Ethylenedioxy Dimethanol CAS 3586-55-8 Water Treatment Chemicals Eddm

29-04-2025

Ethylenedioxy Dimethanol  CAS 3586-55-8 

Water Treatment Chemicals Eddm


Product name

EDDM; (ethylenedioxy) dimethanol 

Other name

Dimethyloldimethyl Hydantoin; 1,3-Dihydroxylmethyl-5

CAS #

3586-55-8

EINECS No.

222-720-6

Raw Material

Compound Biocide

Conductivity

The Systemic Fungicide

Type:

Oil / Water Separation Agent

Composition

Organic

General:

EDDM is a slow-release bactericide and desulfurizer with low toxicity, high efficiency and gas-phase sterilization ability. It is suitable for inhibiting the growth and reproduction of microorganismsin various humid environments, preventing corruption and odor, ensuring the safe operation of the system, and is also widely used in the removal of hydrogen sulfide from. It can be used in combination with other types of fungicides such as Casone in a certain proportion, with excellent results.

Feature

1. EDDM offers long-lasting protection, contributing to the preservation and durability of treated materials.

2. EDDM is known for its low toxicity profile. And It is biodegradable, minimizing its impact on ecosystems, making it a preferred choice for applications where human and environmental safety is a priority.

3. EDDM exhibits excellent efficacy against a wide range of microorganisms, ensuring efficient and reliable antimicrobial protection. Secondly, it demonstrates good compatibility with various formulations, allowing for easy incorporation into different products. 

Application:

Ethylene glycol hemiacetal is a slow-release fungicide that prevents the generation of putrefaction   and foul odors and ensures the safe operation of the system. The product has almost no corrosion to steel; In the environment of multiple media, it has good selectivity to H2S and high sulfur removal  efficiency; The product does not contain salt and is not likely to cause salt precipitation; The filling process is simple. Dosing is mainly done through a metering pump, which consumes very little energy; the desulfurizer can undergo a desulfurization reaction at room temperature. The process of eliminating hydrogen sulfide is an exothermic process and generally does not require energy consumption. Not easy to cause salt formation and corrosion; does not affect the activity of the catalyst.


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