The VCMA series refrigerated dryer reduced the temperature of compressed air from 2 ℃, and a large amount of water vapor condenses into water. The refrigeration chamber dryer uses the principle of refrigeration to cool compressed air at higher temperatures to about 2℃-3℃ and discharge the condensate, thereby achieving the purpose of drying compressed air.
The non heat drying machine uses the principle of pressure swing adsorption (PSA) and the method of non heat regeneration to dry compressed air through a dual tower circulating adsorption structure. One tower adsorbs moisture from the air under a certain pressure, while the other tower uses a small amount of dried compressed air for regeneration under reduced pressure . After a certain period of time, the two towers switch between each other to achieve.
The VMHD series micro heat regeneration adsorption dryer uses a small amount of finished compressed air to heat and regenerate the moist adsorbent. During the cooling process, a small amount of finished compressed air is used to cool the adsorbent and further regenerate it.
The VMAH series blown hot micro gas consumption regeneration adsorption uses a blower for regeneration. The blower sucks i the ambient air and then heats it up to regenerate the moist adsorbent. During the cooling process, a small amount of finished compressed air is used to cool the adsorbent and further regenerate it.
The VZAH-40 series hot blast zero gas consumption regeneration adsorption dryer uses a blower to suck in ambient air and heat it in the same direction to regenerate the wet adsorbent. The cooling uses a blower and an intercooler for closed -loop cooling of the high-temperature adsorbent. The entire regeneration process does not consume expensive product dry air, resulting in lower operating costs
The VZAH-70 series hot blast zero gas consumption regeneration adsorption dryer uses a blower to suck in ambient air and heat it up before regenerating the wet adsorbent in a countercurrent manner, achieving ideal heating and regeneration effects. Cooling uses a blower and an intercooler for closed -loop cooling of high-temperature adsorbents.The entire regeneration process does not consume expensive product dry air. The operating energy consumption and cost of the dryer are lower, and the dew point is better.
The VZCH series compression heat zero gas consumption regeneration adsorption dryer first uses high-temperature and high-pressure compressed air to compress and heat the wet adsorbent for regeneration. After the compression heating stage is completed, turn on the auxiliary heater to perform secondary heating and regeneration of the adsorbent. The sooling stage is achieved by blowing compressed air through the after-cooler to the required room temperature for adsorption and reaching a high degree of dryness until regeneration is completed.
The VZAH-40 series hot blast zero gas consumption regeneration adsorption dryer uses a blower to suck in ambient air and heat it in the same direction to regenerate the wet adsorbent. The cooling uses a blower and an intercooler for closed -loop cooling of the high-temperature adsorbent. The entire regeneration process does not consume expensive product dry air, resulting in lower operating costs
The VCMA series refrigerated dryer reduced the temperature of compressed air from 2 ℃, and a large amount of water vapor condenses into water. The refrigeration chamber dryer uses the principle of refrigeration to cool compressed air at higher temperatures to about 2℃-3℃ and discharge the condensate, thereby achieving the purpose of drying compressed air.