Our recommendation
Release time:
2022-09-21 18:36
Source:
Humidification is the process of converting liquid water into vaporized water that can be absorbed by the air, and it involves a conversion of energy.
A humidifier is a system, not merely a single humidifying device. The operating conditions are crucial for its proper functioning, making it essential to integrate it with existing resources. Of course, the requirements for precise humidity control also play a significant role in determining which humidification method to choose.
1. Generally speaking, if there is excess boiler steam available, the first option to consider is using a boiler steam humidifier.
2. If the relative humidity requirement is high, the control accuracy requirement is also high, and the humidification demand is not large, steam humidification should be considered first.
If the precision control requirement is above ±3 and there is no surplus boiler steam available, an electric steam humidifier with SCR control should be considered. However, it’s best to use pure water.
If the precision requirement is around ±5, there’s no surplus boiler steam available, and pure water is not accessible, we recommend considering an electrode-type steam humidifier. If pure water is available and the budget is sufficient, we suggest opting for an electric-heating steam humidifier.
3. If there is an ample heat source on site, the precision control requirement is within ±5, and the relative humidity requirement is not particularly strict, then water-mist humidification should be considered first.
If there is sufficient compressed air available on site, it is recommended to use a two-fluid ultrasonic spray humidification system.
If the humidification demand is high and there is insufficient compressed air available, it is recommended to use a high-pressure micro-mist humidification system.
If there is a high demand for humidification and also a requirement to purify the air, it is recommended to use a water-based humidification system.
Note: When selecting mist humidification, be sure to pay attention to whether there is sufficient enthalpy available and the absorption distance.
Related applications
Offshore platform, ship, marine engineering, nuclear power, satellite launch center
To ensure worker comfort, enhance work efficiency, or prevent static electricity from interfering with the normal operation of equipment, it is essential to maintain appropriate temperature and humidity levels in the working environment. Typically, temperature control involves either cooling or heating. When cooling is required, some moisture is removed from the air; conversely, when heating is needed, the outdoor air often has a very low moisture content. Therefore, these environments invariably require humidification.
Humidifying the air can prevent damage to collectibles caused by the drying and cracking of fibers due to excessively low relative humidity from air conditioning. Many priceless manuscripts, books, artworks, floppy disks, magnetic tapes, and other items housed in museums—without being stored in spaces with proper temperature and humidity control—can easily suffer severe damage. However, environments suitable for these items often have lower temperatures, which can be uncomfortable for visitors. Generally, the lower limit for relative humidity for paper-based collections in museums is 40%; for items such as floppy disks and magnetic tapes, which need to be protected from drying out and becoming brittle, the lower limit is 36%. Organic collections, on the other hand, require even lower-temperature environments. Moreover, museum collections typically alternate between display areas and storage rooms; it’s important to note that even in environments with controlled temperature and humidity, heat conduction from outside walls or radiation from switching lights can still cause fluctuations in surface temperature, leading to moisture evaporation and structural damage to the collections. Furthermore, when a collection is moved from a cooler storage room into a warmer display area, its surface temperature gradually rises, causing internal moisture to migrate toward the surface and condense there—a phenomenon known as "moisture transfer." This process can accelerate the deterioration of the collection. The following temperature and humidity levels are recommended for museum environments:
Modern agricultural edible mushroom preservation and refrigerated food processing
The normal growth of edible fungi and other plants requires appropriate temperature and humidity conditions. To store foods such as fruits and vegetables, it is necessary to control the temperature and humidity of the air in order to maintain the quality and freshness of agricultural products. Generally, the humidity should be kept between 70% and 95% RH. Low relative humidity can lead to increased moisture loss in fruits, resulting in a decline in their quality grade and ultimately affecting profitability. In food processing—such as baking bread, cakes, and confectionery—both the production process and storage must prevent food cracking caused by excessively low relative humidity.
Data center computer room, programmable control room
Increased static electricity can easily damage integrated circuit chips. In data centers, preventing service interruptions is critical, and humidification systems must ensure both reliability and redundancy.
Spray painting workshop (for industries such as aerospace and automotive)
If the relative humidity of the air is too low, the adhesion of the paint will decrease. On the other hand, if the relative humidity is too high, the glaze layer sprayed onto the product may become excessively diluted, forming tiny liquid bubbles. As these bubbles evaporate during the drying process, they can lead to poor spraying results and the formation of fine pits on the sprayed surface.
Textile printing cigarette factory, wood processing, precision machining, detonator plant
Air humidification can prevent fiber cracking and static electricity caused by excessively low relative humidity in the air, thereby avoiding disruptions in the production process and ensuring good product quality. The recommended temperature and humidity levels are as follows:
