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The CAM photosynthetic pathway absorbs the humidity in small spaces, effectively making the plant such as Sansevieria trifasciata a natural indoor humidity absorber. Not only will this help with cross-ventilation, but lowering the surrounding humidity increases the thermal comfort of people in the room.
Canisters are commonly filled with silica gel and other molecular sieves as desiccants in drug containers to keep contents dry Silica gel in a sachet or porous packet. A desiccant is a hygroscopic substance that is used to induce or sustain a state of dryness (desiccation) in its vicinity; it is the opposite of a humectant.
In the agricultural industry, sodium polyacrylate is used to help plants retain moisture in the soil. [13] It can act as a water reservoir for plants and is commonly used by florists to keep flowers fresh. Furthermore, the use of sodium polyacrylate for growing domestic fruit and vegetables has been approved by the U.S. Department of Agriculture.
4. Air Plants. Per Marino, tillandsia (AKA air plants) thrive in humidity: “As an epiphyte, the air plant grows on top of tree branches and pulls all the water it needs from the intense morning ...
A humectant is a substance that is used to keep products moisturized and affects the preservation of items, which can be used in cosmetic products, food and tobacco. A humectant-rich formulation contains simple alcoholic sugar that can increase skin hydration and helps to remove and reduce thickness of skin. [4]
Products using condensation technology have traditionally used a cold surface where humidity in warm air is condensed. Today, warm condensation technology, based on the concept of over-saturated steam inside a closed environment, [clarification needed] makes it possible to dehumidify air at sub-zero temperatures. This is a very energy-efficient ...
Movement occurs when plant tissue matures, dies and desiccates, cell walls drying, shrinking; [12] and also when humidity re-hydrates plant tissue, cell walls enlarging, expanding. [11] The direction of the resulting force depends upon the architecture of the tissue and is capable of producing bending, twisting or coiling movements.
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