Indoor grow houses have grown in popularity as more and more farmers have started to realize the advantages of growing crops of all in highly controlled environments. Also known as closed growing environments, these spaces allow users to achieve and gaze after precise temperatures, humidity levels, carbon dioxide levels, etc., to create the highest-yield, highest-quality crops possible providing “Mother Nature’s Best Day” every single day.
Vegetable plants in rows within an indoor grow room
Since these spaces are designed as microclimates and have many systems operating to fulfill water, light, and air needs, they desire large-scale, custom-tailored dehumidification systems to ensure the right balance of environmental conditions. Scalping systems are made to usually crops’ cycle and growing needs with various modes to mimic day/night and other changes throughout every phase in the plant’s development. Fraxel treatments makes sure that crops can thrive in indoor environments in the same way they do of their rightful outdoor environments.
Indoor Grow Room Dehumidification
Indoor grow rooms need a full seal to be sure the recirculating air maintains the right conditions for optimal crop growth. One of the key controlled parameters is humidity, which, inside the proper levels, is essential to achieving high quality crops in greater quantities. Both not enough and a lot of humidity can diminish medical and excellence of crops. By way of example, overly dry air can cause poor crop growth and leaf development, while overly wet air can bring about mold, rot, and mildew development and building maintenance problems. Growers use both dehumidifiers and humidifiers to provide the proper room relative humidity for every single stage from the plant’s development.
How come Dehumidifiers Essential for Indoor Grow Rooms?
Dehumidifiers are engineered to attract moisture through the air when it exceeds an arrangement range. The upper reducing limits generally rely on the actual growth stage in the crops. Seedling and clones require humidity levels of 70-75%, vegging plants require humidity numbers of 50-70%, and flowering plants require humidity numbers of 40-50%. Properly sized and configured, a dehumidifier is an efficient and efficient solution for reducing humidity levels within grow rooms as needed.
How to Determine the best Dehumidifier Size for My Grow Room?
Dehumidifiers are rated (i.e., sized) based on their total moisture removal capacity, that is typically suggested for pounds of moisture removed per-hour period (e.g., a 25-pound model can remove 25 pounds of moisture each hour in a specific room condition). The dehumidifier size necessary for a specific grow room is dependent upon its dehumidification needs. There are lots of factors that influence this value, including, but not limited to:
The types and amount of plants
The planting method
The watering and irrigation methods
The volume of water directed at each plant every day
Making use along of a present HVAC system
The application of CO2
The amount of windows/doors
The external environment conditions
Whether outdoor air will likely be introduced into the room
Regarding the grow room itself and room vapor barrier
The subsequent equation offers approximately your dehumidification needs expressed in pounds per hour, at a specific room air temperature, being removed:
[Number of plants] X [gallons water per plant per day] X 8 (conversion factor for gallons-to-pounds) = [recommended dehumidifier capacity]
You must go with a dehumidifier with a capacity to suit or exceeds this number. However, look at this product a starting point rather than hard-and-fast rule. Other factors to take into consideration include:
The number of doors and windows does your grow room have? Are there a vapor barrier in the walls & ceilings? Is the room construction considered loose or tight?
The amount of workers working the space along with their kind of activity.
The amount of time windows and doors are open during a 24-hour period.
Are there any unusual options that come with the grow room not covered from the above?
It’s also important to make note of that using a ventilation system inside a naturally humid environment must be calculated separately for the geographic area. Often times, it makes sense to engage an engineering company to determine the specific moisture load to your project.
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