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Types of Air Dryers, Made Easy

Types of Air Dryers, Made Easy

Deciding Between Types of Air DryersBefore we talk about the different types of air dryers we need to talk about why you need a dryer. Having a dryer is a crucial part of producing high-quality air and making sure your system can keep operating smoothly. Dryers are responsible for removing the moisture and water vapors from your air stream. As we know, moisture is the enemy of all compressed air systems. It ruins the piping, can cause condensate build-up, and creates problems downstream. Now it may seem obvious that the best way to fix this is to install an air dryer, a machine built to remove condensate from the air stream.However, the fix is not quite that simple. Yes, you need a dryer to remove condensation, but what type of air dryer do you need? Well to answer this, you need to know what your air is being used for and the quality standards for that application. Every use of compressed air is unique in its own way. Some applications require air with an extremely low dewpoint, others just need a large majority of the moisture removed, and some need super high-quality air with no moisture whatsoever in it.To reach each one of these standards, the air needs to go through different processes. Low dewpoints can be achieved through the use of desiccant dryers, while general moisture removal can be accomplished through the use of a refrigerated dryer, and if you have a low need for compressed air, you may end up using a simple membrane dryer to remove the moisture for the health of your pneumatic tools. But what is the difference between these different types of air dryers and what makes them unique? https://youtu.be/_CB_D9Cv1g8?si=Lw3oCr9XHLgaAvj7 It Isn’t as Simple as Dry or Wet AirPicking the right type of air dryer is not as simple as we would like. We need to break down the environment that this air is being compressed in and the uses of that air. The factors you need to be aware of are: Air and environmental factors Inlet air pressure Inlet air temperature Ambient air temperature (and water temperature if condenser is water-cooled) Installation environment of the dryer Maximum air flow in standard cubic feet per minute (scfm) Desired pressure dew point Dewpoint and relative humidity These factors are important for properly sizing your dryer, and in some cases determining the type of dryer. The air and environmental factors are important keep in mind, the air can flow at a much slower rate than it is rated for at 100℉ and 100 PSI. Sometimes it can be difficult to determine these things as, feel free to visit our CFM calculator for dryers here. When it comes to dewpoint and the humidity of the environment, it goes hand in hand with air quality standards. Different Situations, Different DryersIf you are in a relatively humid environment and your industry requires high quality air, you are going to need to get a different dryer than someone who may be using their compressed air in a typically dryer, cooler environment and the air quality standards are not as severe. You also need to be aware of how seasons change the conditions in your compressor room. Do you have to worry more in the winter or in the summer? The key to finding the right dryer is balance and finding equipment that can handle the highs and lows.Each type of dryer has different applications that it excels in and others where it may fall short. And to make matters more confusing, there is no clear-cut winner overall. Instead, these individual characteristics of your application and environment need to be taken into consideration. With that in mind, there is a simple way to tell which dryer would be best suited for you, and that is the Class of Air Quality Standards in your industry. Anything Class 3 and above need a desiccant as refrigerant dryers can only go up to Class 4 Air due to the means by which the air is dried.Now let’s break down the different types of dryers and what each one is typically used for. We will discuss the basic functions of each type of dryer so you know how and when to use each type of dryer. This way you can make the best possible decision for your air system. The Types of Air DryersRefrigerant Air DryersRefrigerant dryers are an excellent choice for those who meet the following conditions: Ambient temperature is less than 40°C/104°F Prevent condensation Dew point around 3°C-4°C/37°F-39°F These dryers work very similarly to the way our air conditioning does at home. The air is passed through a heat exchanger which has been cooled off by the internal refrigeration. This process both cools the air and causes moisture to condense by reducing the temperature. This process can be constant or operate on a cycle that helps improve energy efficiency. These dryers are the most energy efficient of the bunch as they allow heat transfer to do most of the work and the machine has to focus on maintaining the refrigeration level.Refrigerant dryers pose the risk of freezing the pipes in suboptimal conditions. If the temperature of the inlet is too low, moisture can freeze as it passes through the heat exchanger. Not only can the temperature cause a problem when the ambient air is too cold, but the opposite can have negative effects on the system as well. If the ambient or room temperature air is over 104°F it can become too hot for the dryer to handle and result in excess moisture continuing downstream, as well as slowing the movement of the air in your system.Do to these restrictions, refrigerant dryers cannot reach some of the more stringent ISO Standards. These dryers have a lot of great applications and can be extremely beneficial to the health of your air system, but they cannot provide those same benefits for every application or even every location. High Temperature Refrigerant Air DryersIf your compressor is lacking an aftercooler, which you should have for the health and longevity of your system, or the compressor room has a temperature surpassing the 40°C/104°F threshold then you should invest in a High-Temperature Dryer that is built to handle those conditions. These dryers are refrigerant dryers that have been manufactured to go beyond where the traditional refrigerated dryer might fall short. Desiccant Air DryersWhen it comes to desiccant dryers, AKA adsorbent, the rule of thumb is if you need a low Pressure Dewpoint or high quality extra dry air there is no question. Desiccant dryers can drop the PDP of the air down to -40°C/-40°F or -70°C/-94°F, depending on the level of drying. The ability of these dryers to drop PDP to such a low temperature is second to none when it comes to removing moisture from the air and making sure that moisture does not condensate again during use.Now you might be wondering how exactly these dryers work. Adsorbent dryers typically consist of two different towers filled with an adsorbent called desiccant. The air is passed through one tower and as it passes over the beads, the moisture and humidity is collected. The air only passes through one tower at a time, and it allows the tower that is shut off to dry the adsorbent and help extend the lifespan of the desiccant beads.This process is often sped up through the use of purge air. Purge air is pulled from the air stream to be sent down the other tower and expelled out the bottom. Reaching such low PDPs comes at the cost of valuable air being lost to help dry the beads. It may seem detrimental, but if this was not part of the process the air quality wouldn't meet Class 1, 2, & 3 ISO Standards. Each dryer excels in different areas but at a different cost. that is why it is important to review your needs when buying new equipment. Membrane DryersUnfortunately, membrane dryers, are considered the red-headed stepchild of compressed air dryers. Using condensation to remove the water vapor from the air stream, they are on there way out of the industry. The process does not yield as efficient of results as the other methods of drying air. However, that does not make them completely useless. An affordable option and take up much less space than other options, especially to simply remove moisture.Membrane dryers need to be adequately sized to the air flow to ensure the most moisture is being collected from the air stream and removed properly. These dryers can be easily overwhelmed and fail to remove water vapor which will cause problems downstream. If you choose one of these dryers it is incredible important to size it properly. If not you will be spending more to fix your system than the initial cost would have been. Before You Buy Types of Air DryersThere is no one size fits all when it comes to air dryers, in fact its the opposite. Each application needs something specific. These specifications mean a lot of variables need to be accounted for when considering an upgrade or a replacement.If you are looking to get a new air dryer but still need help making sure you get the right equipment, you came to the right place. All of this information on properly sizing, air purity classes, means of drying the air, are all incredibly important but can be overwhelming. Feel free to reach out to one of our representatives who are knowledgeable in compressed air and want to make sure you get the right fit.If you would rather do it on your own, we totally understand, but we still want to make sure you get the right equipment. Feel free to use the resources on our site such as our Dryer Sizing Calculator or any of the information under Warthog University. Our goal is to change the way you buy compressors online and that starts with our customers. Learn More Visit Warthog University More From Atlas Copco More From Pneumatech From The Experts

