Features of G-MAQ
本物の高性能吸着剤 G-MAQ
We don't use fragrance to mask odors or harmful chemicals.
... Because it is a "chemical adsorbent" that adsorbs and deodorizes through a chemical reaction between "substances to be adsorbed and deodorized," such as harmful chemical substances and odor-causing substances, and "functional groups." Unlike general commercially available countermeasures that primarily use "masking," this product converts the "substances to be adsorbed and deodorized" themselves into other substances (rendering them harmless and odorless).
Fast adsorption and deodorization speed / Large adsorption and deodorization capacity
... Through "graft polymerization," "side chains" and "functional groups" (molecules or polymers with adsorption and deodorizing functions) are three-dimensionally introduced onto the "substrate." This improves the contact efficiency between "adsorbent/deodorizing target substances" such as harmful chemical substances and odor-causing substances, and the "functional groups," as well as the amount of "functional groups" introduced per unit area. Therefore, compared to conventional adsorbents, we have succeeded in achieving more powerful performance in terms of both speed and capacity.
Unlike products such as stabilized chlorine dioxide, hypochlorous acid, and ozone, which have temporary effects, this product provides sustained effects against harmful chemical substances and odor elimination.
The adsorbed and deodorized substances are extremely unlikely to be re-emitted once captured.
...This is because it is a "chemical adsorbent" that adsorbs, detoxifies, and deodorizes through a chemical reaction between "substances to be adsorbed and deodorized," such as hazardous chemical substances and malodorous substances, and "functional groups." Unlike "physical adsorbents" such as activated carbon and zeolites (where "substances to be adsorbed and deodorized" are primarily adsorbed by van der Waals forces onto the porous surfaces of the adsorbents/deodorizers), the "substances to be adsorbed and deodorized" themselves are converted into different substances (deodorized and detoxified), and the re-release of once-adsorbed "substances to be adsorbed and deodorized" is not possible, except for adsorption through reversible reactions.
High stability and safety (less prone to degradation over time)
… Because "graft polymerization" creates polymers with a unified structure of "base material," "side chains," and "functional groups," unlike "chemisorbents" made from existing monomers (single molecules), we have succeeded in enhancing product stability and safety while maintaining or improving high reactivity.
...there are no concerns about the generation of hazardous substances like some stabilized chlorine dioxide, hypochlorous acid, photocatalytic, or ozone-based systems, nor about the generation of dangerous intermediate products (such as chlorine gas, ozone gas, aldehydes, or formic acid).
Selective adsorption and deodorization of target substances (does not adsorb unnecessary substances)
… Because it is a "chemical adsorbent" that adsorbs and deodorizes through the chemical reaction between "substances to be adsorbed and deodorized," such as malodorous substances and harmful chemicals, and "functional groups," it can more powerfully and selectively adsorb and deodorize "substances to be adsorbed and deodorized" compared to "physical adsorbents" such as activated carbon and zeolite (where "substances to be adsorbed and deodorized" are primarily adsorbed by van der Waals forces onto the porous surface of adsorbents/deodorizers).
High adsorption and deodorization performance even in static or low-concentration environments.
… "Graft polymerization" is used to three-dimensionally introduce "side chains" and "functional groups" (molecules or polymers with adsorption and deodorizing functions) onto a "base material." This improves the efficiency of contact between the "adsorption/deodorization target substances," such as malodor-causing substances and harmful chemicals, and the "functional groups," as well as increasing the amount of "functional groups" introduced per unit area. Therefore, compared to conventional adsorbents, this method provides more active adsorption and deodorization even in static and low-concentration environments.
A chemical reaction-type adsorbent that can simultaneously adsorb and deodorize multiple substances
… By "graft polymerization," functional groups (molecules or polymers with adsorption and deodorizing functions) are introduced three-dimensionally via the "substrate" and "side chains." This expands the range of functional groups with different polarities that were relatively difficult to combine with conventional "chemical adsorbents." At the same time, it has succeeded in broadening the range of "substances to be adsorbed and deodorized" that can be adsorbed and deodorized.
A wide variety of designs are possible, with shapes and functions tailored to the intended use.
… With "graft polymerization," the range of combinations for "base material," "side chains," and "functional groups" tailored to specific situations and purposes is expanding, without the use of binders or similar substances.
Easy to hybridize with other technologies
... For example, there is potential for the development and commercialization of new adsorbents and deodorizers that haven't been seen much before, such as using a "base material" with physical adsorption capabilities, and introducing multiple types of adsorption/deodorizing molecules with different polarities and metal ions with antibacterial functions as "functional groups."

