the possession and acquisition of pipelines, refineries, drilling, oilfield services, onshore storageProduct, and other real services. On page 48, 49, 50, 51 and 52 of the Annual Report 2000 will be about 15 partnerships and limited the possible uses for all things. The full report contains no fewer than 90 subsidiaries and limited partnerships with all kinds of offerings in love with the stock and stock options and voting rights.

Sun took over Enron's industrial-standard methods and the system really works. Under what works well for the good of users andIndustry and increasing it ten folf. Of course, if you look at any car manufacturer that have the same thing, I do now, because ever since Rockefeller. I'm not sure that the Enron case to go forward because it was bigger. If that money was not important, and it would be as usual, but with the market down in recent days and the stock collapsed and the junk rating of the course can be tougher now then it was all illegal. Perhaps the biggestProblem has been the hideout of transparency, along with creative accounting with their friends to A. Anderson, and the facade that followed.

If El Paso had all merged with Coastal forgotten and moved to the company. What happens if Dynenergy with Enron and then merged all the old data was gone from Enron? Global Crossing and Quest had a deal going, what then? What if GE had merged with Honeywell, may not be in serious trouble. It seems that the idea is to run theField and on paper look good, even if you're running on fumes and barrowed to the handles and then sell up and forget about it. Now this time, the largest flight plan fell short, and this time it was serious. In the case of pre-merger audit with El Paso Energy Corporation and the coast, then to El Paso CGP Corporation for the merger changes the tests were carried out by individual companies. El Paso Energy has PriceWaterhouseCoopers and Deloitte & Touche LLP, the CoastalCorporation.

But that's just what the overlap is a historical fact, and who can say whether the two companies were financially stable as it was the first place? Consider whether Enron and Dynenergy to merge and have all the small companies have been cashing Dynenergy. WOW, it was a race to the bank to talk to. I wonder how many of LLCs Dynenergy Enron board members that he would certainly add fire, the flame contained. Maybe not, but what if? What happens if the merger wasPlace and know that you did not? What would our country appears today? We could not Sarbaines Oxley, we would have less regulation, fewer attacks by attorneys general for the economy and industry. We have less offshoring activities, less outsourcing of jobs, and never should have lost 7 billion dollars in our purse. Third privatization of Social Security would not be a problem, We all want to have more confidence in our markets and less fear they have passedChina as the leader of the free world. Think?


Enron Commodity Trading was not original

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Thursday, August 18, 2011

Laser system for natural gas detection: Phase l - laboratory feasibility studies

!±8±Laser system for natural gas detection: Phase l - laboratory feasibility studies

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Post Date : Aug 19, 2011 04:42:06
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Friday, August 12, 2011

Safety Siren Pro Series HS71512 3 Radon Gas Detector

!±8± Safety Siren Pro Series HS71512 3 Radon Gas Detector

Brand : Pro Series | Rate : | Price : $129.95
Post Date : Aug 12, 2011 13:49:06 | Usually ships in 24 hours

Digital Continuous Radon Gas Monitoring with Home Radon Alarm Protect your family from lung cancer from radon gas exposure with the only EPA evaluated radon gas alarm, the Safety Siren Pro 3 Electronic Radon Gas Detector from Family Safety Products. As seen on TV, this is not like a single use radon test detection kit: this digital radon gas monitor for home testing is a continuous radon tester that performs continuous radon gas monitoring. The clear, easily read digital radon level display shows short-term radon levels as well as long-term radon level averages. The Safety Siren electronic radon monitor gives its first radon reading after 48 hours of radon gas sampling. Radon gas in air or water is a health hazard resulting from uranium breaking down in soil. Exposure to radon can cause lung cancer. Continuous home radon monitoring is recommended in high radon areas or when radon mitigation systems are used. Radon gas levels change according to humidity and season. See in.Radon Facts in. below the radon monitor information. Family Safety Products' Electronic Radon Meter Features: USA EPA Evaluated. Not for sale to residents of the State of Iowa nor for shipment to Iowa residents per Iowa Department of Public Health Rules, Chapters 43 (136B). Please contact the Iowa Department of Public Health at (515) 281-7689 for further information. Numeric LED radon gas detection level display range: .1 to 999.9 in pCi/L. Short and long term readings. Short-term readings: 7 day radon average. Long-term readings: radon averages since powered-up or last reset. 5-year maximum. Audible alarm if short or long-term radon gas averages are 4 pCi/L or greater. Continuously samples air . Display updates hourly. Failsafe self test: every 24 hours. Error code displays if test fails. 4 function menu button Green LED illuminates next to S (short-term) or L (long-term) display. User can manually test detector operation. Button to mute or reactivate audible alarm when unit is in alarm.

  • Meets US EPA performance criteria
  • Has a numeric LED display screen
  • Short-term and long-term readings
  • Updates air samples every hour
  • Conducts a self-test every 24 hours

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Monday, August 8, 2011

Gas detection systems based on microstructured optical fibres: From idea to implementation...

!±8± Gas detection systems based on microstructured optical fibres: From idea to implementation...

Brand : | Rate : | Price : $63.99
Post Date : Aug 08, 2011 12:26:34 | Usually ships in 1-2 business days


This book presents the study and development of sensing systems for the remote detection of gases with the use of microstructured optical fibres of the hollow-core type (HC-PCF) and the use of signal processing techniques usually associated with absorption spectroscopy. Photonic Crystal Fibres (PCF) arose as an exceptionally interesting player in the field of gas sensing since they promote the creation of short and direct interaction paths between light and gas and can be tuned to address any specific gas. Thus, their principle of operation and main optical properties were studied and described. The diffusion time of gases inside of microstructured fibres is a subject of special importance. As a consequence of its theoretical study and experimental analysis, fruitful results for the planning of a new configuration for a sensing head were achieved. Light coupling between standard optical fibres and hollow-core photonic crystal fibres is a practical issue that was also evaluated in the aim of the work here presented. Wavelength Modulation Spectroscopy is also presented and described in this book as it is a powerful and sensitive technique suitable for gas detection.

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Gas detection systems based on microstructured optical fibres: From idea to implementation...

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