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Common Uses of Compressed Air

Common Uses of Compressed Air

Compressed Air has many uses and is vital to the success of a lot of industries, whether it be used in-house or a product earlier in the supply chain. Air is considered the 4th utility and that often gets overlooked by the general population. Something that is so prevalent is often disregarded both in usage and care of this utility. Most people don’t even know that Air is considered the 4th utility, let alone the applications where it is a necessity. Take a look around you and make note of what is sitting around you. Do you have a plastic bottle? Perhaps your medication is nearby or you took it this morning using that same water bottle. No matter your location or what you are doing the results of using compressed air can be found around you.Uses of compressed air can vary depending on the product and the industry that it is in. A paint and body shop needs air to help spray paint onto their cars, while another plant may be using compressed air to expand plastic, and a third may be using compressed air to simply move products through the facility. Air can be used for a wide array of applications and each application might use air in a different manner. How Do People Use Air? We briefly mentioned some of the versatile uses of compressed air, but the real question is how real people use it. In what ways is it benefitting these individuals? With the variety of uses available, it would take ages to talk about all of the potential uses of compressed air. Rather than that, let’s dive into some of the most common uses of compressed air. Home Uses of Compressed Air When it comes to home use of compressed air, everything from small hand-held machines to larger 60-gallon tank-mounted machines can be used. Whether it be for leisure or getting work done around the house, compressed air is used by many in their day-to-day lives. Some of these compressed air uses are: InflatingAlthough these air pumps may be simple looking and some even require manual effort to move the air, compressed air plays a large part whenever you need to inflate something. A list of common inflatables are: Bike/ Car Tires Balloons and Pool Accessories Air Mattress Sports Equipment Pressure Washing Now pressure washing may seem confusing as it sprays out pressurized water. The thing is something has to pressurize the water coming in from the hose/tank so that the water can be sprayed out and used to clean off other surfaces. Pressure washers are most often used for cleaning outdoor areas of properties. Removing dirt and chemicals from siding, bricks, and decks makes the pressure washer a valuable commodity.Woodworking and CarpentryWhen it comes to woodworking, compressed air benefits everyone from the most seasoned veterans to woodworking hobbyists. Pneumatic tools like nail guns run on compressed air and that air-powered equipment allows them to make more with less work. Air also works to help remove imperfections in the wood, help sand down the wood, and for continuous work on a median. PaintingWhen it comes to painting, compressed air is the key to efficiency. By using compressed air, the paint can be sprayed evenly over a wide area or if detail work needs to be done it can power an airbrush. Various Projects/ Yard WorkWhether it be in the garage, basement, or yard, you can benefit from using compressed air around the house. Air-blow guns can help with cleanup, or making a leaf pile for the kids to play in. It can also help you spread weed killer over large areas of your lawn without having to move. When it comes to your home there are many different applications for compressed air. Although it may not be a necessity like in industrial applications, compressed air can help make your life at home just a little bit simpler and make some menial tasks a little bit more exciting. It's extremely important to remember that compressed air needs to be used responsibly. If used incorrectly it can cause irreparable damage to you or someone around you. Small Business Uses of Compressed Air When it comes to small businesses, uses of compressed air are typically a power source for power equipment and tools used during the production process. These groups use commercial air compressors rather than consumer or industrial ones. So in short, these machines are bigger than the traditional handheld air compressors you might find at Home Depot, but not as big as the machines in an industrial air compressor room. Small businesses can be dependent on air compressors for their individual success. Most of these businesses use pneumatic tools and air compressors are needed to power those tools. Pneumatic tools provide them lighter and safer options in comparison to electric tools. These tools won’t overheat like electrical versions do after long use. This allows them to use the tools for longer without worrying about potential accidents happening with their tools. Some of the most common applications of commercial compressors include: Auto Body Shops Dentist Offices Construction Pneumatic Tools Cleaning Keep in mind that these are only some of the applications in which compressed air can be used and there are many other applications for commercial air compressors. Many individuals have even set up commercial-sized air compressors in their own homes. Industrial Uses of Compressed Air When it comes to industrial demands, some industries have no choice but to rely on compressed air. Unlike electricity, the only place of excess heat in air compression is at the site of compression. Released heat is often reintroduced at a different location to help improve energy efficiency. Removing heat makes the downstream use of air much safer. No risk of overheating and potentially causing a reaction between heat and explosive materials.The demand for compressed air has constantly been on the rise and due to this technology has followed suit and introduced different technologies like the rotary screw compressor and even more recently the variable speed drive that makes these machines, even more, energy efficient. This has allowed the uses of compressed air to expand as they were able to do more with the same machine,Industrial uses of compressed air are much larger and typically have more components in their air system than a mom-and-pop shop might have. These shops have what they need to get a small job done, but when the requirements are much steeper like an industrial application where it needs to power the whole facility and the individual components downstream. These industrial uses of compressed air can vary from agriculture and farming to pharmaceuticals. Some of these uses of compressed air include:ManufacturingCompressed air is the central power source for a lot of manufacturers, especially those working with plastics, metal, assembly, or refineries. These businesses are reliant on production and without compressed air, there is no production. Compressed air is responsible for: Operating Tools Air and Welding/Cutting Efficiently performing basic tasks Blowing plastic into a mold Monitoring Production Sandblasting and finishing meta Automated machinery AgricultureWhen it comes to farming, compressed air makes potentially difficult tasks easier. Providing long-term performance benefits alongside a low cost of ownership. Agriculture uses compressed air to move feed and grain, ventilate greenhouses, spray crops with pesticides and nutrients, and even be used as a power source for dairy machines. Farming benefits from the use of compressed air, so just remember the next time you have something with cheese, grains, or seeds that compressed air helped make that. PharmaceuticalsCleanliness is key when it comes to pharmaceuticals. We want our medicine to be what the label says it is and not have to worry about the quality of our medications. Highly regulated industries require equipment that is accurate and precise while performing at the highest level. These machines move products on the conveyor belts, spray the coating on pharmaceuticals, and bottle/package the products. Dry CleaningNow, this might be an unexpected and simultaneously obvious application of compressed air. Dry cleaning relies on a reliable supply of air to clean the items that come in and to operate machines like steamers and laundry presses. This industry is about quality and consistency and that is what compressed air grants them. Food and BeverageLast but not least, is the industry that affects us every day, the provider of sustenance that keeps us alive. They need clean, quality air to power their systems. These operations are consistently occurring to keep up with demand and with that, there can’t be any contamination. Compressed air is used to: Cool and freeze products Filling up drinks Closing and checking devices Packing and putting finished products on pallets. These industries and many more are extremely dependent on compressed air to be able to operate at maximum efficiency and maintain desired output. Compressed air is responsible for many different components of our daily lives, it also makes the production process much easier for those involved. The uses of compressed air are continuing to be expanded upon and critiques to make sure every application is getting the most out of compressed air. The only way you can reach these expectations is when you use the best products, just like the ones we carry at Warthog. Before You BuyWhether you have a current air system that needs to be updated or are looking to get your own, trust in the Atlas Copco Family of Brands. They are of the highest quality and are top-of-the-line. As they continue to push the boundaries on energy savings and technology to increase the efficiency of their machines. To get the best of the best for your personal and professional use, there is no better option than Warthog Air Compressor Store. Looking to Learn More?More From Us: Warthog UniversityMore From Atlas Copcohttps://www.youtube.com/watch?v=8XDmu7dov-Q More From Quincy

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Why Should I Care About Quality Compressed Air?

Why Should I Care About Quality Compressed Air?

Compressed Air is the 4th utility, a staple in manufacturing and production. It enables you to work in areas that may have been dangerous and lets you take your power with you. The versatility of applications makes it a precious utility, especially in industries where cleanliness is vital. Having quality compressed air is a necessity that may not always be at the front of everyone's minds, and keeping tabs on it will set you and your air system up for success. Air is DirtyRegarding these systems, the output is only as good as compressed air quality. The ambient air around us contains small amounts of particulates, moisture, and even oil vapors, which don’t even include the oil from the compressor itself. Once this air has been compressed, the widespread molecules of those particulates and moisture become concentrated and condense together. Increased concentrations can cause moisture buildup in the pipes, making your air completely unusable in applications like food.Contaminated air can cause a problem in every compressed air application as it can deteriorate the system from the inside, increase the necessity of maintenance, and shorten the lifespan of your equipment. Still, it can be the difference between production and being completely shut down in applications requiring clean air. Industries based around human consumption, food, breathing air, and pharmaceuticals are just a few industries highly dependent on clean air. Oil, dirt, or water getting into products would be detrimental to the users' health and the company's reputation. Dirty Air is Wasted AirWith wasted production comes wasted money. This can be the difference between your company feeling financially comfortable or stretched too thin. When machines are poorly maintained or simply inefficient, they can be responsible for large amounts of wasted money on utility bills. Unclean compressed air is the culprit behind unnecessary financial problems and problems in your system, but it can also reduce the lifespan of pneumatic tools and increase the maintenance required. The air around us is full of particles that, in small amounts, don’t cause any problems. However, when that air has condensed, the concentration of the particles increases and can cause problems. How do you get rid of those molecules, moisture, and muck in your air system? Prevent those particulates from getting stuck in your pipes, machinery, and equipment, making your life harder. Getting rid of those particulates comes down to getting the right equipment, but you need to know the air quality you need before choosing the right equipment. What is Quality Compressed Air?Choosing the quality of your air depends on a straightforward thing and that is how you are using your air. How you use your air determines how clean it needs to be, plain and simple. Most industries have requirements that align with ISO Purification Standards. Providing a guideline on how to properly clean your air and what the maximum concentrations of particulates are acceptable for each class. ISO standards ensure your system produces Quality Compressed Air for your compressed air application. These standards will give you a goal to aim for with your air quality, along with the necessary information to make the right decision in purchasing your equipment.Now that you have an idea of what you are looking for to produce high-Quality Compressed Air, it might be helpful to understand what it is. High-Quality Compressed Air is ambient air that has been compressed down in a compressor and then passed through a series of condensate treatments, moisture removal, and filtration to remove particulates from the air. Quality Compressed Air Qualifications Oil Content Dust Content Water Content Dewpoint Microorganisms & Contaminates For air to be considered Quality Compressed Air, it needs to have trace amounts of particulates, contaminates, and water while having a low enough dewpoint that condensation will not form when exposed to the ambient air. Quality is determined by parts in the air; the more pure the air is, the closer to Class 1 Air. Following these guidelines will ensure that you a clean system, smooth production, and quality compressed air. With a basic understanding of the benefits of removing particulates, oil, and water from your compressed air stream, you may now be wondering how you ensure that you are following the ISO Standards to produce clean compressed air. The solution to creating quality compressed air is the proper equipment in the right spots downstream. How to Make Quality Compressed AirMoisture and particulates have no business in an air stream, including yours. They provide no benefit to air production or movement and do not belong at the point of use. Removing these contaminants involves two significant pieces of equipment in every air system: a dryer and filters. These pieces prevent damage to your system and extend the life of your equipment while avoiding wasted energy. DryersThe mortal enemy of moisture in your air system is a dryer. These dryers can come in many different models with different means of drying air. Dryers typically come in one of three styles, refrigerated, desiccant, and membrane. Most traditional applications are going to use either a desiccant or refrigerated. The type of dryer depends on the application, as both refrigerated and desiccant excel in different applications. When choosing between the two, the deciding factor typically is the air's dewpoint. Refrigerated, or condensing dryers, are commonly used when Class 4 air is the maximum air quality required. For lower dewpoints, a desiccant dryer would be the necessary equipment to properly dry your air. Desiccant Air dryers excel for applications requiring Class 3 air and up.Drying your air is the most critical step to removing moisture from your air. It can help remove vapors and moisture molecules. Reducing the air's dewpoint requires a lower temperature for the moisture molecules still in the air to turn into condensate. Lowering the temperature to -70℃ makes it nearly impossible for the moisture to condense when it is exposed to ambient air or is at the point of use. This is beneficial to the end user, not having to worry about moisture and for the overall health of your system. FiltrationWhile dryers are responsible for removing moisture from the air, dryers do not remove oil, dirt, and other particulates from the air. A solid filtration system is needed to remove particulates and oil from your air stream. Now it may sound like a simple solution; throw some filters on your system downstream, and all the particulates will be cleaned out. If only filtration worked in such a simple manner.When it comes to filtering your compressed air, you must pay attention to the little things. Filters are classified by the filterable material and the size of the holes in the filter. Filters that can stop dirt and particulates are called particulate filters, while coalescing refers to filters that take oil out of the compressed air as it passes through. Both types of filters can come in an array of Micron sizes from upwards of 70µ down to .01µ. Problems can arise during filtration based on the sizing of the filters. If a smaller filter is in front of a larger filter, the large molecules will clog up the filter and cause a pressure drop. A large enough pressure drop can ruin the filter. The finer the size of the filter, the later downstream it needs to be. Like the idea of nesting dolls, you have to go through the bigger ones to reach the smallest layer. The lifespan of your filters needs to have proper filtration before the filters with finer filtration.Filter SizingStart with your largest-sized filter, which is typically a particulate, to remove the big particles of dirt and dust flowing through the air stream. Following your particulate filter, you would want to use a finer filtration than the previous one but not so small that it would end up getting clogged. It is imperative to know the size of your filtrations so that you do not clog up your filters and cause problems downstream.When it comes to filters, there are just as many variations and options as there are compressors; therefore, it is essential to be aware of your system’s needs when adding equipment to it or changing out pieces that were in use. Knowing the individual details is vital to making changes to your air system and adequately servicing them. If you don’t do this, you won’t be able to produce high-quality air. https://youtu.be/7vot8o8O2n8 Curious to Learn More? Check out Warthog University Looking for your own Filter? More from Atlas Copco More from Chicago Pneumatic

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Welcome to our store
Welcome to our store
Welcome to our store